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Restocking of

机译:补货

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摘要

The restocking of the endangered Kanglang white minnow (Anabarilius grahami) in Lake Fuxian, China, has been conducted for 13 years. However, few studies have reported on the effectiveness of the captive breeding and release of this species. Here, we investigated variations in morphology, including body shape and skeletal deformities, and genetic features among hatchery-born and recaptured A. grahami from Lake Fuxian. Results showed that current hatchery-reared fish displayed a stubbier body shape than their wild conspecifics from the 1980s. Furthermore, high skeletal deformity ratios were found in two aquafarms (Luchong, 50%; Haikou, 45.2%), and the release of malformed fish elevated the skeletal deformity rate of wild stocks found near the Lake Fuxian release sites (west coast, 19.0%; east coast, 12.5%). Based on variations in the cytochrome b (cyt b) gene, existing A. grahami populations showed relatively high haplotype diversity and low nucleotide diversity. Hatchery populations exhibited reduced genetic variations based on microsatellite markers and reintroduction led to markedly lower genetic diversity around the west coast release sites of Lake Fuxian. Analysis of molecular variance (AMOVA) of cyt b and microsatellite analysis showed that the greatest genetic variations were found within populations, and genetic distance and Bayesian clustering analysis showed that the 14 populations clustered into one group. Based on morphological and genetic tests, we discuss corresponding recommendations, including release size, feed formulations, breeding strategies, and release tags, to minimize potential risks and improve hatchery practices for better restocking of this species.
机译:在中国湖南湖南濒临灭绝的Kanglang白米诺皮(Anabarilius Grahami)的重新分区已经进行了13年。然而,很少有研究报告了俘虏育种和释放该物种的有效性。在这里,我们调查了形态的变化,包括身体形状和骨骼畸形,以及来自南部湖泊的孵化场和覆盖的A. Grahami之间的遗传特征。结果表明,目前的孵化场饲养的鱼类从20世纪80年代的野生队伍展示了一个顽固的身体形状。此外,在两个Aquafarms(Luchong,50%;海口,45.2%)中发现了高骨骼畸形比率,并且畸形鱼的释放升高了南部湖泊释放地点(西海岸,19.0%)附近发现的野生股的骨骼畸形率;东海岸,12.5%)。基于细胞色素B(Cyt B)基因的变化,现有A. Grahami群体显示出相对高的单倍型多样性和低核苷酸多样性。孵化场群体基于微卫星标志物和重新引入的遗传变异表现出降低的遗传变异,导致南海岸释放地点的遗传多样性显着降低。 Cyt B和微卫星分析分子方差(Amova)分析表明,群体中发现最大的遗传变异,遗传距离和贝叶斯聚类分析表明,14种群体聚集成一组。基于形态和遗传检验,我们讨论了相应的建议,包括释放规模,饲料制剂,育种策略和释放标签,以尽量减少潜在的风险,并改善孵化场实践,以便更好地重新进口该物种。

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