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    Research Progress of Regulatory Factors for Tillering and Earring of Large-spike and Multispike Cultivars of Winter Wheat

    2015-12-17 11:49:48NanaLIYanyanPUYongchaoGONGXinhuaLIPengLIHanfengDING
    Agricultural Science & Technology 2015年2期
    關(guān)鍵詞:冬小麥分蘗學(xué)報(bào)

    Na’na LI, Yanyan PU, Yongchao GONG, Xinhua LI, Peng LI, Hanfeng DING*

    1. Shandong Centre of Crop Germplasm Resources, Ji’nan 250100, China;

    2. Institute of Atomic Energy Application in Agriculture, Shandong Academy of Agricultural Sciences, Ji’nan 250100, China

    Wheat (Triticum aestivum L.)is the most important food crop worldwide, its high and stable yield plays an important role for ensuring efficient supply of grain, social stability and economic development. The yield structure of wheat is composed of three elements: spike number, kernels per spike and 1 000-kernel weight, and is a quantitative character controlled by multiple genes,its phenotypic characteristic is easily affected by environment[1-2], therefore,its genetic improvement is restricted by many factors. Based on years of investigation and study in different areas, the predecessors[3]put forward that spike number was the dominant factor for yield composition. So increasing effective spike number was the precondition of improving yield per unit area. Tillering, growth and earring played an important regulating role in group structure and yield,thus improving tillering quantity and quality can increase ear number obviously.

    In recent years, the application of wheat varieties with different genotypes in super high-yield field has always been the hot topic of related research[4-6].At the present stage,superhigh-yielding breeding of wheat has been mostly dependent on multi-spike cultivars. But with the release of fine varieties and the improvement of cultivation measures, the yield of largespike cultivars can also reach 9 000 kg/hm2. Therefore, the application trend of different cultivars may change from pure middle-spike and multi-spike cultivars to middle-spike, multi-spike and large-spike cultivars[7]. But largepike cultivars have low rates of tiller and earbearing tiller, which is an important factor restricting yield, thereby extremely limiting the play of produc-tive potential. How to improve tillering and earring rate, and ensure enough spike number per unit area, is the problem to be solved[8].Tiller is an important biological characteristic of wheat, and an important element determining colonies and quality of wheat in high-yield cultivation[9], as well as related to group internal farmland microclimate and the construction of rational colony structure[10-13], so we can promote and control tiller growth to regulate rational colony structure in production, thus exploring ways for high-yielding[14-15]. For years,people have studied and analyzed the dynamic variation rule of tillering and earring of winter wheat. Synthesizing existing research results, the paper summarized the characteristics of tillering and earring of winter wheat with different spike cultivars,to provide theoretical basis and technical index for colony regulation and control of high-yield cultivation of different cultivars.

    Effect of Genetic Factors on the Characteristics of Tillering and Earring of Winter Wheat

    Tillering character is a quantitative character controlled by multiple genes,genetic factor has a particularly important effect on tillering. The hereditary characters of the cultivars determine spike number[16-18]. Different wheat cultivars with different genotypes have different tillering abilities, earbearing tiller rates and spike number.The predecessors did many researches on genetic factors of wheat tillering[19],and found the genes which inhibited tillering, such as tin[20], tin-1[21], tin2[22],tin3[23].Li et al.[24]found that there were related genes in a region near Gli2A2(Xp sr10)in the short arm of chromosome 6A,which seriously affected tiller number of wheat and seedling growth.Zhang Qianhui et al.[25-26]showed that effective tillering number of wheat had high main gene heritability and modified by multiple genes,but mainly controlled by two major genes, and the two genes had interaction effect, one of the two can inhibit effective tillering.For main control factors affecting tillering and earring, Mi Guohua et al.[27-28]had different opinions,they considered that hereditary characters of wheat cultivars determined the effective tillering number of wheat. Wang Shaozhong et al. proved that low percentage of earbearing tiller was the hereditary character of parts of largespike wheat cultivars, can not be changed easily by cultivation measures.

    Effect of Group Environment Factors on the Characteristics of Tillering and Earring of Winter Wheat

    The former research results[29-33]indicated that the characters of tillering and earring of different cultivars were affected greatly by group environment factors, but different cultivars had different response sensitivities to environment, therefore, in actual production, we can regulate and control according to different response sensitivities of different cultivars to environment,to ensure the formation of rational group structure of each cultivar,thus achieving high yield. For some large-spike cultivars,the change of environmental factors and cultivation means can bring noticeable change to ear number; comparing with genetic factors, group environment had a greater impact on planting distance,sowing time, seeding density and endogenous hormones[7,32].

