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Strong Genetic Differentiation of <i>Glytothorax zanaensis</i>(Wu et al. 1981) in Nu River, China
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作者 Xiping Yuan Dengqiang Wang +4 位作者 Shaoping Liu Hong Li Wang Ke xinbin duan Daqing Chen 《Agricultural Sciences》 2014年第6期490-497,共8页
The Nu River Project comprised of 13-dam cascade is one of the biggest hydropower development projects yet conceived in China. However, hydropower development will inevitably result in the local ecological environment... The Nu River Project comprised of 13-dam cascade is one of the biggest hydropower development projects yet conceived in China. However, hydropower development will inevitably result in the local ecological environment and biological material impact, particularly the effects on fish. Glyptothorax zainaensis is weak in swimming with suction cup and is extremely sensitive in the hydrological characteristics and water quality changes, so that it can be considered as a water quality monitor of indicator organism. Currently, with the need for conservation, fishery restoration and so on, there is a great demand for genetic information on Glyptothorax zainaensis. Fourty microsatellite loci were isolated, characterized and evaluated from Glyptothorax zainaensis. A total of 91 different alleles were observed in the 303 wild Glyptothorax zainaensis, and the percentage of polymorphic bands ranged from 41.8% to 66.7%, with an average of 90.1%. The genetic diversity value was significantly huge with the expected heterozygosity ranging from 0.578 to 0.706, the observed heterozygosity value ranging from 0.923 to 0.980 and PIC value ranging from 0.418 to 0.644, which showed that the wild Glyptothorax zainaensis population had a high level of genetic diversity. Analysis of molecular variance (AMOVA) and pairwise Fst showed a significant level of genetic differentiation (P < 0.01) among the populations accounting for 40.2% of the total variance. Additionally, results derived from different statistical techniques with different software packages included cluster analysis on NJ tree. Apart from such molecular approaches, we opposed four ways to strengthen the effective resources protection. 展开更多
关键词 Glyptothorax zanaensis Genetic Structure NU RIVER DAM SSR
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Status of aquatic organisms resources and their environments in Yangtze River system(2017-2021)⋆ 被引量:1
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作者 Haile Yang Li Shen +104 位作者 Yongfeng He Huiwu Tian Lei Gao Jinming Wu Zhigang Mei Nian Wei Lin Wang Tingbing Zhu Feifei Hu Jinling Gong Hongchun Du xinbin duan Huatang Deng Daoqun Wang Fengyue Zhu Yunfeng Li Fan Wu Huijun Ru Yan Zhang Junyi Li Junlin Yang Yuntao Zhou Dongdong Fang Yinping Wang Danqing Lin Yanping Yang Peijie Li Silei Liu Jian Yang Ping Zhuang Sikai Wang Tao Zhang Gang Yang Wenbo Yang Lilai Yuan Kun Cao Shuo Xu Huiyuan Liu Zhiqiang Liang Chongrui Wang Hong Li Xiping Yuan Xin Yang Yilong Fu Yanping Zhang Haixin Zhang Zhiying Tao Sheng Wang Xiaoping Gao Binsong Jin Kemao Li Guojie Wang Shenglong Jian Yingqin Li Chenjiang Xue Chunyun Lei Shaowei Xue Yi Sun Bin Zhu Ke Shao Xingkun Hu Meihua Xiong Jun Du Bin He Tao Yan Yingying Huang Yuanchao Zou Biwen Xie Yongming Wang Bin Li Fei Liu Yaoyao Zhang Fei Fan Zhijian Wang Jing Huang Haoran Gu Hailong Ge Yan Dan Yan Li Shuqiao Wang Chuang Zhang Lu Zhou Xue Wang Sheng Zeng Yan Xiang Xugang He Jianhui Qin Chengxing Xia Jie Hou Yifu Shi Lifang Gao Zhiqiang Zhu Hongbao Shen Yun Du Xuejun duan Jiawu Xiong Deguo Yang Shaoping Liu Zhaohui Ni Hui Zhang Kai Liu Feng Zhao Yingren Li Jianwei Wang Qiwei Wei 《Aquaculture and Fisheries》 CSCD 2024年第5期833-850,共18页
