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与磷有效性和获取相关的根系性状与微生物群落相互作用,特别提及甘蓝型油菜。

Root traits and microbial community interactions in relation to phosphorus availability and acquisition, with particular reference to Brassica.

作者信息

Hunter Paul J, Teakle Grahams R, Bending Gary D

机构信息

School of Life Sciences, University of Warwick Coventry, UK.

Warwick Crop Centre, University of Warwick Wellesbourne, UK.

出版信息

Front Plant Sci. 2014 Feb 11;5:27. doi: 10.3389/fpls.2014.00027. eCollection 2014.

Abstract

Brassicas are among the most widely grown and important crops worldwide. Phosphorus (P) is a key mineral element in the growth of all plants and is largely supplied as inorganic rock-phosphate, a dwindling resource, which is likely to be an increasingly significant factor in global agriculture. In order to develop crops which can abstract P from the soil, utilize it more efficiently, require less of it or obtain more from other sources such as soil organic P reservoirs, a detailed understanding the factors that influence P metabolism and cycling in plants and associated soil is required. This review focuses on the current state of understanding of root traits, rhizodeposition and rhizosphere community interaction as it applies to P solubilization and acquisition, with particular reference to Brassica species. Physical root characteristics, exudation of organic acids (particularly malate and citrate) and phosphatase enzymes are considered and the potential mechanisms of control of these responses to P deficiency examined. The influence of rhizodeposits on the development of the rhizosphere microbial community is discussed and the specific features of this community in response to P deficiency are considered; specifically production of phosphatases, phytases and phosphonate hydrolases. Finally various potential approaches for improving overall P use efficiency in Brassica production are discussed.

摘要

十字花科植物是世界上种植最广泛且最重要的作物之一。磷(P)是所有植物生长中的关键矿质元素,主要以无机磷矿石的形式供应,而无机磷矿石是一种日益减少的资源,这可能成为全球农业中一个越来越重要的因素。为了培育能够从土壤中吸收磷、更高效利用磷、需磷量更少或能从其他来源(如土壤有机磷库)获取更多磷的作物,需要详细了解影响植物及相关土壤中磷代谢和循环的因素。本综述重点关注根系性状、根际沉积和根际群落相互作用在磷溶解和获取方面的研究现状,尤其以十字花科植物为参考。考虑了根系的物理特性、有机酸(特别是苹果酸和柠檬酸)和磷酸酶的分泌,并研究了这些对磷缺乏反应的潜在调控机制。讨论了根际沉积物对根际微生物群落发育的影响,并考虑了该群落对磷缺乏的特定反应;特别是磷酸酶、植酸酶和膦酸酯水解酶的产生。最后讨论了提高十字花科作物生产中整体磷利用效率的各种潜在方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c311/3920115/320151b4758e/fpls-05-00027-g001.jpg

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