    Row-spacing

    After determining basic seedlings,rational row-spacing will have a significant positive effect on yield. When the group yield reaches the highest, the row-spacing in the field will be the best.Rowing-spacing,as an important means of regulation and control, has always received special attention from cultivation experts[34-36].The traditional seeding way was sowing in drill,different row-spacing generated different characteristics of tillering and earring of different cultivars. Wu Yu’e et al.[37]suggested that to achieve the maximum number of spike, different cultivars must have different optimum spacing, specifically, the optimum spacing for large-spike cultivars was 16.7 cm, and the optimum spacing for compact and loose multi-spike cultivars was 20 and 23.3 cm,respectively.Sun Hongyong et al.[38]agreed that spike number of winter wheat decreased with the increase of row spacing; the narrower the row spacing, the more the spike number. Therefore,narrowing the row spacing can make wheat plane distribution uniform and effectively inhibit ineffective tillering for better using surrounding resources,but the increase potential of final grain yield was closely related to cultivars and environment.

    At the same time, some scholars put forward some corresponding planting modes[39-40]according to the characteristics of different ecological regions. Wang Fahong et al.[41]proved that comparing with convention planting, raised bed planting for wheat was conducive to taking full advantage of border row,although spike number per unit area showed a slight decrease,kernels per spike and 1 000-kernel weight were improved prominently,which optimized wheat yield structure and achieved yield increase. Liu Yinjie et al.[42]found that wide-narrow row planting of wheat can give full play to the border row,and realize the harmonious development of low group,strong individual and yield increase,which was beneficial to lodging-resistance, premature senescence resistance and yield increase.

    Sowing date

    Appropriate sowing time, as an important cultivation technique, not only ensures the synchronization of normal and effective production and growth progress with the optimum season, but also helps coordinate the relationship between growing development of crops and environmental conditions, makes full use of natural resources and avoids adverse weather[43-45].Sowing date is the primary means for adjusting wheat tillering and effective accumulative temperature, and is very important for the formation of spikes.

    Judging the most suitable sowing date of wheat should be based on accumulated temperature last year,variety properties and soil moisture.In the meantime, there are a lot of differences in different cultivars,such as the adaptability to ecological environment,and the requirements for appropriate temperature, light and water condi-tions.Thus,we should select the most suitable varieties according to different ecological environment, to match different sowing dates, thus making full use of local temperature, light, water and thermal resources, finally achieving yield and income increase. Early sowing is conducive to making seedlings strong before winter, promoting root and overground part development, and improving tiller number; moreover, it is also good for increasing dry matter accumulation and improving grain filling rate. For winter wheat, if it is less affected by cold damage during wintering period,winter wheat can turn green early, and has the advantages of long growth time of seedling stage and more accumulated temperature, the growth and development of winter wheat can be improved,thereby increasing spike number.If the sowing date is late, the growth of seedlings will be slow before winter,thereby generating insufficient tillers and less groups[46-47].Han Jinling et al.[48]demonstrated that along with the delay of planting date, spikelet number per stem and fertile spikelets decreased significantly,thus effective spike number decreased markedly. But we can supplement basic seedlings to make up for the insufficient of accumulated temperature before winter, thereby increasing spike number per unit area.Zhang Xuepin et al.[49]showed that total tiller number decreased obviously with the delay of sowing date, but the percentage of earbearing tiller improved conversely. The effect of the treatment during sowing time and tillering stage was far greater than genotype difference, the formation of tillering was mainly dependent on the control of ecological factors.

    Planting density

    To achieve high yield, both individual and group qualities should be improved. Planting density affects the group structure of wheat, thereby causing the differences of field climatic conditions, such as temperature, light and humidity, etc., and then influencing crops individual and group qualities from the aspect of vegetative growth,thereby determining the group development trend of whole growth period to a certain degree. Therefore, planting density is the most basic measure for adjusting group and individual development[50-53].Planting density has an obvious effect on all growth indicators and aboveground dry weight during wheat tillering stage, too high density will cause slow growth,which is mainly reflected in the decrease of the number of blades and root system,thin and weak seedlings, etc.[54]. In a certain range, multi-spike is beneficial to yield increase, but if out of the range, average spike weight does not rise but decreases. Chai Shouxi et al.[55]studied the influence of planting density on winter wheat yield and related indicators, and found that 390 plants/m2planting density can reach the highest grain yield. To establish rational group structure, we should try to reduce basic seedlings under the premise of enough spikes, make individual develop fully and improve the percentage of earbearing tiller, thereby coordinating internal conflicts within group and achieving high yield[56-57].

