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    Survey on cattle ticks in Nur, north of Iran

    2014-03-23 06:56:32AshkanGhasemiMoghaddamMozafarRazaviSeyedMehrshadRasouliSajadHosseinzadeMohammadMehdiDarvishiArashRakhshanpourMohammadTaghiRahimi

    Ashkan Ghasemi Moghaddam, Mozafar Razavi Seyed, Mehrshad Rasouli, Sajad Hosseinzade, Mohammad Mehdi Darvishi, Arash Rakhshanpour, Mohammad Taghi Rahimi

    1Young Researchers Club, Islamic Azad University, Babol Branch, Iran

    2Department of Veterinary Parasitology, Semnan University, Semnan, Iran

    3Department of Medical Parasitology and Mycology, School of Public Health, Tehran University of Medical Sciences, Tehran, Iran

    4Department of Parasitology and Mycology, School of Medicine, Mazandaran University of Medical Science, Sari, Iran

    5Young Researchers Club, Islamic Azad University, Babol Branch, Iran

    Survey on cattle ticks in Nur, north of Iran

    Ashkan Ghasemi Moghaddam1, Mozafar Razavi Seyed1, Mehrshad Rasouli1, Sajad Hosseinzade1, Mohammad Mehdi Darvishi2, Arash Rakhshanpour3, Mohammad Taghi Rahimi4,5*

    1Young Researchers Club, Islamic Azad University, Babol Branch, Iran

    2Department of Veterinary Parasitology, Semnan University, Semnan, Iran

    3Department of Medical Parasitology and Mycology, School of Public Health, Tehran University of Medical Sciences, Tehran, Iran

    4Department of Parasitology and Mycology, School of Medicine, Mazandaran University of Medical Science, Sari, Iran

    5Young Researchers Club, Islamic Azad University, Babol Branch, Iran

    PEER REVIEW

    Peer reviewer

    Mohammad Reza Youssefi, Assistant Professor, Department of Veterinary Parasitology, Islamic Azad University, Bbabol-Branch.

    Tel: +9811148631

    E-mail: youssefi929@hotmail.com

    Comments

    This is a good study in which the authors surveyed ticks of cattle in Nur County.

    The results are valuable as there is not published data regarding ticks of livestock animals in this area. In addition, the proba-ble dangers of the causative agent of disease which are transmitted by the isolated ticks were highlighted properly.

    Details on Page 211

    Objective:To survey the prevalence of cattle ticks in Nur County and prepare a list of tick fauna in this district.

    Acarine ecotoparasites, Tick, Livestock, Cattle, Public health risk, Iran

    1. Introduction

    Ticks (Arachnida: Acari: Parasitiformes) are hematophagous arthropods and obligatory ectoparasites which are considered significant in both veterinary and medical field by acting as vector of serious pathogens such asBabesia,Thileria,Rickettsia,Anaplasmaspp. andBorrelia. When these obligatory ectoparasites attach to a host for the aime of blood sucking, they induce skin irritation and anemia. Moreover, ticks are responsible for serious economic losses of animal owners particularly in livestock industries[1,2]. Ticks are classified into two major families, Ixodidae (hard ticks) and Argasidae (soft tick). The family Ixodidae comprises nearly 700 species including two major morphological and phylogenetic groups which are the Metastriata and the Prostriata. They have ability of infesting a wide variety of hosts such as mammals, birds, reptiles and amphibians. In addition, hard ticks are distributed broadlythroughout the world[3,4].

    The prevalence of the tick species which are involved on the transmission and their geographical distribution for the purpose of control and tick borne diseases are a matter of high importance. Although Nur County has considerable superficial water resources which prepare an ideal area for agriculture and animal husbandry, there is not enough information concerning tick fauna of different hosts in this district. Therefore, the current investigation was conducted to survey the prevalence of cattle ticks in Nur County and prepare a list of tick fauna in this district.

    2. Materials and methods

    2.1. Study area

    Nur County (36°34′25″N, 52°40’ 52°00′50″E) (2 675.00 km2) is located on the Caspian Sea coast and belongs to Mazandaran province. This area embraces abundant superficial water resources which is proper for agriculture and animal husbandry. This district contains pastures and forests which are favorable for cattle grazing (Figure 1).

    Figure 1. Map of Iran, highlighting the position of Nur County in Mazandaran province.

    2.2. Tick collection

    An investigation was carried out on ticks of 150 heads of cattle from 25 herds of 11 villages during the hot and humid months (the spring and summer) of 2011 from rural areas of Nur County, Mazandaran province, Iran. Tick sampling was undertaken on all body of each animal at different intervals.

