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OsSPL10 a SBP-Box Gene Plays a Dual Role in Salt Tolerance and Trichome Formation in Rice (Oryza sativa L.)

机译:OsSPL10是一个SBP-box基因在水稻(Oryza sativa L.)的耐盐性和毛虫基因组形成中起着双重作用

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摘要

Salinity is one of the major abiotic stress factors limiting rice production. Glabrousness is a trait of agronomic importance in rice ( L.). We previously found a single-gene recessive mutant , which displayed increased salt tolerance and glabrous leaf and glume without trichomes, and identified an SBP-box gene as the candidate of the gene. In this study, -knockout and -overexpression mutants were created to check the function of the gene. The knockout mutants exhibited enhanced salt tolerance and glabrous leaves and glumes as expected, while the overexpression mutants showed opposite phenotypes, in which both salt sensitivity and trichome density on leaf and glume were increased. These results clearly confirmed that is , and suggested that controls the initiation rather than the elongation of trichomes. In addition, expression analysis indicated that was preferentially expressed in young panicle and stem, and protein OsSPL10 was localized in nucleus. Taken together, negatively controls salt tolerance but positively controls trichome formation in rice.
机译:盐分是限制水稻产量的主要非生物胁迫因素之一。无毛是水稻的重要农艺性状(L.)。我们先前发现了一个单基因隐性突变体,该突变体显示出更高的耐盐性和无毛的无鳞叶片和颖花,并确定了SBP-box基因为该基因的候选基因。在这项研究中,创建了-knockout和-overexpression突变体以检查该基因的功能。敲除突变体表现出增强的耐盐性和无毛的叶片和颖颖,而过表达突变体表现出相反的表型,其中盐敏感性和叶片和颖颖上的毛状体密度都增加了。这些结果清楚地证实了是,并建议控制毛状体的起始而不是伸长。另外,表达分析表明其优先在幼穗和茎中表达,而蛋白OsSPL10位于细胞核中。两者合计,负面地控制耐盐性,但是正面地控制稻米中毛状体的形成。

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