The Spatiotemporal Variation and Ecological Evaluation of Macroinvertebrate Functional Feeding Groups in the Upper Yellow River.

IF 3.6 3区 生物学 Q1 BIOLOGY
Peilun Li, Shuhan Xiong, Jiacheng Liu, Tai Wang, Yanbin Liu, Kai Liu, Yongjie Wang, Jilong Wang
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引用次数: 0

Abstract

Against the backdrop of hydropower development in the upper Yellow River, comprehending the spatiotemporal variation and ecological evaluation of macroinvertebrate functional feeding groups (FFGs) is paramount for the conservation and restoration of aquatic biological resources in watersheds. Detailed surveys of macroinvertebrates were conducted in the gorge and plain areas of the upper Yellow River in July 2022 and March, May, and October 2023, culminating in the identification of 65 taxonomic units (genus or species) spanning 4 phyla, 14 orders, and 35 families. Of these, 41 taxonomic units were discovered in the gorge areas and 57 in the plain areas. Among the FFGs of macroinvertebrates in the upper Yellow River, collector-gatherers were overwhelmingly dominant, followed by scrapers, collector-filterers, predators, and shredders. Concerning river section types, dominant species in the gorge areas included Gammarus sp., Limnodrilus hoffmeisteri, and Polypedilum sp. among collector-gatherers, while in the plain areas, dominant species included Ecdyonurus sp. among scrapers, Hydropsyche sp. among collector-filterers, and Gammarus sp., Limnodrilus hoffmeisteri, and Chironomus sp. among collector-gatherers. A Mantel test revealed that dissolved oxygen, conductivity, and orthophosphate were the primary environmental factors affecting the FFGs of macroinvertebrates in the upper Yellow River, with variations observed in their effects across different months. The evaluation results of the Hilsenhoff Biological Index and Shannon-Wiener Index indicate that the water quality of the upper Yellow River is at a moderate level. An assessment of the upper Yellow River ecosystem using FFG parameters demonstrated that macroinvertebrate biomass progressively increased from upstream (gorge areas) to downstream (plain areas) spatially, accompanied by increasing habitat stability, with cascade hydropower development identified as a key factor impacting habitat stability. These findings provide pertinent data and a theoretical foundation for the protection of aquatic biological resources and watershed management in the upper Yellow River.

黄河上游大型无脊椎动物功能取食群的时空变异与生态学评价
在黄河上游水电开发的背景下,了解大型无脊椎动物功能饲养群(FFGs)的时空变化和生态学评价对流域水生生物资源的保护和恢复至关重要。2022 年 7 月、2023 年 3 月、5 月和 10 月,对黄河上游峡谷和平原地区的大型无脊椎动物进行了详细调查,最终确定了 65 个分类单元(属或种),涵盖 4 个门、14 个纲和 35 个科。其中,在峡谷地区发现了 41 个分类单元,在平原地区发现了 57 个分类单元。在黄河上游大型无脊椎动物的 FFGs 中,采集者占绝对优势,其次是刮食者、采集-滤食者、捕食者和碎食者。就河段类型而言,峡谷地区的优势种包括采集-拾集类中的Gammarus sp.、Limnodrilus hoffmeisteri和Polypedilum sp.,而平原地区的优势种包括刮食类中的Ecdyonurus sp.、采集-滤食类中的Hydropsyche sp.和采集-拾集类中的Gammarus sp.、Limnodrilus hoffmeisteri和Chironomus sp.。Mantel检验结果表明,溶解氧、电导率和正磷酸盐是影响黄河上游大型无脊椎动物FFGs的主要环境因子,这些因子在不同月份的影响存在差异。Hilsenhoff 生物指数和 Shannon-Wiener 指数的评估结果表明,黄河上游水质处于中等水平。使用 FFG 参数对黄河上游生态系统进行的评估表明,大型无脊椎动物的生物量从上游(峡谷地区)到下游(平原地区)在空间上逐渐增加,同时栖息地的稳定性也在增加,梯级水电开发被认为是影响栖息地稳定性的关键因素。这些发现为黄河上游水生生物资源保护和流域管理提供了相关数据和理论基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biology-Basel
Biology-Basel Biological Science-Biological Science
CiteScore
5.70
自引率
4.80%
发文量
1618
审稿时长
11 weeks
期刊介绍: Biology (ISSN 2079-7737) is an international, peer-reviewed, quick-refereeing open access journal of Biological Science published by MDPI online. It publishes reviews, research papers and communications in all areas of biology and at the interface of related disciplines. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Electronic files regarding the full details of the experimental procedure, if unable to be published in a normal way, can be deposited as supplementary material.
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