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拟南芥两个高亲和力硫酸盐转运蛋白SULTR1;1和SULTR1;2之间功能冗余的不平等性。

Unequal functional redundancy between the two Arabidopsis thaliana high-affinity sulphate transporters SULTR1;1 and SULTR1;2.

作者信息

Barberon Marie, Berthomieu Pierre, Clairotte Michael, Shibagaki Nakako, Davidian Jean-Claude, Gosti Françoise

机构信息

UMR de Biochimie et Physiologie Moléculaire des Plantes, Centre International d'Etudes Supérieures en Sciences Agronomiques, Centre National de la Recherche Scientifique, Institut National de la Recherche Agronomique, Université Montpellier II, 2 Place Pierre Viala, 34060 Montpellier cedex 1, France.

UMR de Biogéochimie du Sol et de la Rhizosphère, Centre International d'Etudes Supérieures en Sciences Agronomiques, Institut National de la Recherche Agronomique, 2 Place Pierre Viala, 34060 Montpellier cedex 1, France.

出版信息

New Phytol. 2008;180(3):608-619. doi: 10.1111/j.1469-8137.2008.02604.x. Epub 2008 Aug 25.

Abstract
  • In Arabidopsis, SULTR1;1 and SULTR1;2 are two genes proposed to be involved in high-affinity sulphate uptake from the soil solution. We address here the specific issue of their functional redundancy for the uptake of sulphate and for the accumulation of its toxic analogue selenate with regard to plant growth and selenate tolerance. * Using the complete set of genotypes, including the wild-type, each one of the single sultr1;1 and sultr1;2 mutants and the resulting double sultr1;1-sultr1;2 mutant, we performed a detailed phenotypic analysis of root length, shoot biomass, sulphate uptake, sulphate and selenate accumulation and selenate tolerance. * The results all ordered the four different genotypes according to the same functional hierarchy. Wild-type and sultr1;1 mutant plants displayed similar phenotypes. By contrast, sultr1;1-sultr1;2 double-mutant plants showed the most extreme phenotype and the sultr1;2 mutant displayed intermediate performances. Additionally, the degree of selenate tolerance was directly related to the seedling selenate content according to a single sigmoid regression curve common to all the genotypes. * The SULTR1;1 and SULTR1;2 genes display unequal functional redundancy, which leaves open for SULTR1;1 the possibility of displaying an additional function besides its role in sulphate membrane transport.
摘要

在拟南芥中,SULTR1;1和SULTR1;2是两个被认为参与从土壤溶液中高亲和力吸收硫酸盐的基因。在此,我们探讨了它们在硫酸盐吸收以及其有毒类似物硒酸盐积累方面对于植物生长和硒酸盐耐受性的功能冗余这一具体问题。利用包括野生型、每个单基因sultr1;1和sultr1;2突变体以及由此产生的双基因sultr1;1 - sultr1;2突变体在内的全套基因型,我们对根长、地上部生物量、硫酸盐吸收、硫酸盐和硒酸盐积累以及硒酸盐耐受性进行了详细的表型分析。结果按照相同的功能层次对四种不同基因型进行了排序。野生型和sultr1;1突变体植株表现出相似的表型。相比之下,sultr1;1 - sultr1;2双突变体植株表现出最极端的表型,而sultr1;2突变体表现出中间水平的表现。此外,根据所有基因型共有的一条单一的S形回归曲线,硒酸盐耐受性程度与幼苗硒酸盐含量直接相关。SULTR1;1和SULTR1;2基因表现出不等的功能冗余,这使得SULTR1;1除了在硫酸盐膜转运中的作用外,还可能具有额外的功能。

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