    Wang Zhijie et al.[58]researched the characteristics of tillering and earring of multi-spike cultivar (Yumai 49)of wheat, the results indicated that there was a significant difference in spike number under different density treatments,and spike number showed an increasing trend with the increase of basic seedlings, however, kernels per spike and 1 000-grain weight had a reducing trend with the increase of basic seedlings. Wang Longjun et al.[59]argued that along with the increase of density, spike number per 667 m2did not necessarily increase,in certain environment conditions, spike number per unit area of specific varieties had a relative stable upper limit. Zhu Yunji et al.[29]proved that the rate of tillering and earring of large-spike cultivar(Lankao 906)of wheat was low, increasing density can increase spike number, but would generate the decrease of kernels per spike and the reduction of kernel weight as well as low yield. Thus, in the production practice,we should control planting density according to different cultivars; for multispike cultivars, the relationship between group and individual should be coordinated by controlling suitable group, to reach the effects of the increase of kernels per spike and the improvement of kernel weight, finally,the coordinated development of the three elements was achieved; largespike cultivars had more kernels per spike, but the low percentage of earbearing tiller was easy to cause insufficient spikes, thereby affecting wheat yield; so appropriately increasing seeding rate can effectively increase spike number,thus improving yield.

    Effect of Endogenous Hormones on the Characteristics of Tillering and Earring of Winter Wheat

    With the deepening of the research, the relationship of tillering and earring with endogenous hormone has become the focus of many scholars[60].Endogenous hormone plays an important role in tillering and its growth[61].The reasons for tiller senescence are the competition of assimilated products and hormone or the change of hormonal equilibrium. External environment can control the characteristics of tillering and earring by changing hormone content and equilibrium in plants[62]. Therefore,the hormonal equilibrium in plants is the principal element regulating plant growth[63-66].

    The polarization of wheat tillering has a close relationship with hormone levels, plant hormones have an apparent regulatory effect on tillering growth[67]. Li Chunxi et al.[68-70]argued that during the tillering process of different winter wheat cultivars, the dynamic change of the contents of endogenous indoleacetic acid (IAA),zeatin riboside(ZR)and zeatin(Z)was obvious. So the dynamic change of wheat tillering was closely related to plant endogenous hormones IAA and(ZR+Z) contents, especially IAA/(ZR+Z)value and its variation trend. In the initial stage of tillering, tillering ability had a significant negative correlation with IAA/(ZR+Z),the lower or declining IAA/(ZR+Z)value was more favorable to tillering, conversely, the higher or rising ratio may inhibit tillering or lead to tiller senescence. Zhu Yunji et al.[60]showed that there were apparent differences in endogenous hormone contents of tillering and stem for different spikes cultivars. At peak tillering stage,endogenous hormones IAA and(ZR+Z)contents in stem of large-spikecultivar Yumai 66 were less than these of multi-spike cultivar Yumai 49, however,for abscisic acid (ABA), the former was higher than the latter,and the gap between stem and tillering was larger than that of Yumai 49, thus the stem of Yumai 66 was clearly better than tillering, and tiller number of Yumai 66 was less than that of Yumai 49;at the tiller senescence stage, the change of endogenous hormone(ZR+Z) of large-spike cultivar Yumai 66Ⅰand Ⅱ happened at double ridge stage, then the ear differentiation began to slow down, and the gap with stem leaf age enlarged; ABA change before shape senescence aggravated the process; however, the change of endogenous hormones in tillering and stem of multi-spike cultivar Yumai 49ⅠandⅡwas synchronous, so the gap value was stable, finally forming spikes.

    Problems and Prospect

    As the measure standard of individual strong degree, the quantity and quality of tillering and earring of wheat had a close relationship with the rationality of group dynamic development.Although many researches have focused on tillering and earring characters of different spike cultivars of winter wheat,there were still some aspects to be further discussed, thus we should analyze the relationship between tillering and influencing factors from multiangles, grasp the occurrence rule of tillering, thereby improving the rate of tillering and earring, increasing spike number per unit area,achieving the increase from both production and income of different spike cultivars of winter wheat.

    Firstly, the tillering formation of different spike cultivars of winter wheat was a very complicated process, and affected by such factors as temperature, illumination, nutrition, heredity and hormone, etc. The present research on tillering has been focused only on the effect of single element on single cultivar, but if we want to effectively control tillering, we must make clear the occurrence mechanism of tillering and the relationship among different factors, then in-depth study the occurrence of tillering,only in this way,can we control it better.

    Secondly, the former researches on tillering and earring characters of different spike cultivars of winter wheat were mostly concentrated on such environmental factors as sowing date,planting density and row-spacing,etc.,however, the studies on endogenous hormone content, hormonal equilibrium as well as exogenous hormone application during the tillering process were fewer.So to strengthen the study on these aspects in the future will help us gain a better understanding of tillering occurrence mechanism.

