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1.
Freshwater mussels of the order Unionida encyst into the fish mucosa to metamorphose and complete their life cycle, causing a parasitic disease known as glochidiosis. This parasitic stage represents a bottleneck for the survival of naiads, particularly for critically endangered species as Margaritifera margaritifera; however, little is known about the events occurring during this critical stage. Therefore, this study aimed to histologically characterize the development of M. margaritifera glochidiosis in Atlantic salmon to get insight into the pathogenesis of this interaction. Fish exposed to glochidia were sampled during the first 44 days post-exposure, and organs were observed by stereomicroscopy and light microscopy. Glochidia attached to the gills by pinching the lamellar epithelium, whereupon an acute proliferative branchitis engulfed most of the larvae. However, during the first 14 days, a severe detachment of unviable glochidia occurred, associated with the presence of pleomorphic inflammatory infiltrate and epithelial degeneration. In the cases where larvae remained attached, a chronification of the lesions with none to scarce inflammation was observed. These results provide key information to better understand the complex host–parasite interaction during the early stages of glochidiosis and provide valuable information to optimize artificial rearing of naiads in conservation of threatened freshwater mussel populations.  相似文献   
2.
Pugnose minnow (Opsopoeodus emiliae) is a small, reclusive species that is widespread in North America, but is one of the rarest fishes in Canada, found in less than 12 known localities in southwestern Ontario. In contrast to most pugnose minnow populations across the global range, Canadian populations are primarily found in turbid systems, potentially indicating persistence in suboptimal conditions. We used data from a multi-gear species and habitat survey in the Canard River, Ontario, a system dominated by agricultural inputs and the best-known capture site of the species in Canada, to parameterise multi-gear occupancy models for understanding the relationship between pugnose minnow occupancy and microhabitat features, including the role of turbidity. Almost 300 pugnose minnow were captured, representing the largest single collection of the species in Canadian history. The best occupancy model indicated that the probability of pugnose minnow occupancy was highest in the deepest sites with the lowest water clarity (i.e. high turbidity); however, competing models suggested that occupancy was highest at sites with wild celery (Vallisneria americana) and higher water clarity, signifying that habitats with low turbidity may be utilised if sufficient physical cover exists. Together, our results suggest that Canadian pugnose minnow populations occupy and potentially favour turbid conditions, possibly to avoid visual predators in clearer habitats. It remains uncertain whether this abiotic association represents a long-term, viable, local adaptation or whether persistence of pugnose minnow in the Canard River is at risk unless significant water quality improvements can be made.  相似文献   
3.
明轮驱动虾塘自主导航投饵船设计与可靠性试验   总被引:3,自引:0,他引:3  
基于明轮驱动的虾塘投饵船能够适应养殖池塘复杂的环境、满足全塘抛撒的要求,可靠性是其进行推广的关键。采用滚塑工艺设计了全封闭投饵船体,利用免油脂润滑不锈钢链轮和明轮作为驱动机构,以避免对水体的污染,螺旋输送饵料装置可满足船载投饵过程中重心位置稳定的要求,通过GPS+电子罗盘的方式实现了自主导航定位和姿态控制需求。根据虾塘投饵和控制性能要求,进行投饵船直线运动和转弯运动模型的构建,采用PID航向、航速运动控制算法进行巡航路径控制,池塘测试平均速度为0.72m/s,直行和转弯最大偏航量分别为0.8m和0.5m。40d的养殖塘现场试验结果表明,自主导航投饵船在复杂路径下运行平稳,可满足虾塘饵料投喂要求,同时对强风、大雨等恶劣环境进行了可靠性测试,发现并解决了相关问题。  相似文献   
4.
  1. Systematic conservation planning in freshwater ecosystems faces multiple challenges because of the dynamic nature of rivers and their multiple dimensions of connectivity. In intermittent hydrological systems connectivity is functional when water is available, allowing the exchange of aquatic individuals between isolated freshwater ecosystems. Integrating these isolated systems in their hydrological context is essential when identifying priority areas for conservation, in order to try to minimize the propagation of threats into target water bodies (management units) from the surrounding landscape.