The Yangtze River is the mother river of China.To promote the aquatic ecosystem protection of the great river,the Project of Yangtze Fisheries Resources and Environment Investigation(2017-2021)supported by the Ministr... The Yangtze River is the mother river of China.To promote the aquatic ecosystem protection of the great river,the Project of Yangtze Fisheries Resources and Environment Investigation(2017-2021)supported by the Ministry of Agriculture and Rural Affairs,P.R.China carried out by 24 institutes and universities that located in the Yangtze River basin surveys the status of(1)fish species composition and spatial distribution,(2)current fish abundance,(3)endangered fishes,(4)Yangtze finless porpoise,(5)aquatic eco-environments,(6)water-level fluctuation areas,(7)capture fisheries and recreational fisheries of the Yangtze River mainstream and 10 of its main tributaries,including Yalong River,Heng River,Min River(including Dadu River),Chishui River,Tuo River,Jialing River,Wu River,Han River,Dongting Lake and Poyang Lake.The results showed that there were 443 fish species(belonging to 163 genus,37 families,and 18 orders)before 2017,but only 323 fish species(including 15 new recorded exotic species)were recorded in the project of 2017-2021.Among them,Cyprinus carpio,Carassius auratus,Hypophthalmichthys molitrix,Pelteobagrus fulvidraco,Coilia brachygnathus,Silurus asotus,Saurogobio dabryi,Ctenopharyngodon idellus,Pelteobagrus nitidus,Hemiculter leucisculus,Siniperca chuatsi,Coreius heterodon,Culter alburnus,Parabramis pekinensis,and Aristichthys nobilis were the dominant species across the whole Yangtze River system.It is estimated that there were 886 million individuals weighing 124.8 million kg,merely equivalent to 27.3%of the resources in 1950s,30.9%of the resources in 1960s,or 58.7%of the resources in 1980s.In the new list of protected fishes that recorded in the Yangtze River system,only 15 of 29 were collected in this project of 2017-2021.Psephurus gladius has been affirmed to be Extinct by International Union for Conservation of Nature(IUCN).The wild individuals of Tenualosa reevesii and Luciobrama macrocephalus have disappeared for many years and maybe have been extinct already.Acipenser dabryanus has been affirmed to be Extinct in the Wild by IUCN.The natural propagations of A.sinensis,Myxocyprinus asiaticus and Trachidermus fasciatus have been interrupted for many years.The populations of Yangtze finless porpoise in the Yangtze River mainstream,Dongting Lake and Poyang Lake have steadily rising sizes and expanding distributions in 2017-2021.Parts of them migrate from one region to another with the seasons,which would result in the fluctuation of Yangtze finless porpoise population within some regions.The conventional indicators of water quality in the Yangtze River system were good and conformed to the water quality criteria of fishery in 2017-2021.In the last 40 years,the maximum surface water area in the Yangtze River basin extended to approximately 63,360 km2,the minimum surface water area covered approximately 26,396 km2,and the seasonal water-level fluctuation areas occupied approximately 36,964 km2.Compared with 1984-2000 period,the 2001-2020 period witnessed an