    Thirdly,the reports on the study of the relationship of genetic expression and control with wheat tillering,and the control of tillering using molecule means were fewer. From now on , if we can make progress in studying the relationship between molecular level and wheat tillering, it will help us indepth understand the tillering occurrence mechanism.

    [1]KEARSEY MJ,POONI HS.The genetical analysis of quantitative traits [M].London:Chapman and Hall,1996.

    [2]MARZA F, BAI GH, CARVER BF, et al.Quantitative trait loci for yield and related traits in the wheat population Ning7840 ×Clark [J]. Theoretical and Applied Genetics, 2006, 112 (4): 688-698.

    [3]GAO X (高翔), SONG ZM (宋哲民).Study on characters and yield structure of wheat (小麥產(chǎn)量結(jié)構(gòu)性狀研究)[J].Journal of Triticeae Crops(國(guó)外農(nóng)學(xué)-麥類作物),1994(2):40-41.

    [4]GUO TC (郭天財(cái)),WANG ZJ (王之杰),HU TJ (胡廷積),et al.Study on Canopy apparent photosynthesis characteristics and grain yield traits of two winter wheat cultivaters with different spike type(不同穗型小麥品種群體光合特性及產(chǎn)量性狀的研究)[J].Acta Agronomica Sinica(作物學(xué)報(bào)),2001,27(5):633-639.

    [5]ZHAO HJ (趙會(huì)杰),GUO TC (郭天財(cái)),ZOU Q(鄒琦),et al.A comparative study on metabolic bases of tiller growth of different spike-type cultivars in wheat(不同穗型小麥品種分蘗發(fā)育的代謝基礎(chǔ)研究)[J].Acta Botanica Boreali-Occidentalia Sinica(西北植物學(xué)報(bào)),2002,22(2):215-220.

    [6]ZHU YJ (朱云集), GUO TC (郭天財(cái)),WANG CY (王晨陽(yáng)), et al. Study on yield formation of winter wheat cultivars with different spike types and their key cultivation techniques for super-high yield (兩種穗型冬小麥品種產(chǎn)量形成特點(diǎn)及超高產(chǎn)關(guān)鍵栽培技術(shù)研究)[J].Journal of Triticeae Crops (麥類作物學(xué)報(bào)),2006,26(1):82-86.

    [7]LI NN (李娜娜), TIAN QZ (田奇卓),WANG SL (王樹(shù)亮), et al. Responses and regulation of canopy microclimate on formation spike from tillers of two types of wheat (兩種類型小麥品種分蘗成穗對(duì)群體環(huán)境的響應(yīng)與調(diào)控)[J].Acta Phytoecologica Sinica (植物生態(tài)學(xué)報(bào)),2010,34(3):289-297.

    [8]YANG WP(楊文平), GUO TC(郭天財(cái)),LIU SB (劉勝波), et al. Effects of row spacing in winter wheat on canopy structure and microclimate in later growth stage(行距配置對(duì)蘭考矮早八小麥后期群體冠層結(jié)構(gòu)及其微環(huán)境的影響)[J].Acta Phytoecologica Sinica (植物生態(tài)學(xué)報(bào)),2008,32(2):485-490.

    [9]PEARMEN I, THMAS SM, THORME GN.Effects of nitrogen fertilizer on photosynthesis of several varieties of winter wheat [J]. Annals of Botany, 1977, 43:613-621.

    [10]DE BRUIN JL, PEDERSEN P. Effect of row spacing and seeding rate on soybean yield [J]. Agronomy Journal,2008,100:704-710.

    [11]COOK RJ, OWNLEY BH, ZHANG H,et al. Influence of paired-row spacing and fertilizer placement on yield and root diseases of direct-seeded wheat[J]. Crop Science, 2000, 40: 1079 -1087.

    [12]JOST PH, TOM COTHREN J. Growth and yield comparisons of cotton planted in conventional and ultra-narrow row spacings [J].Crop Science,2000,40:430-435.

    [13]SANGOI L, GRACIETTI MA, RAMPAZZO C,et al.Response of Brazilian maize hybrids from different eras to changes in plant density [J]. Field Crops Research,2002,79:39-51.

    [14]YANG GM(楊國(guó)敏),SUN SJ(孫淑娟),ZHOU XB (周勛波), et al. Effects of population distribution pattern and irrigation schedule on radiation utilization in winter wheat farmland (群體分布和灌溉對(duì)冬小麥農(nóng)田光能利用的影響)[J].Chinese Journal of Applied Ecology(應(yīng)用生態(tài)學(xué)報(bào)),2009,20(8):1868-1875.