    Thereafter, isolated ticks were counted and separately stored in 70% ethanol, labeled with the date until the species determination. Afterwards, all of crucial characters of tick samples were studied precisely. Their identification was undertaken based on taxonomic and structural differences of the species by means of stereoscope (Nikon SMZ1500) and light microscope (Nikon. Microphoy-FXA) which was equipped by camera (Memmert D-91126) according to available systematic keys[5-7].

    3. Results

    During the study, among 11 villages, a total number of 1 563 ticks were isolated from 150 examined cattle from 25 herds. The mean intensity for each animal was 10.42. Two tick genera and species were observed and recognized during the study including:Ixodes ricinus(I. ricinus) 802 (51%) (111 male, 691 female) andBoophilus annulatus(B. annulatus) 761 (49%) (51 male and 710 female) (Figures 2 and 3). Totally 1 401 female and 162 male ticks were extracted from examined cattle. Moreover, no soft tick (Argasidae family) was observed.

    Figure 2. Extracted tick (I. ricinus) from cattle.

    Figure 3. Extracted tick (B. annulatus) from cattle.

    4. Discussion

    In the present investigation, two tick genera and species from Ixodidae family were found, includingI. ricinus(51%) andB. annulatus(49%). In addition, the number of female ticks was noticeably higher than male. Species ofIxodesare vectors of major diseases such as Lyme disease, caused by the spirochaeteBorrelia burgdorferi, human granulocytic ehrlichiosis, Rocky Mountain spotted fever tick paralysis, Powassan encephalitis virus and babesiosis[8,9].

    In addition,B. annulatusbelongs to subfamily Rhipicephalinae. They are all one-host ticks. All stages including larval, nymphal, and adult spend on the same host and this is a rare features among ticks. Species ofBoophilusare vectors of Crimean-Congo hemorrhagic fever, ganjon viruses, bhanja virus in Nigeria and Thogoto virus in Kenya. Moreover, rickettsiaAnaplasma marginaleis carried to cattle by all three species ofBoophilusin Africa. By far, the most important disease transmitted by a species ofBoophilusis Texas cattle fever, also called red-water fever. The agent of this disease is a piroplasm,B. bigemina[10].

    In the United States in 1906,B. bigeminatransmitted byBoophilusand it caused annual losses of 100 million dollars[11]. In Tanzania, the annual cost of diseases which was estimated by ticks was computed at 364 million dollars[12]. Estimations of total economic impact of tick parasitism is not easy precisely due to many contributing factors, including reduction of weight gaining, decrease of milk production, expense of tick control, nutritional state and breed of cattle.

    According to literature review, Shemshadet al. introduced the following tick fauna from cattle, sheep and goats in Boeen Zahra County:Haemaphysalis concinna(0.63%),Haemaphysalis sulcata(12.66%),Hyalomma anatolicum(Hy. anatolicum) (3.80%),Hyalomma asiaticum(Hy. asiaticum) (3.16%),Hyalomma detritum(Hy. detritum) (5.70%),Hyalomma dromedarii(28.48%),Hyalommamarginatum(Hy.marginatum) (13.29%),Hyalomma schulzei(1.89%),Rhipicephalus bursa(Rh. bursa) (3.16%) andRhipicephalus sanguineus(R. sanguineus) (3.16%), and for Takistan’s livestock wereHyalomma dromedarii(9.86%),Hy. marginatum(13.29%),Hyalomma schulzei(1.89%) andR. sanguineus(3.16%), respectively[13].

    In Kelardasht (Chalous area),Ixodes, Boophilus, Dermacentor, Haemaphysalis, HyalomaandRhipicephaluswere reported from cattle and sheep thatI. ricinus(26.8%) was the most dominant tick species which was followed byB. annulatus(20.5%) in which our results are in agreement to their finding[14]. The occurrence of ticks on cattle in Ghaemshahr County, Mazandaran was reported 20.0% andR. sanguineuswere the most abundant species in the study area[15].

    In another investigation during 2004-2005, the following species were identified from cattle of eastern and western areas in Mazandaran province:B. annulatus(51.3%),Rh. bursa(16.8%),Haemaphysalis punctata(6.3%),I. ricinus(6.8%),Hy. marginatum(12.5%),Hy. anatolicumexcavatum (5.2%),Hy. asiaticum(0.6%),Hy. detritum(0.2%), andDermacentorspp. (0.1%) andB. annulatusandRh. bursawere the most prevalent tick species[16].