overall decreasing trend in the frequency of surface water occurrence within about 25,869 km2 of aquatic areas.From 1984 to 2000 period to 2001-2020 period,permanent surface water has decreased by nearly 8,750 km2.In 2017,the fishermen were mainly 40-60 years old and their educational levels were mainly lower than junior high school.In 2017,most anglers were older than 40 and used hand rod and/or sea rod.Their average catch of each time was mainly less than 1 kg.Results suggested that the fishing ban in key waters of the Yangtze River basin is not only an ecological project of aquatic ecosystem conservation,but also a livelihood project for the fisherman to embrace industrial transformation and improve their living conditions.After the implementation of the fishing ban,the fisheries resources would gradually recover,and the Yangtze finless porpoise population size would also see a steady increase.However,the endangered species would remain threatened for a long time.The degraded waterbodies and water-level fluctuation areas would be the key restrictive factors for future aquatic ecosystem recovery in the Yangtze River basin.Since this survey was carried out before the fishing ban,the current results could provide a baseline for future evaluation of the effect of the Yangtze River fishing ban. 展开更多
关键词 FISHES Yangtze finless porpoise RESOURCES Aquatic ecosystem FISHERIES Background investigation Yangtze river system
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基于基因组重测序的长江上游瓦氏黄颡鱼群体遗传结构
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作者 熊飞 刘红艳 +3 位作者 翟东东 段辛斌 田辉伍 陈大庆 《生物多样性》 CAS CSCD 北大核心 2023年第4期138-147,共10页
利用基因组重测序的方法获取高通量SNP标记,分析了长江上游三峡大坝-白鹤滩大坝之间8个不同江段(太平溪、巴南、合川、岷江口、宜宾、邵女坪、桧溪、冯家坪)共136尾瓦氏黄颡鱼(Pelteobagrus vachelli)的遗传多样性和遗传分化水平,阐明... 利用基因组重测序的方法获取高通量SNP标记,分析了长江上游三峡大坝-白鹤滩大坝之间8个不同江段(太平溪、巴南、合川、岷江口、宜宾、邵女坪、桧溪、冯家坪)共136尾瓦氏黄颡鱼(Pelteobagrus vachelli)的遗传多样性和遗传分化水平,阐明了长江上游瓦氏黄颡鱼群体遗传结构。结果显示:(1)三峡库区太平溪群体和巴南群体具有较高的SNP(single nucleotide polymorphism)数量和核苷酸多样性指数,遗传来源丰富,其遗传多样性高于其他群体;上游的岷江口、宜宾、邵女坪和冯家坪群体遗传来源单一。(2)瓦氏黄颡鱼存在3个不同的遗传分支,且不同遗传分支之间存在较大的遗传分化。(3)群体SNP数量和核苷酸多样性指数与河流坡降呈显著负相关,群体遗传分化指数与地理距离和隔离时间无显著相关性。研究结果表明,在三峡大坝-白鹤滩大坝江段,瓦氏黄颡鱼上游群体具有更低的遗传多样性,更易发生遗传漂变作用,在鱼类遗传多样性保护中需要特别关注;瓦氏黄颡鱼存在3种显著的遗传结构,应视为3个不同遗传单元进行种质资源管理。 展开更多
关键词 瓦氏黄颡鱼 长江上游 遗传分化 遗传多样性 基因组重测序
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三峡库区鱼类群落结构和功能多样性 被引量:6
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作者 张伟 翟东东 +8 位作者 熊飞 刘红艳 陈元元 王莹 廖传松 段辛斌 田辉伍 邓华堂 陈大庆 《生物多样性》 CAS CSCD 北大核心 2023年第2期83-95,共13页
物种的功能特征是联系群落结构和功能的关键因素,开展功能多样性研究可以更好地理解群落结构和功能的关系。为了解三峡库区鱼类群落结构和功能多样性的空间格局,作者于2019年和2020年对三峡库区库首秭归、库中云阳、库尾巴南及库首支流... 物种的功能特征是联系群落结构和功能的关键因素,开展功能多样性研究可以更好地理解群落结构和功能的关系。为了解三峡库区鱼类群落结构和功能多样性的空间格局,作者于2019年和2020年对三峡库区库首秭归、库中云阳、库尾巴南及库首支流香溪河下游峡口、库中支流小江下游高阳、库尾支流嘉陵江下游合川等江段的鱼类进行调查,分析了鱼类群落结构和多样性,从摄食、运动和繁殖3个方面探讨了鱼类功能多样性空间格局。在三峡库区及主要支流共采集到鱼类78种,隶属于6目15科56属。各江段以广适性和静水性鱼类为主,其中库首秭归和支流香溪河下游峡口、小江下游高阳江段的短颌鲚(Coilia brachygnathus)和贝氏?(Hemiculter bleekeri)等静水性鱼类相对丰度较高,库中云阳、库尾巴南和支流嘉陵江下游合川江段的蛇鮈(Saurogobio dabryi)和光泽黄颡鱼(Pelteobagrus nitidus)等广适性鱼类相对丰度较高。非度量多维尺度(non-metric multidimensional scale,NMDS)和Bray-Curtis相异性指数分析表明,秭归和嘉陵江下游合川江段群落结构差异最大,香溪河下游峡口和小江下游高阳江段群落最为相似。Margalef丰富度指数(D)、Shannon多样性指数(H’)和Pielou均匀度指数(E)在干流江段为:秭归<云阳<巴南,支流江段为:嘉陵下游合川<小江下游高阳<香溪河下游峡口。鱼类摄食、运动和繁殖相关的功能多样性在空间上的变化趋势较为一致,库首秭归江段的功能多样性最高,嘉陵江合川江段的功能多样性最低。总功能多样性和物种多样性变化趋势一致,在干流江段为:秭归<云阳<巴南,在支流江段为:嘉陵下游合川<小江下游高阳<香溪河下游峡口。研究结果可为三峡库区鱼类多样性保护和管理提供科学依据,为长江“十年禁渔”效果评估提供本底资料。 展开更多
关键词 三峡库区 鱼类 群落结构 功能多样性 空间格局
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