    [15]CAI RG (蔡瑞國(guó)), ZHANG M (張敏),YIN YP (尹燕枰),et al.Photosynthetic characteristics and antioxidative metabolism of flag leaves in responses to nitrogen application in wheat during grain filling (小麥灌漿過(guò)程中旗葉光合及抗氧化代謝與氮素營(yíng)養(yǎng)關(guān)系研究)[J].Scientia Agricultura Sinica(中國(guó)農(nóng)業(yè)科學(xué)),2008,41(1):53-62.

    [16]WU ZS (吳兆蘇). The breeding of wheat(小麥育種學(xué))[M].Beijing:China Agriculture Press (北京:農(nóng)業(yè)出版社),1990,209-201.

    [17]ZHUANG QS (莊巧生). China wheat improvement and pedigree analysis(中國(guó)小麥品種及系譜)[M]. Beijing:China Agriculture Press (北京:農(nóng)業(yè)出版社),1983:294-332.

    [18]WEN HX (溫紅霞),WU SH (吳少輝),DUAN GH (段國(guó)輝), et al. Effects of sowing date on tiller-earring formation in different wheat varieties (播期對(duì)不同習(xí)性小麥品種分桑成穗規(guī)律的影響)[J]. Journal of Henan Agricultural Sciences(河南農(nóng)業(yè)科學(xué)),2007(3):37-38.

    [19]CAMPBELL BT, BAENZIGER PS,GILL KS, et al. Identification of QTLs and environmental interactions associated with agronomic traits on chromosome 3A of wheat [J]. Crop Science,2003,43:1493-1505.

    [20]RICHARDS RA. A tiller inhibition gene in wheat and its effect on plant growth[J]. Australian Journal of Agricultural Research,1988,39(5):749-757.

    [21]SPIELMEYER W, RICHARDS RA.Comparative mapping of wheat chromosome 1AS which contains the tiller inhibition gene (tin) with rice chromosome 5S [J]. Theoretical and Applied Genetics,2004,109(6):1303-1310.

    [22]PENG ZS, YEN C, YANG JL. Genetic control of oligo-culms in common wheat[M]. Wheat Information Service,1998,86:19-24.

    [23]KURAPARTHY V, SOOD S, DHALIWAL H S, et al. Identification and mapping of a tiller inhabition gene(tin3)in wheat [J]. Theoretical and Applied Genetic,2007,114:285-294.

    [24]LI WL, NELSON J C, CHU CY, et al.Chromosomal locations and genetic relationships of tiller and spike characters in wheat [J].Euphytica,2002,125(3):357-366.

    [25]ZHANG QH(張倩輝),ZHANG XK(張曉科),LIU WH(劉偉華),et al.The inheritance for effective tiller emergence in wheat(小麥有效分蘗數(shù)的遺傳分析)[J].Journal of Triticeae Crops(麥類作物學(xué)報(bào)),2008,28(4):573-576.

    [26]XIE Y(謝玥),LONG H(龍海),HOU YC(侯永翠),et al. Inheritance analysis of correlative characters of a oligoculm wheat line H461 (小麥寡分蘗材料H461 分蘗性狀的遺傳分析)[J].Journal of Triticeae Crops (麥類作物學(xué)報(bào)),2006,26(6):21-23.

    [27]MI GH (米國(guó)華),LIANG ZX (梁振興),MEI N (梅楠). Relationship between the vascular system of shortening stem and the regularity of concurrent emergence of leaf-tiller in winter wheat plant(冬小麥縮短莖的維管束系統(tǒng)與葉蘗同伸關(guān)系)[J].Acta Agronomica Sinica(作物學(xué)報(bào)),1992,18(6):401-405.

    [28]WANG SZ (王紹中),ZHAO H (趙虹),WANG XC (王西成), et al. A preliminary study on screening of super-highyielding varieties of wheat(小麥超高產(chǎn)品種篩選的研究初報(bào))[J]. Acta Agronomica Sinica(作物學(xué)報(bào)),1998,24(6),870-875.

    [29]ZHU YJ (朱云集),GUO RL (郭汝禮),GUO TC (郭天財(cái)), et al. Effects of spacing form and density on quality of population and grain yield of Lankao 906(行距配置與密度對(duì)蘭考906 群體質(zhì)量及產(chǎn)量的影響)[J].Journal of Triticeae Crops (麥類作物學(xué)報(bào)),2001,21(2):62-66.

    [30]WANG LJ(王龍俊),CHEN WX(陳維新),TANG MZ (唐明臻). The application and study of super -high -yielding wheat population quality(l):Regulation index of high-yielding wheat population quality (小麥高產(chǎn)群體質(zhì)量栽培的應(yīng)用與研究(l)小麥高產(chǎn)群體質(zhì)量的調(diào)控指標(biāo)江) [J].Jiangsu Agricultural Sciences(蘇農(nóng)業(yè)科學(xué)),1996(l):5-9.

