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Vacuolar Sulfate Transporters Are Essential Determinants Controlling Internal Distribution of Sulfate in Arabidopsis

机译:液泡硫酸盐转运蛋白是控制拟南芥中硫酸盐内部分布的重要决定因素。

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摘要

Uptake of external sulfate from the environment and use of internal vacuolar sulfate pools are two important aspects of the acquisition of sulfur for metabolism. In this study, we demonstrated that the vacuolar SULTR4-type sulfate transporter facilitates the efflux of sulfate from the vacuoles and plays critical roles in optimizing the internal distribution of sulfate in Arabidopsis thaliana. SULTR4;1-green fluorescent protein (GFP) and SULTR4;2-GFP fusion proteins were expressed under the control of their own promoters in transgenic Arabidopsis. The fusion proteins were accumulated specifically in the tonoplast membranes and were localized predominantly in the pericycle and xylem parenchyma cells of roots and hypocotyls. In roots, SULTR4;1 was constantly accumulated regardless of the changes of sulfur conditions, whereas SULTR4;2 became abundant by sulfur limitation. In shoots, both transporters were accumulated by sulfur limitation. Vacuoles isolated from callus of the sultr4;1 sultr4;2 double knockout showed excess accumulation of sulfate, which was substantially decreased by overexpression of SULTR4;1-GFP. In seedlings, the supplied [35S]sulfate was retained in the root tissue of the sultr4;1 sultr4;2 double knockout mutant. Comparison of the double and single knockouts suggested that SULTR4;1 plays a major role and SULTR4;2 has a supplementary function. Overexpression of SULTR4;1-GFP significantly decreased accumulation of [35S]sulfate in the root tissue, complementing the phenotype of the double mutant. These results suggested that SULTR4-type transporters, particularly SULTR4;1, actively mediate the efflux of sulfate from the vacuole lumen into the cytoplasm and influence the capacity for vacuolar storage of sulfate in the root tissue. The efflux function will promote rapid turnover of sulfate from the vacuoles particularly in the vasculature under conditions of low-sulfur supply, which will optimize the symplastic (cytoplasmic) flux of sulfate channeled toward the xylem vessels.
机译:从环境中吸收外部硫酸盐和使用内部液泡硫酸盐池是代谢吸收硫的两个重要方面。在这项研究中,我们证明了液泡SULTR4型硫酸盐转运蛋白促进了硫酸盐从液泡中流出,并在优化拟南芥中硫酸盐的内部分布中起关键作用。 SULTR4; 1-绿色荧光蛋白(GFP)和SULTR4; 2-GFP融合蛋白在其自身启动子的控制下在转基因拟南芥中表达。融合蛋白特异性地积累在液泡膜中,并且主要定位在根和下胚轴的周周和木质部薄壁组织细胞中。在根部,无论硫条件如何变化,SULTR4; 1都会不断积累,而SULTR4; 2受硫限制而变得丰富。在芽中,两种转运蛋白均因硫限制而积累。从sultr4; 1 sultr4; 2双重愈伤组织的愈伤组织中分离出的液泡显示出硫酸盐的过量积聚,这通过SULTR4; 1-GFP的过表达而大大降低。在幼苗中,提供的[ 35 S]硫酸盐保留在sultr4; 1 sultr4; 2双敲除突变体的根组织中。双重和单一敲除的比较表明,SULTR4; 1起主要作用,而SULTR4; 2具有补充作用。 SULTR4; 1-GFP的过表达显着降低了根组织中[ 35 S]硫酸盐的积累,补充了双突变体的表型。这些结果表明,SULTR4型转运蛋​​白,特别是SULTR4; 1,主动介导了硫酸盐从液泡腔流出到细胞质中,并影响了硫酸盐在根组织中液泡储存的能力。外排功能将促进空泡中硫酸盐的快速转换,特别是在低硫供应条件下的脉管系统中,这将优化引导至木质部血管的硫酸盐的共生(胞质)通量。

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