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Rice Premature Leaf Senescence 2 Encoding a Glycosyltransferase (GT) Is Involved in Leaf Senescence

机译:水稻早熟叶片衰老2编码糖基转移酶(GT)参与叶片衰老。

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摘要

Premature leaf senescence (PLS), which has a significant impact on yield, is caused by various underlying mechanisms. Glycosyltransferases, which function in glycosyl transfer from activated nucleotides to aglycones, are involved in diverse biological processes, but their roles in rice leaf senescence remain elusive. Here, we isolated and characterized a leaf senescence-related gene from the Premature Leaf Senescent mutant (pls2). The mutant phenotype began with leaf yellowing at tillering and resulted in PLS during the reproductive stage. Leaf senescence was associated with an increase in hydrogen peroxide (H2O2) content accompanied with pronounced decreases in net photosynthetic rate, stomatal conductance, and transpiration rate. Map-based cloning revealed that a mutation in LOC_Os03g15840 (PLS2), a putative glycosyltransferase- encoding gene, was responsible for the defective phenotype. PLS2 expression was detected in all tissues surveyed, but predominantly in leaf mesophyll cells. Subcellular localization of the PLS2 was in the endoplasmic reticulum. The pls2 mutant accumulated higher levels of sucrose together with decreased expression of sucrose metabolizing genes compared with wild type. These data suggested that the PLS2 allele is essential for normal leaf senescence and its mutation resulted in PLS.
机译:叶片过早衰老(PLS)对产量有重大影响,是由各种潜在机制引起的。糖基转移酶在糖基从活化的核苷酸到糖苷配基的转移中起作用,参与多种生物过程,但是它们在水稻叶片衰老中的作用仍然难以捉摸。在这里,我们从过早的叶片衰老突变体(pls2)中分离并表征了叶片衰老相关基因。突变表型从分till时叶片发黄开始,并在生殖阶段导致PLS。叶片衰老与过氧化氢(H2O2)含量的增加相关,同时净光合速率,气孔导度和蒸腾速率也明显降低。基于图的克隆显示,LOC_Os03g15840(PLS2)(一种假定的糖基转移酶编码基因)中的突变是造成表型缺陷的原因。在所有调查的组织中均检测到PLS2表达,但主要存在于叶肉细胞中。 PLS2的亚细胞定位是在内质网中。与野生型相比,pls2突变体积累了更高水平的蔗糖,同时蔗糖代谢基因的表达降低。这些数据表明,PLS2等位基因对于正常叶片衰老至关重要,其突变导致PLS。

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