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A bacteria-based index of biotic integrity indicates aquatic ecosystem restoration
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作者 Qi Liu senlu yin Yujun Yi 《Environmental Science and Ecotechnology》 SCIE 2024年第6期178-190,共13页
Intensive ecological interventions have been carried out in highly polluted shallow lakes to improve their environments and restore their ecosystems.However,certain treatments,such as dredging polluted sediment and st... Intensive ecological interventions have been carried out in highly polluted shallow lakes to improve their environments and restore their ecosystems.However,certain treatments,such as dredging polluted sediment and stocking fish,can impact the aquatic communities,including benthos and fishes.These impacts can alter the composition and characteristics of aquatic communities,which makes community-based ecological assessments challenging.Here we develop a bacteria-based index of biotic integrity(IBI)that can clearly indicate the restoration of aquatic ecosystems with minimal artificial interventions.We applied this method to a restored shallow lake during 3-year intensive ecological interventions.The interventions reduced nutrients and heavy metals by 27.1%and 16.7%in the sediment,while the total organic carbon(TOC)increased by 8.0%due to the proliferation of macrophytes.Additionally,the abundance of sulfur-related metabolic pathways decreased by 10.5%as the responses to improved ecosystem.The score of bacteria-based IBI,which is calculated based on the diversity,composition,and function of benthic bacterial communities,increased from 0.62 in 2018 to 0.81 in 2021.Our study not only provides an applicable method for aquatic ecological assessment under intensive artificial interventions but also extends the application of IBI to complex application scenarios,such as ecosystems with significantly different aquatic communities and comparisons between different basins. 展开更多
关键词 Baiyangdian lake 16S rRNA Benthic bacterial community Ecological restoration Aquatic ecological assessment
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南洞庭湖区软体动物物种多样性评估及保护对策 被引量:3
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作者 刘振元 孟星亮 +4 位作者 李正飞 张君倩 徐靖 银森录 谢志才 《生物多样性》 CAS CSCD 北大核心 2020年第2期155-165,共11页
洞庭湖孕育和维持了较高和独特的软体动物多样性。尽管有关该湖软体动物的调查较多,但多分散于各文献中。本文结合文献调研和现场调查(2013–2018年),系统评估了南洞庭湖区软体动物物种多样性,解析驱动群落格局演变的关键因子,并提出合... 洞庭湖孕育和维持了较高和独特的软体动物多样性。尽管有关该湖软体动物的调查较多,但多分散于各文献中。本文结合文献调研和现场调查(2013–2018年),系统评估了南洞庭湖区软体动物物种多样性,解析驱动群落格局演变的关键因子,并提出合理的保护对策。共记录2纲5目14科33属87种(腹足纲41种,双壳纲46种),其中本调查记录54种,隶属于2纲5目12科31属,包括腹足纲22种,双壳纲32种。评估结果显示处于近危和受威胁等级物种21种,包括腹足纲4种和双壳纲17种。调查区域软体动物平均密度和生物量分别为173.1 ind./m2和279.3 g/m2。优势种为河蚬(Corbicula fluminea)、大沼螺(Parafossarulus eximius)、铜锈环棱螺(Bellamya aeruginosa)、卵河螺(Rivularia ovum)。基于距离的冗余分析(distance-based redundancy analysis, dbRDA)结果显示,局域环境因子(底质类型、水深、pH、总溶解固体和总磷)制约软体动物的群落变异。另外,区域内的人类活动(如商业采砂、建坝和沿岸土地利用、过度捕捞和非法电捕等)亦深刻影响软体动物的生存。这些人类干扰已导致软体动物物种多样性显著下降,可能造成一些特有物种的局域性灭绝。为了恢复和保护软体动物物种多样性和资源,应采取一系列对策,包括管控合法的挖沙业和取缔非法挖沙业、禁止过度捕捞和非法电捕、维持水文的自然节律、恢复沿岸自然湖滨带和控制点源和面源污染物排入等。我们呼吁尽快在南洞庭湖区建立软体动物国家级自然保护区,以保护该湖区(可能是整个洞庭湖)残存的软体动物物种多样性和特有性。 展开更多
关键词 软体动物 南洞庭湖区 物种多样性评估 保护对策
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