The underground network: facilitation in soil bacteria

IF 3.1 2区 环境科学与生态学 Q2 ECOLOGY
Oikos Pub Date : 2024-06-27 DOI:10.1111/oik.10299
Jesse Jorna, Byron J. Adams, Zachary T. Aanderud, Paul B. Frandsen, Cristina Takacs‐Vesbach, Sonia Kéfi
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引用次数: 0

Abstract

Our understanding of the fundamental role that soil bacteria play in the structure and functioning of Earth's ecosystems is ever expanding, but insight into the nature of interactions within these bacterial communities remains rudimentary. Bacterial facilitation may enhance the establishment, growth, and succession of eukaryotic biota, elevating the complexity and diversity of the entire soil community and thereby modulating multiple ecosystem functions. Global climate change often alters soil bacterial community composition, which, in turn, impacts other dependent biota. However, the impact of climate change on facilitation within bacterial communities remains poorly understood even though it may have important cascading consequences for entire ecosystems. The wealth of metagenomic data currently being generated gives community ecologists the ability to investigate bacterial facilitation in the natural world and how it affects ecological systems responses to climate change. Here, we review current evidence demonstrating the importance of facilitation in promoting emergent properties such as community diversity, ecosystem functioning, and resilience to climate change in soil bacterial communities. We show that a synthesis is currently missing between the abundant data, newly developed models and a coherent ecological framework that addresses these emergent properties. We highlight that including phylogenetic information, the physicochemical environment, and species‐specific ecologies can improve our ability to infer interactions in natural soil communities. Following these recommendations, studies on bacterial facilitation will be an important piece of the puzzle to understand the consequences of global change on ecological communities and a model to advance our understanding of facilitation in complex communities more generally.
地下网络:土壤细菌的促进作用
我们对土壤细菌在地球生态系统的结构和功能中所扮演的基本角色的认识正在不断扩大,但对这些细菌群落内部相互作用的本质的了解仍然很有限。细菌可促进真核生物群的建立、生长和演替,提高整个土壤群落的复杂性和多样性,从而调节生态系统的多种功能。全球气候变化通常会改变土壤细菌群落的组成,进而影响其他依赖性生物群落。然而,人们对气候变化对细菌群落内部促进作用的影响仍然知之甚少,尽管它可能对整个生态系统产生重要的连带影响。目前产生的大量元基因组数据使群落生态学家有能力研究自然界中的细菌促进作用,以及这种作用如何影响生态系统对气候变化的反应。在此,我们回顾了当前的证据,这些证据表明,在土壤细菌群落中,促进作用在促进群落多样性、生态系统功能和对气候变化的适应力等新兴特性方面的重要性。我们的研究表明,目前在大量数据、新开发的模型和解决这些新兴特性的连贯生态框架之间还缺少一个综合体。我们强调,将系统发育信息、物理化学环境和物种特异性生态学纳入其中,可以提高我们推断自然土壤群落中相互作用的能力。根据这些建议,对细菌促进作用的研究将成为了解全球变化对生态群落的影响的重要拼图,也将成为促进我们对复杂群落中促进作用的普遍认识的模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Oikos
Oikos 环境科学-生态学
CiteScore
6.20
自引率
5.90%
发文量
152
审稿时长
6-12 weeks
期刊介绍: Oikos publishes original and innovative research on all aspects of ecology, defined as organism-environment interactions at various spatiotemporal scales, so including macroecology and evolutionary ecology. Emphasis is on theoretical and empirical work aimed at generalization and synthesis across taxa, systems and ecological disciplines. Papers can contribute to new developments in ecology by reporting novel theory or critical empirical results, and "synthesis" can include developing new theory, tests of general hypotheses, or bringing together established or emerging areas of ecology. Confirming or extending the established literature, by for example showing results that are novel for a new taxon, or purely applied research, is given low priority.
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