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The Bryosphere: An Integral and Influential Component of the Earth's Biosphere

机译:苔藓层:地球生物圈中不可或缺的组成部分

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A significant fraction of the Earth's land surface is dominated by bryophytes. Research on carbon and nitrogen budgets of tundra, boreal, and peatland ecosystems has demonstrated the important role of mosses in understanding global change. Bryophytes are also habitat to a highly diverse microbiota that plays a key role in the function of these ecosystems. Here we define the term bryosphere to emphasize the combined role of mosses and their associated organisms in the functioning of ecosystems from local to global scales. In this minireview, we emphasize the value of the bryosphere as a spatially bounded, whole ecosystem that integrates aboveground and belowground processes, and we highlight the potential of the bryosphere as a natural model system (NMS) to assist in the study of environmental change on biodiversity and ecosystem functioning. We propose a formal definition of the bryosphere, attempt to summarize the current state of knowledge of the bryosphere, and discuss how the bryosphere can be a complex yet tractable system under an NMS framework. Recent use of the bryosphere as an NMS has shown how alterations in food web structure can affect ecosystem function in a manner that, although predicted by theory, has remained largely untested by experiment. An understanding of the biodiversity, ecosystem functioning, and adaptation of the bryosphere can be advanced by manipulative experiments coupled with a blend of techniques in molecular, physiological, community, and ecosystem ecology. Although studies described herein have demonstrated the utility of the bryosphere NMS for addressing ecological theory, the bryosphere is an underutilized system with exceptional promise.
机译:苔藓植物占地球陆地表面的很大一部分。对冻原,寒带和泥炭地生态系统的碳和氮预算进行的研究表明,苔藓在理解全球变化方面具有重要作用。苔藓植物也栖息在高度多样化的微生物群落中,这些微生物群在这些生态系统的功能中起着关键作用。在这里,我们定义了苔藓小球一词,以强调苔藓及其相关生物在从地方到全球范围的生态系统功能中的综合作用。在本小型复习中,我们强调了苔藓层作为一个具有空间限制的,整合了地上和地下过程的整体生态系统的价值,并且强调了苔藓层作为一种自然模型系统(NMS)的潜力,可帮助研究环境变化。生物多样性和生态系统功能。我们提出了一个关于bryosphere的正式定义,试图总结目前对bryosphere的了解,并讨论在NMS框架下如何将bryosphere变成一个复杂而易处理的系统。苔藓圈作为NMS的最新用途表明,食物网结构的变化如何以某种方式影响生态系统功能,尽管从理论上可以预测,但在很大程度上仍未通过实验进行测试。通过操纵性实验以及分子,生理,群落和生态系统生态学中的各种技术的结合,可以增进对生物多样性,生态系统功能和苔藓圈适应的了解。尽管本文描述的研究已经证明了苔藓层NMS在解决生态学理论方面的实用性,但苔藓层是利用不足的系统,具有特殊的前景。

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