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复垦铅锌矿尾砂库的植被恢复和基质演变 被引量:7
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作者 蒋旭升 刘杰 +3 位作者 李海翔 吴福 朱真 李向敏 《环境工程》 CAS CSCD 北大核心 2021年第12期220-226,共7页
为探讨铅锌矿尾砂库经植物原位修复的生态恢复效果,以广西阳朔铅锌矿尾砂库综合治理示范工程为研究对象,连续3年(2018—2020)对实地观测植被恢复情况、新增植物生长情况及复垦铅锌矿库区尾砂重金属含量、土壤酶活性及理化性质的观测与... 为探讨铅锌矿尾砂库经植物原位修复的生态恢复效果,以广西阳朔铅锌矿尾砂库综合治理示范工程为研究对象,连续3年(2018—2020)对实地观测植被恢复情况、新增植物生长情况及复垦铅锌矿库区尾砂重金属含量、土壤酶活性及理化性质的观测与测定。结果表明:尾砂库经人工种植的芒(Miscanthus sinensis)和三裂叶葛藤(Pueraria phaseoloides)2种耐性植物对尾砂中重金属存在植物稳定作用;库区植被新增物种逐年升高,且以豆科和菊科植物为主;尾砂的过氧化氢酶、脲酶与磷酸酶活性先增后减,蔗糖酶活性显著性增加;尾砂的肥力和保肥能力均有所提高,其中尾砂的总氮含量从1.14 g/kg增加到2.19 g/kg,有机碳含量从9.50 g/kg增加到21.01 g/kg。由此表明,在相似自然条件的矿山废弃地生态修复中,可考虑从葛属和蒿属的植物中筛选目标植物;植被恢复会加快尾砂库库区植物群落的次生演替;铅锌矿尾砂库经人工植被恢复能加快尾砂基质的演变,使生态系统实现自行恢复并达到良性循环。 展开更多
关键词 尾砂库 植被恢复 基质演变 理化性 酶活
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Evolution of neurotransmitter gamma-aminobutyric acid, glutamate and their receptors 被引量:1
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作者 Zhiheng GOU Xiao WANG Wen WANG 《Zoological Research》 CAS CSCD 北大核心 2012年第6期I0013-I0019,共7页
Gamma-aminobutyric acid (GABA) and glutamate are two important amino acid neurotransmitters widely present in the nervous systems of mammals, insects, round worm, and platyhelminths, while their receptors are quite ... Gamma-aminobutyric acid (GABA) and glutamate are two important amino acid neurotransmitters widely present in the nervous systems of mammals, insects, round worm, and platyhelminths, while their receptors are quite diversified across different animal phyla. However, the evolutionary mechanisms between the two conserved neurotransmitters and their diversified receptors remain elusive, and antagonistic interactions between GABA and glutamate signal transduction systems, in particular, have began to attract significant attention. In this review, we summarize the extant results on the origin and evolution of GABA and glutamate, as well as their receptors, and analyze possible evolutionary processes and phylogenetic relationships of various GABAs and glutamate receptors. We further discuss the evolutionary history of Excitatory/Neutral Amino Acid Transporter (EAAT), a transport protein, which plays an important role in the GABA-glutamate "yin and yang" balanced regulation. Finally, based on current advances, we propose several potential directions of future research. 展开更多
关键词 Gamma-aminobutyric acid GLUTAMATE NEUROTRANSMITTER RECEPTOR EVOLUTION Yin and yang regulation
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