首页> 外文期刊>Journal of Experimental Botany >Mutation of SPOTTED LEAF3 (SPL3) impairs abscisic acid-responsive signalling and delays leaf senescence in rice
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Mutation of SPOTTED LEAF3 (SPL3) impairs abscisic acid-responsive signalling and delays leaf senescence in rice

机译:SPOTTED LEAF3(SPL3)的突变会破坏脱落酸应答信号并延迟水稻叶片衰老

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Lesion mimic mutants commonly display spontaneous cell death in pre-senescent green leaves under normal conditions, without pathogen attack. Despite molecular and phenotypic characterization of several lesion mimic mutants, the mechanisms of the spontaneous formation of cell death lesions remain largely unknown. Here, the rice lesion mimic mutant spotted leaf3 (spl3) was examined. When grown under a light/dark cycle, the spl3 mutant appeared similar to wild-type at early developmental stages, but lesions gradually appeared in the mature leaves close to heading stage. By contrast, in spl3 mutants grown under continuous light, severe cell death lesions formed in developing leaves, even at the seedling stage. Histochemical analysis showed that hydrogen peroxide accumulated in the mutant, likely causing the cell death phenotype. By map-based cloning and complementation, it was shown that a 1-bp deletion in the first exon of Oryza sativa Mitogen-Activated Protein Kinase Kinase Kinase1 (OsMAPKKK1)/OsEDR1/OsACDR1 causes the spl3 mutant phenotype. The spl3 mutant was found to be insensitive to abscisic acid (ABA), showing normal root growth in ABA-containing media and delayed leaf yellowing during dark-induced and natural senescence. Expression of ABA signalling-associated genes was also less responsive to ABA treatment in the mutant. Furthermore, the spl3 mutant had lower transcript levels and activities of catalases, which scavenge hydrogen peroxide, probably due to impairment of ABA-responsive signalling. Finally, a possible molecular mechanism of lesion formation in the mature leaves of spl3 mutant is discussed.
机译:病变模拟突变体通常在正常条件下在衰老前的绿叶中显示自发性细胞死亡,而没有病原体侵袭。尽管几个病变模拟突变体的分子和表型特征,细胞死亡病变自发形成的机制仍然是未知的。在这里,检查了水稻病态模拟突变体斑点leaf3(spl3)。当在明/暗周期下生长时,spl3突变体在早期发育阶段似乎与野生型相似,但在接近抽穗期的成熟叶片中逐渐出现损伤。相比之下,在连续光照下生长的spl3突变体中,即使在幼苗期,在发育中的叶子中也会形成严重的细胞死亡损伤。组织化学分析表明,过氧化氢在突变体中积累,可能引起细胞死亡表型。通过基于图的克隆和互补,表明稻米丝分裂素激活的蛋白激酶激酶激酶1(OsMAPKKK1)/ OsEDR1 / OsACDR1的第一个外显子中缺失了一个1 bp引起spl3突变表型。发现spl3突变体对脱落酸(ABA)不敏感,在含ABA的培养基中显示正常的根部生长,并在黑暗诱导的自然衰老过程中延迟了叶黄。 ABA信号相关基因的表达在突变体中对ABA处理的反应也较弱。此外,spl3突变体具有较低的转录水平和过氧化氢酶活性,过氧化氢酶可以清除过氧化氢,这可能是由于ABA响应信号的受损所致。最后,讨论了spl3突变体成熟叶片中病变形成的可能分子机制。

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