  2. Here, the use of a systematic planning approach is demonstrated to identify a set of priority management units to preserve freshwater biodiversity in an arid system of fragmented water bodies immersed in a landscape subject to a range of impacts.
  3. Twenty-six water-dependent taxa from 59 mountain rock pools (gueltas) of three southern Mauritanian mountains were used as a case study. A conservation planning tool (marxan ) was used to find priority conservation areas to integrate intermittent hydrological systems in their hydrological context, promote connectivity, and minimize the downstream propagation of threats. Three types of connectivity were analysed: (i) no connectivity, (ii) connectivity between gueltas, and (iii) connectivity between gueltas and sub-catchments.
  4. Considering different types of longitudinal connectivity affects the number and spatial allocation of the priority gueltas selected, and the conservation status of the gueltas and their upstream areas. Incorporating connections between gueltas and upstream locations in the modelling resulted in the selection of gueltas in areas with a low human footprint and in the increased connectivity of the solutions.
  5. The results obtained revealed important locations for local biodiversity conservation, and the method presented can be used when assessing the propagation of potential waterborne threats into isolated management units. The framework developed allows connectivity to be addressed in conservation planning. It can be replicated in regions with similar isolated habitats that connect through intermittent hydrological systems and can also be applied to lateral and vertical hydrological connectivity.
  相似文献   
5.
3种浮床植物对关中地区2种污染源涝池水体净化效率研究   总被引:1,自引:0,他引:1  
基于对植物修复空间特异性的理解,针对联通关中水系的涝池近年来出现的水体富营养化和黑臭现象,选取常见浮床植物美人蕉、水菖蒲和西伯利亚鸢尾,通过室外水培试验,探究其对涝池污染原水的净化效果,试验共持续35天。结果表明:(1)试验结束时,3种植物在株高、根长生物量均有显著增加,增长率表现为美人蕉水菖蒲西伯利亚鸢尾。(2)美人蕉、水菖蒲和西伯利亚鸢尾对水体中TN的平均去除率分别为56.18%,52.17%,60.76%,均显著高于对照组(P0.05);美人蕉和水菖蒲对水体中TP平均去除率分别为55.42%和58.32%,均显著高于对照组(P0.05),而西伯利亚鸢尾组与对照组无显著差异(P0.05),此外美人蕉和水菖蒲还能起到调节水体pH和DO的作用。(3)3种植物对水体中NH_3—N的平均去除率分别为76.98%,65.71%,78.94%,其中美人蕉组和水菖蒲组NH_3—N的主要去除途径为植物吸收和硝化反应,西伯利亚鸢尾组NH_3—N的主要去除途径主要是氨的挥发和硝化反应等,而对照组NH_3—N去除率高达60.55%的主要原因是氨的挥发;植物组及对照组中NO_3~-—N浓度随时间均呈现增加趋势,主要与各试验组中水体硝化反应及植物吸收效率的差异性有关。(4)3种植物中,水菖蒲适用于点源和面源2种污染源涝池水体的净化,美人蕉只适合用于面源污染涝池水体的净化,而西伯利亚鸢尾净化能力较差,生长适应性差,不适宜作为水生浮床植物推广。研究结果为涝池污染水体修复的浮床植物选择提供参考。  相似文献   
6.
The effect of a commercial probiotic (NanoCrusta, Altacrusta, Mexico City, Mexico) on the growth performance of Brachionus calyciflorus Pallas, 1766, was evaluated. In a first approach, probiotics were supplied in four densities (2.0 × 103, 1.1 × 105, 2.1 × 105 and 2.1 × 10cells/ml), alone and in combination with Chlorella vulgaris (1 × 10cells/ml). The test rotifer did not grow on the probiotic alone. However, when probiotics + C. vulgaris were added, the maximum densities (Dmax; ind/ml) and population growth rates (r) observed were higher. In the second experiment, probiotics were supplied at five higher densities (2.1 × 106, 4.2 × 106, 8.5 × 106, 1.7 × 107 and 3.4 × 10cells/ml) with C. vulgaris and a control treatment with only C. vulgaris (probiotic‐free). Treatments supplied with probiotics between 2.1 × 106 and 1.7 × 10cells/ml showed significantly higher Dmax and r than the control treatment. The results showed a positive effect of probiotic bacteria when supplied with C. vulgaris. The best outcome showed a Dmax 2.16 times and an r 1.63 times higher than the density of the control treatment. Growth rates were higher in the treatments with probiotics compared to the control. We conclude that application of NanoCrusta is feasible to improve B. calyciflorus production, but the effects need to be tested in larger scales.  相似文献   
7.
