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和雅静, 王洪铸, 舒凤月, 崔永德. 长江流域底栖动物资源的宏观格局[J]. 水生生物学报, 2019, 43(S1): 9-17. DOI: 10.7541/2019.162
引用本文: 和雅静, 王洪铸, 舒凤月, 崔永德. 长江流域底栖动物资源的宏观格局[J]. 水生生物学报, 2019, 43(S1): 9-17. DOI: 10.7541/2019.162
HE Ya-Jing, WANG Hong-Zhu, SHU Feng-Yue, CUI Yong-De. MACRO-PATTERNS OF SPECIES DIVERSITY AND STANDING CROPS OF MACROZOOBENTHOS IN THE YANGTZE RIVER BASIN[J]. ACTA HYDROBIOLOGICA SINICA, 2019, 43(S1): 9-17. DOI: 10.7541/2019.162
Citation: HE Ya-Jing, WANG Hong-Zhu, SHU Feng-Yue, CUI Yong-De. MACRO-PATTERNS OF SPECIES DIVERSITY AND STANDING CROPS OF MACROZOOBENTHOS IN THE YANGTZE RIVER BASIN[J]. ACTA HYDROBIOLOGICA SINICA, 2019, 43(S1): 9-17. DOI: 10.7541/2019.162

长江流域底栖动物资源的宏观格局

MACRO-PATTERNS OF SPECIES DIVERSITY AND STANDING CROPS OF MACROZOOBENTHOS IN THE YANGTZE RIVER BASIN

  • 摘要: 文章系统总结了长江流域底栖动物的宏观格局。该流域共记录底栖动物1033种属, 隶属于3门7纲162科513属, 其中包括环节动物121种属、软体动物318种、节肢动物594种属。多样性分布格局: (1)就区域而言, 环节动物和软体动物种属数在中游最多, 而节肢动物的在上游最多; (2)就水体类型而言, 环节动物和软体动物种属数在湖泊最多, 节肢动物的在支流最多; (3)就子流域水系而言, 底栖动物总种属数在中游干流水系最多, 在上游干流水系、金沙江水系、洞庭湖水系和鄱阳湖水系次之。长江流域底栖动物总密度平均值为672 ind./m2, 水生昆虫占优势; 总生物量平均值为34.22 g/m2, 软体动物占优势。现存量分布格局: (1)底栖动物总密度在中游最高, 总生物量在下游最高, 在上游均最低; (2)底栖动物总密度和总生物量在湖泊最高, 支流次之, 干流最低; (3)底栖动物总密度在下游的太湖水系最高, 总生物量则在鄱阳湖水系最高。研究显示, 上游干流水系、中游干流水系、金沙江水系、洞庭湖水系和鄱阳湖水系是底栖动物物种的重要分布区。应尽快综合长江水生生物的信息, 制定全面的长江流域水生生物系统保护规划, 并付诸实施。

     

    Abstract: We summarize macro-patterns of macrozoobenthos in the Yangtze River basin in this paper. A total of 1033 taxa (species/genus) belonging to 3 phyla, 7 classes, 162 families and 513 genera have been recorded from the Yangtze River Basin, including 121 annelids, 318 molluscs and 594 arthropods. In terms of taxa distributions, the species/genus number of annelids and of molluscs in the middle reaches were the highest, while that of arthropods in the upper reaches was the highest; the species/genus number of annelids and of molluscs in the lakes were the highest, while that of arthropods in the tributaries was the highest; the species/genus number of macrozoobenthos in the middle mainstem sub-basin ranked first, and that of the upper mainstem sub-basin, of the Jinshajinag sub-basin, of the Lake Dongting sub-basin and of the Lake Poyang sub-basin second. The total density of macrozoobenthos in the Yangtze River basin was 672 ind./m2, and insects were predominant; the total biomass was 34.22 g/m2, and molluscs were predominant. In terms of standing crops distribution, the total density of macrozoobenthos in the middle reaches was the highest, the total biomass in the lower reaches the highest, while the total standing crop in the upper reaches was the lowest; the total density and biomass of macrozoobenthos in the lakes ranked first, those in the tributaries second, and those in the mainstem last; the total density of macrozoobenthos in the Lake Taihu sub-basin was the highest, and the total biomass in the Lake Poyang sub-basin was the highest. Our study indicates that the upper and middle mainstem sub-basins, the Jinshajiang sub-basin, the Lake Dongting sub-basin and the Lake Poyang sub-basin are important distribution regions for macrozoobenthos. By integrating more information of aquatic organisms, we should make comprehensive and systematic conservation planing of the Yangtze River system and implement them as soon as possible.

     

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