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从转基因植物根系中异源植酸酶的细胞外释放:根系生化特性的操纵是否会影响微生物群落结构?

Extracellular release of a heterologous phytase from roots of transgenic plants: does manipulation of rhizosphere biochemistry impact microbial community structure?

机构信息

SCRI, Invergowrie, Dundee, UK.

出版信息

FEMS Microbiol Ecol. 2009 Dec;70(3):433-45. doi: 10.1111/j.1574-6941.2009.00762.x. Epub 2009 Aug 12.

Abstract

To maintain the sustainability of agriculture, it is imperative that the reliance of crops on inorganic phosphorus (P) fertilizers is reduced. One approach is to improve the ability of crop plants to acquire P from organic sources. Transgenic plants that produce microbial phytases have been suggested as a possible means to achieve this goal. However, neither the impact of heterologous expression of phytase on the ecology of microorganisms in the rhizosphere nor the impact of rhizosphere microorganisms on the efficacy of phytases in the rhizosphere of transgenic plants has been tested. In this paper, we demonstrate that the presence of rhizosphere microorganisms reduced the dependence of plants on extracellular secretion of phytase from roots when grown in a P-deficient soil. Despite this, the expression of phytase in transgenic plants had little or no impact on the microbial community structure as compared with control plant lines, whereas soil treatments, such as the addition of inorganic P, had large effects. The results demonstrate that soil microorganisms are explicitly involved in the availability of P to plants and that the microbial community in the rhizosphere appears to be resistant to the impacts of single-gene changes in plants designed to alter rhizosphere biochemistry and nutrient cycling.

摘要

为了维持农业的可持续性,必须减少作物对无机磷(P)肥料的依赖。一种方法是提高作物从有机来源获取 P 的能力。已经有人提出,生产微生物植酸酶的转基因植物可能是实现这一目标的一种手段。然而,植酸酶的异源表达对根际微生物生态学的影响,以及根际微生物对转基因植物根际植酸酶功效的影响,都尚未得到检验。在本文中,我们证明了在 P 缺乏的土壤中,根际微生物的存在减少了植物对根系分泌植酸酶的依赖。尽管如此,与对照植物系相比,植酸酶在转基因植物中的表达对微生物群落结构几乎没有影响,而土壤处理,如添加无机 P,却有很大的影响。研究结果表明,土壤微生物明确参与了植物对 P 的利用,而根际的微生物群落似乎对旨在改变根际生物化学和养分循环的植物单基因变化的影响具有抵抗力。

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