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土壤-植物连续体中的硅:生态系统内复杂的反馈机制。

Silicon in the Soil-Plant Continuum: Intricate Feedback Mechanisms within Ecosystems.

作者信息

Katz Ofir, Puppe Daniel, Kaczorek Danuta, Prakash Nagabovanalli B, Schaller Jörg

机构信息

Dead Sea and Arava Science Center, Mt. Masada, Tamar Regional Council, 86910 Tamar, Israel.

Eilat Campus, Ben-Gurion University of the Negev, Hatmarim Blv, 8855630 Eilat, Israel.

出版信息

Plants (Basel). 2021 Mar 30;10(4):652. doi: 10.3390/plants10040652.

Abstract

Plants' ability to take up silicon from the soil, accumulate it within their tissues and then reincorporate it into the soil through litter creates an intricate network of feedback mechanisms in ecosystems. Here, we provide a concise review of silicon's roles in soil chemistry and physics and in plant physiology and ecology, focusing on the processes that form these feedback mechanisms. Through this review and analysis, we demonstrate how this feedback network drives ecosystem processes and affects ecosystem functioning. Consequently, we show that Si uptake and accumulation by plants is involved in several ecosystem services like soil appropriation, biomass supply, and carbon sequestration. Considering the demand for food of an increasing global population and the challenges of climate change, a detailed understanding of the underlying processes of these ecosystem services is of prime importance. Silicon and its role in ecosystem functioning and services thus should be the main focus of future research.

摘要

植物从土壤中吸收硅、在组织内积累硅并随后通过凋落物将其重新融入土壤的能力,在生态系统中创造了一个复杂的反馈机制网络。在此,我们简要综述硅在土壤化学与物理学以及植物生理学与生态学中的作用,重点关注形成这些反馈机制的过程。通过此次综述与分析,我们展示了这个反馈网络如何驱动生态系统过程并影响生态系统功能。因此,我们表明植物对硅的吸收和积累涉及土壤改良、生物量供应和碳固存等多种生态系统服务。鉴于全球人口增长对食物的需求以及气候变化带来的挑战,详细了解这些生态系统服务的潜在过程至关重要。硅及其在生态系统功能和服务中的作用因此应成为未来研究的主要重点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9771/8066056/d75db65dd8b9/plants-10-00652-g001.jpg

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