    [31]GAO SJ(高松潔),WANG WJ(王文靜),SONG JY(宋家永).Study on relationship between source-sink characteristics and spike grain weight of big kernel wheat variety (小麥大粒品種源庫(kù)特點(diǎn)及其與穗粒重關(guān)系的研究)[J].Acta Agriculturae Boreali-Sinica (華北農(nóng)學(xué)報(bào)),2002,17(1):46-50.

    [32]ZHAO HJ (趙會(huì)杰), REN Q (任琴),GUO TC (郭天財(cái)),et al.Physiological characteristics and the regulation of tiller growth of large-ear cultivar Lankao 906 (大穗型小麥蘭考906 分蘗發(fā)育的生理特征及其調(diào)控)[J].Journal of Triticeae Crops (麥類作物學(xué)報(bào)),2001,21(4):67-71.

    [33]LI NN(李娜娜),TIAN QZ(田奇卓),PEI YT (裴艷婷), et al. Effects of planting pattern on formation of spike and yield component of two types of wheat(播種方式對(duì)兩類小麥品種分蘗成穗及其產(chǎn)量構(gòu)成的影響)[J]. Journal of Triticeae Crops (麥類作物學(xué)報(bào)), 2007, 27(3):508-513.

    [34]ANDRADE FH,CALVINO PA, CIRILO A, et al. Yield responses to narrow rows depend on increased radiation interception[J].Agronomy Journal,2002,94:975-980.

    [35]RETA-SANCHEZ DG, FOWLER JL.Canopy light environment and yield of narrow-row cotton as affected by canopy architecture [J]. Agronomy Journal,2002,94:1317-1323.

    [36]YANG JS(楊吉順), GAO HY(高輝遠(yuǎn)),LIU P (劉鵬), et al. Effects of planting density and row spacing on canopy apparent photosynthesis of high-yield summer corn (種植密度和行距配置對(duì)超高產(chǎn)夏玉米群體光合特性的影響)[J].Acta Agronomica Sinica (作物學(xué)報(bào)),2010,36(7):1226-1233.

    [37]WU YE (吳玉娥), GAO QL (郜慶爐),XUE X (薛香), et al. Effects of row spacing on canopy structure and yield constituent of super-high yielding wheat (行距對(duì)超高產(chǎn)小麥冠層結(jié)構(gòu)及產(chǎn)量構(gòu)成的影響)[J].Journal of Henan Agricultural Sciences (河南農(nóng)業(yè)科學(xué)),2005(9):16-20.

    [38]SUN HY (孫宏勇), LIU CM (劉昌明),ZHANG XY (張喜英), et al. Effects of different row spacings on soil evaporation, evapotranspiration and yield of winter wheat (不同行距對(duì)冬小麥麥田蒸發(fā)蒸散和產(chǎn)量的影響)[J].Transactions of the Chinese Society of Agricultural Engineering (農(nóng)業(yè)工程學(xué)報(bào)),2006,22(3):22-26.

    [39]LIMON-ORTEGA A, SAYRE KD,FRANCIS CA.Wheat nitrogen use efficiency in a bed-planting system in northwest Mexico[J]. Agronomy Journal,2002,92:303-308.

    [40]WANG FH,WANG XQ,KEN S. Comparison of conventional,flood irrigated,flat planting with furrow irrigated,raised bed planting for winter wheat in China[J].Field Crops Research,2004,87:35-42.

    [41]WANG FH (王法宏),YANG HB (楊洪賓), XU CZ (徐成忠), et al. Effect of raised bed planting on plant morphological characters and grain yield of winter wheat (壟作栽培對(duì)小麥植株形態(tài)和產(chǎn)量性狀的影響)[J]. Acta Agronomica Sinica(作物學(xué)報(bào)),2007,33(6):1038-1040.

    [42]LIU YJ (劉印杰),FENG LZ (馮蘭芝).Study on the influence of wheat planted in wide and narrow row on individual growth and its yield component(小麥寬窄行種植對(duì)個(gè)體發(fā)育及其產(chǎn)量結(jié)構(gòu)的影響)[J]. Journal of Henan Agricultural Sciences (河南農(nóng)業(yè)科學(xué)), 1997(10):8-9.

    [43]GAO QL (郜慶爐),XUE X (薛香),WU YE (吳玉娥),et al. Effects of sowing times on the spike differentiation of different wheat varieties under the climate of warm winter(暖冬條件下播期對(duì)不同幼穗分化的影響)[J]. Chinese Journal of Applied Ecology (應(yīng)用生態(tài)學(xué)報(bào)),2003,14(10):1627-1631.

