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Sulfur transfer from the endophytic fungus Serendipita indica improves maize growth and requires the sulfate transporter SiSulT

机译:来自内胚细胞的硫化素序列籼稻改善了玉米生长,需要硫酸盐转运蛋白

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A deficiency of the essential macronutrient sulfur leads to stunted plant growth and yield loss; however, an association with a symbiotic fungus can greatly improve nutrient uptake by the host plant. Here, we identified and functionally characterized a high-affinity sulfate transporter from the endophytic fungus Serendipita indica. SiSulT fulfills all the criteria expected of a functional sulfate transporter responding to sulfur limitation: SiSulT expression was induced when S. indica was grown under low-sulfate conditions, and heterologous expression of SiSulT complemented a yeast mutant lacking sulfate transport. We generated a knockdown strain of SiSulT by RNA interference to investigate the consequences of the partial loss of this transporter for the fungus and the host plant (maize, Zea mays) during colonization. Wild-type (WT) S. indica, but not the knockdown strain (kd-SiSulT), largely compensated for low-sulfate availability and supported plant growth. Colonization by WT S. indica also allowed maize roots to allocate precious resources away from sulfate assimilation under low-sulfur conditions, as evidenced by the reduction in expression of most sulfate assimilation genes. Our study illustrates the utility of the endophyte S. indica in sulfur nutrition research and offers potential avenues for agronomically sound amelioration of plant growth in low-sulfate environments.
机译:缺乏必需的大量营养元素硫会导致植物生长受阻和产量损失;然而,与共生真菌的结合可以极大地提高寄主植物对养分的吸收。在这里,我们从内生真菌Serendipita indica中鉴定了一种高亲和力硫酸盐转运体,并对其进行了功能表征。SiSulT满足功能性硫酸盐转运蛋白对硫限制的所有预期标准:当S.indica在低硫酸盐条件下生长时,SiSulT表达被诱导,并且SiSulT的异源表达补充了缺乏硫酸盐转运的酵母突变体。我们通过RNA干扰产生了SiSulT的击倒菌株,以研究在定殖过程中该转运体部分缺失对真菌和宿主植物(玉米、玉米)的影响。野生型(WT)S.indica,但不是击倒菌株(kd SiSulT),在很大程度上弥补了硫酸盐利用率低的缺点,并支持了植物生长。WT S.indica的定殖也允许玉米根系在低硫条件下从硫酸盐同化中分配宝贵的资源,大多数硫酸盐同化基因的表达减少就证明了这一点。我们的研究阐明了内生真菌S.indica在硫营养研究中的作用,并为在低硫酸盐环境中从农艺学角度改善植物生长提供了潜在途径。

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