长江口刀鲚群体形态差异研究
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刘若晖(1995–),女,硕士研究生,研究方向为水生生物生理生态.E-mail:lrhsunshine@163.com

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S931

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上海市科技兴农项目(2019-02-08-00-07-F01129); 国家重点研发计划项目(2019YFD0901202, 2019YFD0901205); 农业农村部农业资源环境情况调查项目(17210163).


Morphological variation among different populations of Coilia nasus in the Yangtze Estuary
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    摘要:

    为了研究长江口刀鲚(Coilia nasus)群体组成, 将采自长江口南支和北支、崇明内河、浙江嵊泗共 160 尾刀鲚进行传统形态学研究和框架模型的构建, 对获得的形态变量数据进行多元统计分析, 研究结果: (1) 长江口不同刀鲚群体间形态变异很小; (2) 组间差异主要为躯干横向和头长的差异, 躯干横向为差异的主要变异方向, 头长为次要的变异方向; (3) 北支群体的判别准确率最高(95%), 判别效果最好; (4) 聚类结果也呈现出类似的结果, 南支群体和内河群体聚为一组, 和嵊泗群体聚为一大支, 最后和北支群体聚类。研究结果表明, 长江口不同刀鲚群体间的躯干横向和头长的差异可能由摄食和栖息地利用差异造成。

    Abstract:

    The morphological variations among different populations of Coilia nasus, collected from the south branch (NZ) and north branch (BZ) of the Yangtze Estuary, Neihe of Chongming (NH) and Shengsi (SS) in Zhejiang Province, were assessed to determine the population compositions using traditional morphology and the truss network model. All morphological variable data were analyzed using multivariate statistical approaches, such as one-way analysis of variance (ANOVA), principal component analysis (PCA), discriminate function analysis (DFA), and cluster analysis (CA). ANOVA revealed significant differences in all morphological variables among the groups, except head length behind the eyes, tail length, the dorsal origin of the caudal fin-origin of the pelvic fin, termination of the anal fin-origin of the anal fin, the origin of the anal fin-origin of the pelvic fin, and end of operculum-end of operculum (P<0.05). Based on the coefficient of variation (CV), the morphological variation among different C. nasus populations in the Yangtze Estuary was very small. The differences among the groups were mainly due to differences in the lateral trunk and head length. The lateral trunk was the primary variation axis, while the head length was the secondary variation axis. The stepwise discriminant comprehensive rate was 80.60%, and the cross-validated comprehensive discriminant rate was 76.30%. The BZ group had the best discrimination accuracy rate (95%), indicating the best discriminant effect, while the NH group had the lowest discrimination accuracy. According to the CA results, the four populations can be divided into three groups: Group I, the NZ and NH populations; group II, the SS population; and group III, the BZ population. The results of CA were similar to those of DFA, indicating the homogeneity and heterogeneity of the population differences. The lateral trunk and head length were identified as the main differences among the different populations of C. nasus in the Yangtze Estuary, which may be caused by differences in diet and habitat use.

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刘若晖,宋超,杨刚,赵峰,张涛,耿智,冯广朋,胡丽娟,彭彪彪,庄平.长江口刀鲚群体形态差异研究[J].中国水产科学,2022,29(7):969-979
LIU Ruohui, SONG Chao, YANG Gang, ZHAO Feng, ZHANG Tao, GENG Zhi, FENG Guangpeng, HU Lijuan, PENG Biaobiao, ZHUANG Ping. Morphological variation among different populations of Coilia nasus in the Yangtze Estuary[J]. Journal of Fishery Sciences of China,2022,29(7):969-979

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  • 在线发布日期: 2022-08-01
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