    The following 15 ixodid tick species were recognized over the survey period from cattle, sheep and goats in Zagros mountainous areas:Boophilus kohlsi(3.6%)R. sanguineus(4.5%),Rh. bursa(21.9%),Rhipicephalus turanicus(2.9%),Dermacentor niveus(12.9%),Dermacentor raskemensis(4.1%),Dermacentor marginatus(7.3%),Haemaphysalis punctata(3.5%),Hyalomma parva(0.6%),Hyalomma choldokovskyi(2.0%),Hy. anatolicumexcavatum(4.8%),Hy. anatolicum anatolicum(5.2%),Hy. asiaticum asiaticum(7.3%),Hy. marginatummarginatum(13.0%), andHy. detritum detritum(5.9%)[17]. In an investigation in Savajbolgh,RhipicephalusandHyalommawere the most obtained ticks[18]. In another similar study in Kerman, prevailing species wasHyalommain examined cattles[19].

    The authors draw a conclusion based on the results of current investigation that there is a probable risk of disease which is transmitted byI. ricinusandB. annulatus. Therefore, continuous parasitological studies and control programs are greatly required in order to decrease the spread of tick infestation in these areas. As tick dispersal may occur all the time owing to tick hosts movement and climate change. The domestic ruminant infestation must not be neglected and must be taken serious because of two and three host ticks. And this important fact demonstrates their prominent role in transmitting and spreading several dangerous diseases both in humans and animals. In addition, further researches are required due to considerable unexplored area of our country in order to increase our knowledge about tick and ecotoparasites of livestock and their infestations and probable zoonoses diseases in Iran.

    Conflict of interest statement

    We declare that we have no conflict of interest.

    Acknowledgements

    We wish to express our sincere thanks to Mr. Soleymani for his kind collaboration and assistance and also his valuable consultation during survey. This work was supported by the Young Researchers Club, Islamic Azad University, Babol Branch (Grant No. BPJ1391).

    Comments

    Background

    Ectoparasites play a major role in transmission of disease to livestock. Annually they impose a considerable burden on livestock industries. Moreover, we cannot ignore theirimportance as carrier of zoonose disease to human.

    I think, the background of the study contains important aspects of ticks both in medical and veterinary fields.

    Research frontiers

    Survey on ectoparasite, particularly ticks of livestock which are usually in close contact with human, is of critical importance to economic and human health. As control of ectoprasites population is not easy, it requires a great amount of budget, energy and time.

    Related reports

    In Kelardasht (Chalous area), the most dominant tick was reportedI. ricinus(26.8%) that is in agreement with the results of this research, although variety of their tick species were different. Shemshadet al. reportedHy. dromedariias a the most dominant tick (28.48%) in Boeen Zahra County. This contrast is probably due to different geographical and climate condition.

    Innovations and breakthroughs

    Generally, preparing data from an area where there is not any information is a good idea. Besides, introduction of two ticks which are considered as a serious danger not only for human but also for livestock industry is valuable.

    Applications

    This is noteworthy to know the prevalence and mean intensity of tick in this area because we can estimate the economic impact of tick parasitism in livestock and also we are able to design a control program in order to prevent of probable zoonose disease and economical losses.

    Peer review

    This is a good study in which the authors surveyed ticks of cattle in Nur County. The results are valuable as there is not published data regarding ticks of livestock animals in this area. In addition, the probable dangers of the causative agent of disease which are transmitted by the isolated ticks were highlighted properly.

    [1] Wall R, Shearer D. Veterinary ectoparasites: biology, pathology and control. 2nd ed. Oxford: Blackwell Science; 2001, p. 1-2, 27-31, 66, 76, 80-81, 149-150, 166-167, 172-177, 179-181.

    [2] Shemshad K, Rafinejad J, Kamali K, Piazak N, Sedaghat MM, Shemshad M, et al. Species diversity and geographic distribution of hard ticks (Acari: Ixodoidea: Ixodidae) infesting domestic ruminants, in Qazvin Province, Iran. Parasitol Res 2011; 110(1): 373-380.

    [3] Service MW. Lecture notes on medical entomology. Oxford: Black Well Scientific Publication; 1986, p. 338.

    [4] Larry SR, Janovy J. Foundations of parasitology. 7th ed. New York: Mcm Graw Hill; 2006; p. 570.

    [5] Estrada-Pena A, Bouattour A, Camicas JL, Walker AR. Ticks of domestic animals in Mediterranean Region: a guide to identification of species. Zaragoza: University of Zaragoza; 2004, p. 43-131.

    [6] Keirans JE, LitwakI TR. Pictorial key to the adults of hard ticks, family Ixodidae (Ixodida: Ixodoidea), east of the Mississippi River. J Med Entomol 1989; 26(5): 435-448.

    [7] Walker AR, Bouattour A, Camicas JL, Estrada- Pena A, Horak IG, Latif A, et al. Ticks of domestic animals in Africa: a guide to identification of species. London: Bioscience Reports; 2003, p. 74-221.

