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首页> 外文期刊>African Journal of Microbiology Research >Significance of Archaea in terrestrial biogeochemical cycles and global climate change
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Significance of Archaea in terrestrial biogeochemical cycles and global climate change

机译:古细菌在陆地生物地球化学循环和全球气候变化中的意义

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Our understanding of the role of archaea, and their significance, in the biosphere has changed substantially with recent advances in molecular techniques. Large numbers of environmental rRNA gene sequences currently flooding into GenBank illustrates that, archaea are ubiquitous and sometimes quantitatively abundant in the environment. Their importance in carbon (C) and nitrogen (N) turnover in marine ecosystems and their dominant role in ammonium oxidation in terrestrial environments has been acknowledged. Knowledge of archaea and the factors determining their metabolism has potential implications for our understanding of plant productivity, carbon sequestration, nitrogen leakage and greenhouse gas (GHG) production. To mitigate global change and rise in GHGs like methane (CH4), nitrous oxide (N2O) and carbon dioxide (CO2), a multidimensional approach is needed to understand the complex processes. Particularly, we need to understand how different microbial groups participate in the GHG cycling processes. The relationship between high diversity of archaea and functionality in the terrestrial ecosystem is far less understood. This review defined two fundamental aspects of the ecological significance of the archaea. First, it highlighted the role of archaea in biogeochemical cycles of major elements, such as carbon, nitrogen and sulfur. Second, it identified their significance in the GHG cycling processes and global climate change.
机译:随着分子技术的最新发展,我们对古细菌在生物圈中的作用及其重要性的理解已发生了巨大变化。目前大量涌入GenBank的环境rRNA基因序列表明,古细菌在环境中无处不在,有时在数量上也很丰富。人们已经认识到它们在海洋生态系统中碳(C)和氮(N)转换中的重要性,以及它们在陆地环境中铵氧化中的主导作用。了解古细菌及其决定其代谢的因素可能对我们对植物生产力,碳固存,氮泄漏和温室气体(GHG)产生的理解具有潜在的影响。为了缓解全球变化和甲烷(CH4),一氧化二氮(N2O)和二氧化碳(CO2)等温室气体的上升,需要采用多维方法来了解复杂的过程。特别是,我们需要了解不同的微生物群如何参与温室气体循环过程。陆地生态系统中古细菌的高度多样性与功能之间的关系还鲜为人知。这篇综述定义了古细菌的生态意义的两个基本方面。首先,它强调了古细菌在主要元素(如碳,氮和硫)的生物地球化学循环中的作用。其次,它确定了它们在温室气体循环过程和全球气候变化中的重要性。

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