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来自贫瘠土壤的豆科植物根瘤在可变磷供应期间表现出细胞磷循环和保存的高可塑性。

Legume nodules from nutrient-poor soils exhibit high plasticity of cellular phosphorus recycling and conservation during variable phosphorus supply.

作者信息

Vardien Waafeka, Steenkamp Emma T, Valentine Alexander J

机构信息

Department of Botany and Zoology, Stellenbosch University, Private Bag X1, Matieland 7602, South Africa.

Department of Microbiology and Plant Pathology, Forestry and Agricultural Biotechnology Institute (FABI), University of Pretoria, Pretoria 0002, South Africa.

出版信息

J Plant Physiol. 2016 Feb 1;191:73-81. doi: 10.1016/j.jplph.2015.12.002. Epub 2015 Dec 9.

Abstract

Nitrogen fixing legumes rely on phosphorus for nodule formation, nodule function and the energy costs of fixation. Phosphorus is however very limited in soils, especially in ancient sandstone-derived soils such as those in the Cape Floristic Region of South Africa. Plants growing in such areas have evolved the ability to tolerate phosphorus stress by eliciting an array of physiological and biochemical responses. In this study we investigated the effects of phosphorus limitation on N2 fixation and phosphorus recycling in the nodules of Virgilia divaricata (Adamson), a legume native to the Cape Floristic Region. In particular, we focused on nutrient acquisition efficiencies, phosphorus fractions and the exudation and accumulation of phosphatases. Our finding indicate that during low phosphorus supply, V. divaricata internally recycles phosphorus and has a lower uptake rate of phosphorus, as well as lower levels adenylates but greater levels of phosphohydrolase exudation suggesting it engages in recycling internal nodule phosphorus pools and making use of alternate bypass routes in order to conserve phosphorus.

摘要

固氮豆科植物的根瘤形成、根瘤功能以及固氮的能量消耗都依赖于磷。然而,土壤中的磷非常有限,尤其是在古老的砂岩衍生土壤中,比如南非开普植物区的土壤。生长在这些地区的植物通过引发一系列生理和生化反应,进化出了耐受磷胁迫的能力。在本研究中,我们调查了磷限制对南非山龙眼科银桦属的一种豆科植物——折扇叶维吉尼亚(亚当森)根瘤中固氮和磷循环的影响。具体而言,我们重点研究了养分获取效率、磷组分以及磷酸酶的分泌和积累。我们的研究结果表明,在低磷供应期间,折扇叶维吉尼亚在体内循环利用磷,其磷吸收速率较低,腺苷酸水平也较低,但磷酸水解酶的分泌水平较高,这表明它通过循环利用根瘤内部的磷库并利用其他旁路途径来节约磷。

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