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拟南芥的自然变异揭示了地上离子组、生物量和基因表达变化作为锌缺乏耐受性生物标志物的情况。

Natural variation in Arabidopsis thaliana reveals shoot ionome, biomass, and gene expression changes as biomarkers for zinc deficiency tolerance.

作者信息

Campos Ana Carolina A L, Kruijer Willem, Alexander Ross, Akkers Robert C, Danku John, Salt David E, Aarts Mark G M

机构信息

Laboratory of Genetics, Wageningen University, Droevendaalsesteeg 1, 6708 PB Wageningen, The Netherlands.

Institute of Biological and Environmental Sciences, University of Aberdeen, Cruickshank Building, Aberdeen AB24 3UU, UK.

出版信息

J Exp Bot. 2017 Jun 15;68(13):3643-3656. doi: 10.1093/jxb/erx191.

Abstract

Zinc (Zn) is an essential nutrient for plants, with a crucial role as a cofactor for many enzymes. Approximately one-third of the global arable land area is Zn deficient, leading to reduced crop yield and quality. To improve crop tolerance to Zn deficiency, it is important to understand the mechanisms plants have adopted to tolerate suboptimal Zn supply. In this study, physiological and molecular aspects of traits related to Zn deficiency tolerance were examined in a panel of 19 Arabidopsis thaliana accessions. Accessions showed a larger variation for shoot biomass than for Zn concentration, indicating that they have different requirements for their minimal Zn concentration required for growth. Accessions with a higher tolerance to Zn deficiency showed an increased expression of the Zn deficiency-responsive genes ZIP4 and IRT3 in comparison with Zn deficiency-sensitive accessions. Changes in the shoot ionome, as a result of the Zn treatment of the plants, were used to build a multinomial logistic regression model able to distinguish plants regarding their Zn nutritional status. This set of biomarkers, reflecting the A. thaliana response to Zn deficiency and Zn deficiency tolerance, can be useful for future studies aiming to improve the performance and Zn status of crop plants grown under suboptimal Zn concentrations.

摘要

锌(Zn)是植物必需的营养元素,作为许多酶的辅助因子发挥着关键作用。全球约三分之一的耕地缺锌,导致作物产量和品质下降。为提高作物对锌缺乏的耐受性,了解植物耐受锌供应不足所采用的机制很重要。在本研究中,对19个拟南芥生态型组成的群体中与锌缺乏耐受性相关性状的生理和分子方面进行了研究。生态型地上部生物量的变异大于锌浓度的变异,表明它们对生长所需的最低锌浓度有不同需求。与锌缺乏敏感型生态型相比,对锌缺乏耐受性较高的生态型中锌缺乏响应基因ZIP4和IRT3的表达增加。通过对植物进行锌处理后地上部离子组的变化,构建了一个多项逻辑回归模型,该模型能够区分植物的锌营养状况。这组反映拟南芥对锌缺乏和锌缺乏耐受性响应的生物标志物,可用于未来旨在提高在锌浓度次优条件下生长的作物性能和锌状况的研究。

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