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Down‐regulation of OsSPX1 caused semi‐male sterility, resulting in reduction of grain yield in rice

机译:OSSPX1的下调导致半雄性不育,导致水稻中的籽粒产量降低

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Summary OsSPX1 , a rice SPX domain gene, involved in the phosphate (Pi)-sensing mechanism plays an essential role in the Pi-signalling network through interaction with OsPHR2 . In this study, we focused on the potential function of OsSPX1 during rice reproductive phase. Based on investigation of OsSPX1 antisense and sense transgenic rice lines in the paddy fields, we discovered that the down-regulation of OsSPX1 caused reduction of seed-setting rate and filled grain number. Through examination of anthers and pollens of the transgenic and wild-type plants by microscopy, we found that the antisense of OsSPX1 gene led to semi-male sterility, with lacking of mature pollen grains and phenotypes with a disordered surface of anthers and pollens. We further conducted rice whole-genome GeneChip analysis to elucidate the possible molecular mechanism underlying why the down-regulation of OsSPX1 caused deficiencies in anthers and pollens and lower seed-setting rate in rice. The down-regulation of OsSPX1 significantly affected expression of genes involved in carbohydrate metabolism and sugar transport, anther development, cell cycle, etc. These genes may be related to pollen fertility and male gametophyte development. Our study demonstrated that down-regulation of OsSPX1 disrupted rice normal anther and pollen development by affecting carbohydrate metabolism and sugar transport, leading to semi-male sterility, and ultimately resulted in low seed-setting rate and grain yield.
机译:发明内容OSSPX1,涉及磷酸盐(PI)敏感机制的水稻SPX结构域基因在PI信号网络中发挥着基本作用,通过与osphR2相互作用。在这项研究中,我们专注于水稻生殖阶段OSSPX1的潜在功能。基于稻田OSSPX1反义和感测转基因稻米的调查,我们发现OSSPX1的下调引起了种子设定率和填充粒度的降低。通过显微镜检查转基因和野生型植物的阴茎和花粉,我们发现OSSPX1基因的反义导致半雄性不育,缺乏成熟花粉粒和表型,具有阴茎表面的阴茎和花粉。我们进一步进行了大米全基因组的GeneChip分析,以阐明oSPX1的下调造成的可能性的分子机制,导致花药和花粉的缺陷以及水稻中的种子凝固率降低。 OSSPX1的下调显着影响参与碳水化合物代谢和糖传输,花药,细胞周期等所涉及的基因的表达。这些基因可能与花粉生育和雄性配子体发育有关。我们的研究证明,通过影响碳水化合物代谢和糖转运,导致半雄性不育的碳水化合物代谢和花粉发育,oosspx1的下调破坏了水稻正常花粉和花粉发育,并最终导致种子定位率低和谷物产量。

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