    [44]ZHU Y (朱艷), CAO WX (曹衛(wèi)星),JIANG D(姜東), et al. A dynamic knowledge model for design of suitable sowing date and sowing rate of winter wheat (冬小麥適宜播期和播種量設(shè)計(jì)的動(dòng)態(tài)知識(shí)模型研究)[J]. Scientia Agricultura Sinica(中國(guó)農(nóng)業(yè)科學(xué)),2003,36(2):147-154.

    [45]QU HJ(屈會(huì)娟),LI JC(李金才),SHEN XS(沈?qū)W善),et al.Effects of plant density and seeding date on accumulation and translocation of dry matter and nitrogen in winter wheat cultivar Lankao Aizao 8 (種植密度和播期對(duì)冬小麥品種蘭考矮早八干物質(zhì)和氮素積累與轉(zhuǎn)運(yùn)的影響)[J]. Acta Agronomica Sinica(作物學(xué)報(bào)),2009,35(1):124-131.

    [46]LIU X(劉霞),YIN YP(尹燕枰), HE MR(賀明榮), et al. Effects of sowing date on activities of enzymes involved in grain starch synthesis and starch component accumulation in wheat cultivar Gaocheng 8901(播期對(duì)小麥品種藁城8901 籽粒淀粉合成相關(guān)酶活性及淀粉組分積累的影響)[J]. Acta Agronomica Sinica(作物學(xué)報(bào)),2006,32(7):1063-1070.

    [47]LI CD(李存東),CAO WX(曹衛(wèi)星),DAI TB (戴廷波), et al. Effects of different varieties and sowing dates on development stages of wheat(小麥不同品種和播期對(duì)發(fā)育階段的效應(yīng))[J].Chinese Journal of Applied Ecology (應(yīng)用生態(tài)學(xué)報(bào)),2001,12(2):218-222.

    [48]HAN JL (韓金玲), YANG Q (楊晴),WANG WP (王文頗),et al. Effects of sowing date on the caulis and tillers differentiation of young spike and yield in winter wheat (播期對(duì)冬小麥莖蘗幼穗分化及產(chǎn)量的影響)[J]. Journal of Triticeae Crops (麥類作物學(xué)報(bào)),2011,31(2):303-307.

    [49]ZHANG XP(張學(xué)品), FENG WS(馮偉森), YU SP (余四平), et al. Impact of sowing date on growth and development of Luomai 21 (播期對(duì)洛麥21 生長(zhǎng)發(fā)育的影響)[J]. Acta Agriculturae Jiangxi (江西農(nóng)業(yè)學(xué)報(bào)), 2010, 22(2):4-7.

    [50]ZHANG DY(張定一),ZHANG YQ(張永清),YAN CP(閆翠萍).Effects of genotype, sowing date and planting density on grain filling and yield of wheat varieties with different ears forming characteristics (基因型 播期和密度對(duì)不同成穗型小麥籽粒產(chǎn)量和灌漿特性的影響)[J]. Chinese Journal of Applied and Environmental Biology (應(yīng)用與環(huán)境生物學(xué)報(bào)),2009,15(1):28-34.

    [51]WANG JL(汪建來(lái)),KONG LC(孔令聰),WANG SZ (汪芝壽), et al. Effect of sowing time and amount of wheat variety--Wanmai 44 on yield and quality(播期播量對(duì)皖麥44 產(chǎn)量和品質(zhì)的影響)[J]. Journal of Anhui Agricultural Sciences(安徽農(nóng)業(yè)科學(xué)),2003,31(6):949-950.

    [52]HU HH (胡煥煥),LIU LP (劉麗平),LI RQ (李瑞奇), et al. Effect of sowing date and planting density on the yield formation of a winter wheat cultivar Henong 822(播種期和密度對(duì)冬小麥品種河農(nóng)822 產(chǎn)量形成的影響)[J].Journal of Triticeae Crops (麥類作物學(xué)報(bào)),2008,28(3):490-495.

    [53]QU HJ(屈會(huì)娟),LI JC(李金才),SHEN XS (沈?qū)W善), et al. Effects of sowing date,planting density and nitrogen application regime on grain yield in winter wheat(播期密度及氮肥運(yùn)籌方式對(duì)冬小麥籽粒產(chǎn)量的影響)[J].Chinese Agricultural Science Bulletin (中國(guó)農(nóng)學(xué)通報(bào)),2006,22(9):241-243.

    [54]WANG XL(吳曉麗),BAO WK(包維楷).Effects of genotype and sowing density on growth,biomass allocation and yield of winter wheat at tillering stage(基因型及播種密度對(duì)冬小麥分蘗期生長(zhǎng)生物量分配及產(chǎn)量的影響)[J].Chinese Journal of Applied and Environmental Biology(應(yīng)用與環(huán)境生物學(xué)報(bào)),2011,17(3):369-375.