微生物群落在水产养殖中起着重要作用,深入了解微生物群落组成及其构建机制对了解池塘生态功能具有重要意义。本研究采用高通量测序技术对南京地区斑点叉尾鮰(Ictalurus punctatus)养殖池塘水体中细菌群落结构特征进行了分析。结果显示,斑点叉尾鮰养殖池塘水体细菌群落结构呈现出明显的季节性变化,整个年度水体细菌群落呈现出连续的演替特征,冬季与春季、夏季与秋季的细菌群落结构较为相似。优势菌群主要为蓝藻门(Cyanobacteria)、放线菌门(Actinobacteria)、变形菌门(Proteobacteria)和拟杆菌门(Bacteroidetes)。环境因子中,总溶解性悬浮物(TDS)、水温(Temp)、酸碱度(pH)、亚硝酸盐(NO_2~--N)和总有机碳(TOC)与斑点叉尾鮰养殖池塘水体细菌群落结构有显著相关(P0.05),对细菌群落结构的塑造影响也最大(r~20.6)。  相似文献   
8.
为了降低灌溉水中Cd向农田输入,减轻农田土壤Cd污染,试验选取梭鱼草、狐尾藻、野茭白为材料,构建"植物塘+人工湿地+吸附池"系统,研究其对湖南典型矿区Cd超标灌溉水净化效果,并分析Cd在系统中的分布规律。结果表明:在2018年11月—2019年9月监测期间,进水全量Cd平均浓度为6.35μg·L~(-1),经系统净化后灌溉水中可溶态Cd、悬浮态Cd及悬浮颗粒物平均去除率分别为86.58%、90.37%和81.54%,构建的人工系统可有效降低灌溉水中Cd含量。进水口悬浮态Cd与悬浮颗粒物呈极显著正相关,悬浮颗粒物与进水流速呈显著正相关。灌溉水Cd输入总量为859.61 g,大气沉降Cd输入总量为95.34 g,处理系统拦截为865.52 g,各个单元拦截量从高到低依次为一级植物塘(544.64 g)三级人工湿地+吸附池(167.62 g)二级植物塘(156.26 g)。3种湿地植物对Cd均有较好的富集效果,富集浓度随水流方向下降。一、二级植物塘底泥最大Cd浓度分别为11.05、4.75 mg·kg~(-1),底泥中Cd弱酸可溶态比值较大,存在向水体解吸释放的风险。所构建的"植物塘+人工湿地+吸附池"净化系统可有效降低湖南典型矿区灌溉水中超标Cd含量,降低农田土壤Cd的灌溉输入通量。  相似文献   
9.
南美白对虾池塘养殖对于水体质量有着较为严苛的要求,残饵及生物排泄物的增多会大量消耗水体溶解氧,进而打破水体动态平衡,导致NH3-N、NO2-N等毒害成分升高,引起南美白对虾病害甚至导致死亡,造成养殖户经济损失并且阻碍了南美白对虾养殖产业的健康发展。针对上述问题,笔者研究并开发一种能够实时监测养殖池塘水质,并能根据南美白对虾生长习性智能控制增氧机、水泵等养殖设备的南美白对虾池塘养殖水质智能控制系统。系统具有控制智能、运行可靠、集成度高等特点,在养殖生产试验中取得了良好效果,保证了南美白对虾养殖过程的安全,有效降低了南美白对虾池塘养殖风险。  相似文献   
10.
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