    [8] Ramesh G, Borda JT, Dufour J, Kaushal D, Ramamoorthy R, Lackner AA, et al. Interaction of the Lyme disease dpirochete Borrelia burgdorferi with brain parenchyma elicits inflammatory mediators from glial cells as well as glial and neuronal apoptosis. Am J Pathol 2008; 173(5): 1415-1427.

    [9] Shaw SE, Day MJ, Birtles RJ, Breitschwerdt EB. Tick-borne infectious diseases of dogs. Trends Parasitol 2001; 17: 74-80.

    [10] Shkap V, Kocan K, Molad T, Mazuz M, Leibovich B, Krigel Y, et al. Experimental transmission of field Anaplasma marginale and the A. centrale vaccine strain by Hyalomma excavatum, Rhipicephalus sanguineus and Rhipicephalus (Boophilus) annulatus ticks. Vet Microbiol 2009; 134(3-4): 254-260.

    [11] Morgan NO. Potential impact of alien arthropod pests and vectors of animal diseases on the U.S. livestock industry. In: Pimentel D, editor. CRC Handbook of pest management in agriculture. 2 ed. Boca Raton: CRC Press Inc.; 1991, p. 99-105.

    [12] Kivaria FM. Estimated direct economic costs associated with tick-borne diseases on cattle in Tanzania. Trop Anim Health Prod 2006; 38: 291-299.

    [13] Shemshad M, Shemshad K, Sedaghat MM, Shokri M, Barmaki A, Baniardalani M, et al. First survey of hard ticks (Acari: Ixodidae) on cattle, sheep and goats in Boeen Zahra and Takistan counties, Iran. Asian Pac J Trop Biomed 2012; 2(6): 489-492.

    [14] Youssefi MR, Keighobadi M, Asnaashari MY. Ixodid tick species infesting sheep and cattle in Kelardasht part (Chaloos). J Entomol 2008; 5(1): 56-58.

    [15] Nasibeh HV, Zakkyeh T, Hassan V, Reza Y, Morteza HV, Ail OM. Survey of tick species parasiting domestic ruminants in Ghaemshahr county, Mazandaran province, Iran. Asian Pac J Trop Med 2010; 3(10): 804-806.

    [16] Razmi GR, Glinsharifdini M, Sarvi S. Prevalence of Ixodid ticks on cattle in Mazandaran province, Iran. Korean J Parasitol 2009; 4(45): 307-310.

    [17] Nabian S, Rahbari S. Occurrence of soft and hard ticks on ruminants in Zagros Mountainous Areas of Iran. Iranian J Arthropod-Borne Dis 2008; 2(1): 16-20.

    [18] Esmailnia K, Aharipour V. Survey of sheep and goat in Savajbulagh and Abic area. Proceedings of the 5th National Iranian Congress of Parasitology; 2005 November 15-17; Tehran, Iran. p. 178.

    [19] Radfar MH. Evaluation of tick ininfestaion in cattle, sheep, goat and camel in South East of Iran. Proceedings of the 5th National Iranian Congress of Parasitology; 2005 November 15-17; Tehran, Iran. p. 193.

    10.1016/S2221-1691(14)60233-1

    *Corresponding author: Mohammad Taghi Rahimi, Department of Parasitology and Mycology, School of Medicine, Mazandaran University of Medical Science, Sari, Iran and Young Researchers Club, Islamic Azad University, Babol Branch, Iran.

    Tel: +989122930625.

    E-mail: rahimimt@gmail.com

    Foundation Project: Supported by the Young Researchers Club, Islamic Azad University, Babol Branch (Grant No. BPJ1391).

    Article history:

    Received 19 Dec 2013

    Received in revised form 22 Dec, 2nd revised form 30 Dec, 3rd revised form 10 Jan 2013

    Accepted 25 Feb 2014

    Available online 28 Mar 2014

    Methods:This investigation was carried out on 150 head of cattle ticks of rural areas of Nur city which is located in Mazandaran province during spring and summer seasons of 2011. The collected ticks were identified using light microscope and available systematic keys.

    Results:A total number of 1 563 ticks were isolated from examined cattle and their genus and numbers including: Ixodes ricinus 51% (111 male and 691 female) and Boophilus annulatus 49% (83 male and 678 female), respectively.

    Conclusions:Results of the current investigation indicate the presence of two species of acarine ectoparasites which have potential health risk Ixodes ricinus and Boophilus annulatus. More studies are required to increase our data concerning ticks and other ectopreasites of ruminants in other areas of Mazandaran province and should be noted to their ability in transmission of infectious agents.

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