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Distribution of trematodes in snails in ponds at integrated small-scale aquaculture farms

机译:综合小型水产养殖场池塘蜗牛中吸虫的分布

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In integrated small-scale aquaculture farming, animal and human excreta maybe used as fish feed and pond fertilizer, thereby enhancing transmission of fish-borne zoonotic trematodes (FZTs) from final hosts, like humans, pigs and chickens, to snails. Areas within a pond could vary in trematode egg-load due to the immediate bordering land, and this might provide implications for control of these trematodes or sampling in field studies measuring FZT prevalence in snails. We therefore estimated the effect of bordering land use on prevalence and FZT burden in snails in different areas within small-scale aquaculture ponds. Nine sampling areas within a pond were assigned in six ponds. For each sampling area, about 120 Melanoides tuberculata snails were collected. Based on land use bordering a sampling area, these were categorized in 5 risk-categories: low-risk (road, rice planted in pond, agriculture, or middle of pond), human access point to pond, livestock sty (pigs or poultry), both human access point and livestock sty, and water connection to canal. In total, 5392 snails were collected. Percentages of snails with parapleurolophocercous cercariae varied between 6% in areas categorized as low-risk and areas with livestock sty only to 15% in areas with both human access point and livestock sty; only this 15% was significantly different from the prevalence in the low-risk category. Percentages of snails with xiphidio cercariae did not differ between risk-categories and varied between 5% and 10%. Mean snail size was 15.2. mm, and was significantly associated with both the probability of infection as well as parasite burden. Very small differences in parasite burden were found at different land use areas; the maximum difference was about 11 cercariae. This study demonstrated only small differences between areas surrounding a pond on risk of snails to be infected with fish-borne trematodes within different pond areas. In field studies on FZTs in M. tuberculata snails in ponds, sampling from ponds can therefore be done without considering areas within ponds. ? 2012 Elsevier B.V.
机译:在小型综合水产养殖中,动物和人的排泄物可用作鱼饲料和池塘肥料,从而增强了鱼类的人畜共患病性吸虫(FZT)从最终宿主(如人,猪和鸡)到蜗牛的传播。由于紧邻边界的土地,池塘中的区域吸虫的卵负荷可能有所不同,这可能为控制这些吸虫或在田间研究中测量蜗牛的FZT患病率提供了启示。因此,我们估计了在小规模水产养殖池塘内不同区域,边界土地利用对蜗牛流行和FZT负担的影响。在六个池塘中分配了一个池塘中的九个采样区域。对于每个采样区域,收集了约120枚结核黑皮病蜗牛。基于与采样区域接壤的土地利用,将这些风险分为以下五类:低风险(道路,池塘中种植的水稻,农业或池塘中部),人类进入池塘的入口点,牲畜圈(猪或家禽) ,人类的出入口和牲畜的猪圈,以及与运河的水连接。总共收集了5392只蜗牛。在被归类为低风险地区和有猪圈的地区,带尾巴副肺尾的蜗牛的百分比在6%之间,而在具有人类接触点和牲畜圈的地区只有15%。只有这15%与低风险类别的患病率显着不同。在不同风险类别中,带有尾phi的蜗牛的百分比没有差异,在5%和10%之间变化。平均蜗牛大小为15.2。毫米,并与感染的可能性和寄生虫负担显着相关。在不同的土地利用地区,寄生虫负担的差异很小。最大差异约为11个尾c。这项研究表明,在池塘周围区域之间,蜗牛在不同池塘区域内被鱼源吸虫感染的风险很小。在池塘中结核分枝杆菌蜗牛的FZTs的现场研究中,因此可以在不考虑池塘内面积的情况下从池塘中取样。 ? 2012年Elsevier B.V.

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