    [55]CHAI SX,ZHAO DM,CHANG L.Effect of planting sowing density on grain yield, physiological traits of winter wheat grown under the oasis conditions of Northwest China [J]. Acta Ecologica Sinica, 2008, 28 (1): 292-301.

    [56]ZHANG HC(張洪程),DAI QG(戴其根).Research on theory and technology of sparse-planting(1)(小麥稀植化開(kāi)源拓庫(kù)理論與技術(shù)(一))[J].Jiangsu Agricultural Sciences (江蘇農(nóng)業(yè)科學(xué)), 1991(2):7-10.

    [57]YANG XL,NIU YC, KANG H. Effect of different planting Sowing density on the main agronomic traits of filmmulched wheat [J].Agric Res Arid Areas,2007,2(6):71-73.

    [58]WANG ZJ (王之杰),GUO TC (郭天財(cái)),WANG HC (王化岑),et al. Effect of planting density on photosynthetic characteristics and grain yield of super-high-yield winter wheat at late growth stages(種植密度對(duì)超高產(chǎn)小麥生育后期光合特性及產(chǎn)量的影響)[J].Journal of Triticeae Crops(麥類作物學(xué)報(bào)),2001,21(3):64-67.

    [59]ZHU YJ (朱云集),GUO RL (郭汝禮),GUO TC (郭天財(cái)),et al. Relationship between tillers with or without panicle and their endogenous hormones in two winter wheat varieties with different spike type(兩種穗型冬小麥品種分蘗成穗與內(nèi)源激素之間關(guān)系的研究)[J].Acta Agronomica Sinica(作物學(xué)報(bào)),2002,28(6):783-788.

    [60]LIU Y (劉 楊), WANG QS (王強(qiáng)盛),DING YF (丁艷鋒),et al.Advances in mechanisms of tiller occurs in rice (水稻分蘗發(fā)生機(jī)理的研究進(jìn)展)[J]. Chinese Agricultural Science Bulletin(中國(guó)農(nóng)學(xué)通報(bào)),2011,27(3):1-5.

    [61]WOUTER G,DOORN V,ANTHONY D S. Abscission of flowers and floral parts [J]. Journal of Experimental Botany,1997,48(4):821-837.

    [62]LEE B, MARTIN P, BANGERTH F.The effect of sucrose on the levels of acid, indoleacetic acid and zeatin/zeatin riboside in wheat ears growing in liquid culture [J]. Physiologia Plantarum,1989,77:73-80.

    [63]TIETZ A, LUDEWIG M, DINGKUHN M, et al. Effect of abscisic acid on the transport of assimilates in barley [J].Planta,1981,152:557-561.

    [64]AHMADI A, BAKER D A. Effects of abscisic acid(ABA)on grain filling processes in wheat[J].Plant Growth Regulation,1999,28(3):187-197.

    [65]LEE B, MARTIN P, BANGERTH F.The effect of sucrose on the levels of acid, indoleacetic acid and zeatin/zeatin riboside in wheat ears growing in liquid culture [J]. Physiologia Plantarum,1989,77:73-80.

    [66]ZHAO HJ (趙會(huì)杰), REN Q (任 琴),GUO TC (郭天財(cái)),et al.Physiological characteristics and the regulation of tiller growth of large -ear cultivar Lankao 906 (大穗型小麥蘭考906 分蘗發(fā)育的生理特征及其調(diào)控)[J].Journal of Triticeae Crops (麥類作物學(xué)報(bào)),2001,21(4):67-71.

    [67]LI CX (李春喜), ZHAO GC (趙廣才),DAI XM (代西梅), et al. Research on the relationship between wheat tillering dynamics and endogenous hormone(小麥分蘗變化動(dòng)態(tài)與內(nèi)源激素關(guān)系的研究)[J].Acta Agronomica Sinica(作物學(xué)報(bào)),2000,26(6):963-968.

    [68]LI CX(李春喜),WANG SZ(王紹中),DAI XM (代西梅), et al. Research on dynamic stage of endogenous hormones and their correlation with tillering characters of different varieties winter wheat (不同小麥品種內(nèi)源激素變化動(dòng)態(tài)及其與分蘗發(fā)生關(guān)系的研究)[J].Acta Agriculturae Boreali-Sinica (華北農(nóng)學(xué)報(bào)),2000,15(4):79-83.

    [69]MA XL (馬興林),LIANG ZX (梁振興).Study on the effect of endogenous hormones during tiller senescence of winter wheat (冬小麥分蘗衰亡過(guò)程中內(nèi)源激素作用的研究)[J]. Acta Agronomica Sinica(作物學(xué)報(bào)),1997,23(2):200-207.

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