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Altered expression of the PTR/NRT1 homologue OsPTR9 affects nitrogen utilization efficiency, growth and grain yield in rice

机译:PTR / NRT1同源基因OsPTR9的表达改变影响水稻的氮利用效率,生长和籽粒产量

摘要

The plant PTR/NRT1 (peptide transporter/nitrate transporter 1) gene family comprises di/tripeptide and low-affinity nitrate transporters; some members also recognize other substrates such as carboxylates, phytohormones (auxin and abscisic acid), or defence compounds (glucosinolates). Little is known about the members of this gene family in rice (Oryza sativa L.). Here, we report the influence of altered OsPTR9 expression on nitrogen utilization efficiency, growth, and grain yield. OsPTR9 expression is regulated by exogenous nitrogen and by the day-night cycle. Elevated expression of OsPTR9 in transgenic rice plants resulted in enhanced ammonium uptake, promotion of lateral root formation and increased grain yield. On the other hand, down-regulation of OsPTR9 in a T-DNA insertion line (osptr9) and in OsPTR9-RNAi rice plants had the opposite effect. These results suggest that OsPTR9 might hold potential for improving nitrogen utilization efficiency and grain yield in rice breeding.
机译:植物PTR / NRT1(肽转运蛋白/硝酸盐转运蛋白1)基因家族包含二/三肽和低亲和力硝酸盐转运蛋白。一些成员还认识到其他底物,例如羧酸盐,植物激素(生长素和脱落酸)或防御化合物(芥子油苷)。对于水稻(Oryza sativa L.)中该基因家族的成员知之甚少。在这里,我们报告改变的OsPTR9表达对氮利用效率,生长和粮食产量的影响。 OsPTR9表达受外源氮和昼夜循环的调节。 OsPTR9在转基因水稻植株中的高表达导致铵吸收增加,侧根形成促进和谷物产量增加。另一方面,在T-DNA插入系(osptr9)和OsPTR9-RNAi水稻植株中OsPTR9的下调具有相反的作用。这些结果表明,OsPTR9可能具有提高水稻育种中氮素利用效率和谷物产量的潜力。

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