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湿地土壤氧化还原及其对植物功能的影响。

Soil oxidation-reduction in wetlands and its impact on plant functioning.

机构信息

Department of Biological Sciences, University of Memphis, Memphis, TN 38152, USA.

Department of Oceanography of Coastal Sciences, School of Coast & Environment, Louisiana State University, Baton Rouge, LA 70803, USA.

出版信息

Biology (Basel). 2012 Jul 26;1(2):196-221. doi: 10.3390/biology1020196.

Abstract

Soil flooding in wetlands is accompanied by changes in soil physical and chemical characteristics. These changes include the lowering of soil redox potential (Eh) leading to increasing demand for oxygen within the soil profile as well as production of soil phytotoxins that are by-products of soil reduction and thus, imposing potentially severe stress on plant roots. Various methods are utilized for quantifying plant responses to reducing soil conditions that include measurement of radial oxygen transport, plant enzymatic responses, and assessment of anatomical/morphological changes. However, the chemical properties and reducing nature of soil environment in which plant roots are grown, including oxygen demand, and other associated processes that occur in wetland soils, pose a challenge to evaluation and comparison of plant responses that are reported in the literature. This review emphasizes soil-plant interactions in wetlands, drawing attention to the importance of quantifying the intensity and capacity of soil reduction for proper evaluation of wetland plant responses, particularly at the process and whole-plant levels. Furthermore, while root oxygen-deficiency may partially account for plant stress responses, the importance of soil phytotoxins, produced as by-products of low soil Eh conditions, is discussed and the need for development of methods to allow differentiation of plant responses to reduced or anaerobic soil conditions vs. soil phytotoxins is emphasized.

摘要

湿地土壤淹水伴随着土壤物理和化学特性的变化。这些变化包括土壤氧化还原电位(Eh)的降低,导致土壤剖面中对氧气的需求增加,以及土壤中产生植物毒素,这些毒素是土壤还原的副产物,因此,对植物根系造成潜在的严重压力。有多种方法可用于量化植物对还原土壤条件的反应,包括测量径向氧气传输、植物酶反应以及评估解剖/形态变化。然而,植物根系生长的土壤环境的化学性质和还原性,包括氧气需求以及湿地土壤中发生的其他相关过程,对评估和比较文献中报道的植物反应构成了挑战。本综述强调了湿地中的土壤-植物相互作用,提请注意量化土壤还原的强度和容量对于正确评估湿地植物反应的重要性,特别是在过程和整株植物水平上。此外,虽然根缺氧可能部分解释了植物胁迫反应,但讨论了土壤植物毒素的重要性,这些毒素是低土壤 Eh 条件的副产物,并强调需要开发方法来区分植物对还原或厌氧土壤条件与土壤植物毒素的反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b2b/4009779/97133f9120cc/biology-01-00196-g001.jpg

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