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Multidimensional diversity of bird communities across spatial variation of land cover in Zoige on the eastern Qinghai-Tibetan Plateau
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作者 Aichun xu Maojun Zhong +7 位作者 Ke Tang Xiaoyi Wang Chen Yang haigen xu Jianfeng Yi Wei Liu Chunlan Zhang Junhua Hu 《Avian Research》 CSCD 2021年第2期150-160,共11页
Background:Spatial variation of land cover can result in the changes of community similarities and biotic homog-enization,whereby the increasing similarity would reduce the adaptive capacity of biotic assemblages to f... Background:Spatial variation of land cover can result in the changes of community similarities and biotic homog-enization,whereby the increasing similarity would reduce the adaptive capacity of biotic assemblages to further disturbance,and degenerate ecosystem services they offer.However,it remains scarce to integrate multidimensional diversity for unveiling how variations in land cover may influence the patterns and processes of biotic homogeniza-tion in the Anthropocene.In this study,we examined how spatial variation of land cover could alter taxonomic,phy-logenetic and functional homogenization of bird communities simultaneously in a compound ecosystem of Zoige Marsh on the eastern Qinghai-Tibetan Plateau.Acting as the largest alpine marsh and peatland in the world,Zoige Marsh has undergone great changes in the land cover pattern due to climate change and anthropogenic activities.Methods:We conducted transect surveys for bird communities over six years(2014‒2019)during breeding sea-sons in four main land cover types(meadow,woodland,village and marsh),representing the spatial variation of land covers in the study area.We compared multidimensional diversity(taxonomic,phylogenetic and functional diver-sity)among land covers to assess the effects of spatial variation in land cover type on bird communities,particularly whether this variation has homogenized biotic communities.Results:Bird communities during breeding seasons were different and complementary in the four land covers.Taxonomic,phylogenetic and functional similarities were significantly lower in meadow than in the other three types,i.e.woodland,village and marsh.However,when we controlled for the effects of taxonomic similarities,the pattern of phylogenetic similarities almost reversed,with the highest standardized effect size(SES)phylogenetic similarity in meadow;and we found no significant difference in SES functional similarity among land covers.Conclusions:Our results suggest that spatial variation of land cover can play a crucial role in regulating multiple dimensions of bird diversity in Zoige Marsh.The findings indicate that taxonomic,phylogenetic and functional homogenization of bird communities may differently response to the variation of land covers.It thus highlights not only the relative roles of different land covers in maintaining biodiversity and community structures of birds,but also the urgency of retarding ecosystem degradations on the eastern Qinghai-Tibetan Plateau. 展开更多
关键词 Bird conservation Biotic homogenization Functional similarity Land cover types Phylogenetic similarity
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扬州宝应湖底栖大型无脊椎动物的生物多样性及其变化 被引量:7
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作者 胡芮 王儒晓 +5 位作者 杜诗雨 李萌 邢雨辉 潘达 徐海根 孙红英 《生物多样性》 CAS CSCD 北大核心 2020年第12期1558-1569,共12页
底栖大型无脊椎动物作为水环境监测的重要指示生物,其群落结构和多样性能够有效地反映水环境的健康状况。为了更好地了解扬州宝应湖大型底栖动物的群落多样性,本文于2015–2019年对扬州宝应湖底栖大型无脊椎动物进行野外调查和采样,联... 底栖大型无脊椎动物作为水环境监测的重要指示生物,其群落结构和多样性能够有效地反映水环境的健康状况。为了更好地了解扬州宝应湖大型底栖动物的群落多样性,本文于2015–2019年对扬州宝应湖底栖大型无脊椎动物进行野外调查和采样,联合经典形态学和高通量测定DNA条形码方法进行物种鉴定,进一步分析了这些大型无脊椎动物群落结构和多样性的年度变化,并应用Shannon-Wiener指数(H′)和污染生物指数(bioticindex,BI)对水质状况进行生物评价。结果显示:共记录大型底栖动物3门5纲57种,其中软体动物门23种,隶属2纲9科(腹足纲7科15种,双壳纲2科8种);环节动物门寡毛纲12种,隶属2科;节肢动物门22种,隶属2纲6科(软甲纲4科5种,昆虫纲2科17种)。腹足纲是优势类群,5年间的密度占比均在65%以上。优势种是赤豆螺(Bithynia fuchsiana)、槲豆螺(B.misella)和长角涵螺(Alocinma longicornis)。Margalef丰富度指数(2.27±0.28)、Simpson优势度指数(0.82±0.02)和Pielou均匀度指数(0.78±0.08)在5年间呈现明显的波动变化。对水质状况的生物评价结果表明,湖区水体环境在5年间均呈现不同程度的污染状态,这与过度围湖水产养殖等经济活动引起水体富营养化有一定关系。 展开更多
关键词 扬州 宝应湖 底栖大型无脊椎动物 DNA条形码 生物多样性 群落结构 水质生物学评价
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环境DNA技术在淡水底栖大型无脊椎动物多样性监测中的应用 被引量:20
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作者 李萌 尉婷婷 +3 位作者 史博洋 郝希阳 徐海根 孙红英 《生物多样性》 CAS CSCD 北大核心 2019年第5期480-490,共11页
环境DNA(eDNA)是指生物有机体在环境中(例如土壤、沉积物或水体)遗留下的DNA片段。eDNA技术是指从环境中提取DNA片段进行测序以及数据分析来反映环境中的物种或群落信息。与传统方法相比, eDNA技术具有高灵敏度、省时省力、无损伤等优... 环境DNA(eDNA)是指生物有机体在环境中(例如土壤、沉积物或水体)遗留下的DNA片段。eDNA技术是指从环境中提取DNA片段进行测序以及数据分析来反映环境中的物种或群落信息。与传统方法相比, eDNA技术具有高灵敏度、省时省力、无损伤等优点。目前, eDNA技术已成为一种新的水生生物监测方法,主要应用于水生生物的多样性研究、濒危和稀有动物的物种状态及外来入侵动物扩散动态的监测等。本文从eDNA技术在水生生物多样性监测应用领域的发展历程、eDNA技术的操作流程以及其在监测淡水底栖大型无脊椎动物方面的应用进展、技术优势和局限性五个方面进行了综述。最后,本文对eDNA技术在淡水底栖大型无脊椎动物多样性监测应用的发展趋势和前景作出展望。 展开更多
关键词 宏条形码 第二代测序技术 外来入侵物种 淡水生态系统 细胞色素c氧化酶亚基Ⅰ(COⅠ)
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China Biodiversity Observation Network for better global sustainability developments
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作者 Jianfeng Yi Fangzhou Ma +7 位作者 Jiaqi Li Wei Liu Yun Cao Yaqiong Wan Chenbin Wang Mengmeng Chen Dandan Yu haigen xu 《Eco-Environment & Health》 2022年第4期201-203,共3页
Biodiversity is undergoing unprecedented changes characterized by long-term,complex,and lagging consequences[1].Understanding the dynamic changes of biodiversity is essential for the conservation of biodiversity[2].Bi... Biodiversity is undergoing unprecedented changes characterized by long-term,complex,and lagging consequences[1].Understanding the dynamic changes of biodiversity is essential for the conservation of biodiversity[2].Biodiversity monitoring is periodic measurements of biodiversity within a given area,such as data collection regarding the structure and function of ecosystems,the composition and distribution of species,and environmental factors.Based on the collected data,analyses could be performed to determine the trends of biodiversity change and potential drivers and assist in the evaluation of conservation effectiveness and decision-making[2,3]. 展开更多
关键词 BIODIVERSITY BIODIVERSITY ECOSYSTEMS
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