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植物中的锌

Zinc in plants.

作者信息

Broadley Martin R, White Philip J, Hammond John P, Zelko Ivan, Lux Alexander

机构信息

Plant Sciences Division, School of Biosciences, University of Nottingham, Sutton Bonington Campus, Loughborough LE12 5RD, UK.

The Scottish Crop Research Institute, Invergowrie, Dundee DD2 5DA, UK.

出版信息

New Phytol. 2007;173(4):677-702. doi: 10.1111/j.1469-8137.2007.01996.x.

Abstract

Zinc (Zn) is an essential component of thousands of proteins in plants, although it is toxic in excess. In this review, the dominant fluxes of Zn in the soil-root-shoot continuum are described, including Zn inputs to soils, the plant availability of soluble Zn(2+) at the root surface, and plant uptake and accumulation of Zn. Knowledge of these fluxes can inform agronomic and genetic strategies to address the widespread problem of Zn-limited crop growth. Substantial within-species genetic variation in Zn composition is being used to alleviate human dietary Zn deficiencies through biofortification. Intriguingly, a meta-analysis of data from an extensive literature survey indicates that a small proportion of the genetic variation in shoot Zn concentration can be attributed to evolutionary processes whose effects manifest above the family level. Remarkable insights into the evolutionary potential of plants to respond to elevated soil Zn have recently been made through detailed anatomical, physiological, chemical, genetic and molecular characterizations of the brassicaceous Zn hyperaccumulators Thlaspi caerulescens and Arabidopsis halleri.

摘要

锌(Zn)是植物中数千种蛋白质的必需成分,不过过量时具有毒性。在本综述中,描述了锌在土壤-根系-地上部连续体中的主要通量,包括锌进入土壤的情况、根表面可溶性锌离子(Zn²⁺)对植物的有效性,以及植物对锌的吸收和积累。了解这些通量可为解决锌限制作物生长这一普遍问题的农艺和遗传策略提供依据。锌组成在物种内存在显著的遗传变异,正被用于通过生物强化来缓解人类膳食锌缺乏问题。有趣的是,一项对大量文献调查数据的荟萃分析表明,地上部锌浓度的一小部分遗传变异可归因于进化过程,其影响在科级以上显现。最近,通过对十字花科锌超积累植物天蓝遏蓝菜和拟南芥的详细解剖学、生理学、化学、遗传学和分子特征分析,对植物响应土壤锌含量升高的进化潜力有了显著的认识。

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