首页> 外文期刊>Journal of Plant Physiology >Transcriptional profile of genes involved in ascorbate glutathione cycle in senescing leaves for an early senescence leaf (esl) rice mutant
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Transcriptional profile of genes involved in ascorbate glutathione cycle in senescing leaves for an early senescence leaf (esl) rice mutant

机译:早衰叶(esl)水稻突变体的衰老叶片中抗坏血酸谷胱甘肽循环相关基因的转录特征

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To clarify the complex relationship between ascorbate-glutathione (AsA-GSH) cycle and H2O2-induced leaf senescence, the genotype-dependent difference in some senescence-related physiological parameters and the transcript levels and the temporal patterns of genes involved in the AsA-GSH cycle during leaf senescence were investigated using two rice genotypes, namely, the early senescence leaf (esl) mutant and its wild type. Meanwhile, the triggering effect of exogenous H2O2 on the expression of OsAPX genes was examined using detached leaves. The results showed that the esl mutant had higher H2O2 level than its wild type at the initial stage of leaf senescence. At transcriptional level, the association of expression of various genes involved in the AsA-GSH cycle with leaf senescence was isoform dependent. For OsAPXs, the transcripts of two cytosolic OsAPX genes (OsAPX1 and OsAPX2), thylakoid-bound OsAPX8, chloroplastic OsAPX7 and peroxisomal OsAPX4 exhibited remarkable genotype-dependent variation in their expression levels and temporal patterns during leaf senescence, there were significantly increasing transcripts of OsAXP1 and OsAPX7, severely repressed transcripts of OsAPX4 and OsAPX8 for the esl rice at the initial leaf senescence. In contrast, the repressing transcript of OsAPX8 was highly sensitive to the increasing H2O2 level in the senescing rice leaves, while higher H2O2 concentration resulted in the enhancing transcripts of two cytosolic OsAPX genes, OsAPX7 transcript was greatly variable with different H2O2 concentrations and incubating duration, suggesting that the different OsAPXs isoforms played a complementary role in perceiving and scavenging H2O2 accumulation at various H2O2 concentrations during leaf senescence. Higher H2O2 level, increased AsA level, higher activities of APX and glutathione reductase (GR), and relatively stable GSH content during the entire sampling period in the leaves of esl mutant implied that a close interrelationship existed between AsA level and APX activity in the ongoing senescence of rice leaves. The GSH supply in rice leaves was not the limiting factor for the efficient maintenance of AsA-GSH cycle, despite the senescence-related change in GR activity between the two rice genotypes. (C) 2014 Elsevier GmbH. All rights reserved.
机译:为了阐明抗坏血酸-谷胱甘肽(AsA-GSH)周期与H2O2诱导的叶片衰老之间的复杂关系,某些衰老相关生理参数的基因型依赖性差异以及与AsA-GSH相关的基因的转录水平和时间模式利用两种水稻基因型,即早期衰老叶片(esl)突变体及其野生型,研究了叶片衰老的周期。同时,使用离体的叶片检查了外源H 2 O 2对OsAPX基因表达的触发作用。结果表明,在叶片衰老初期,esl突变体的H2O2水平高于野生型。在转录水平上,与AsA-GSH循环有关的各种基因的表达与叶片衰老的关系是同工型依赖性的。对于OsAPXs,两个胞质OsAPX基因(OsAPX1和OsAPX2),类囊体结合的OsAPX8,叶绿体OsAPX7和过氧化物酶体OsAPX4的转录本在叶衰老过程中的表达水平和时间模式表现出显着的基因型依赖性变化,OXA显着增加和OsAPX7,在初叶衰老时严重抑制了esl水稻的OsAPX4和OsAPX8转录本。相比之下,OsAPX8的抑制转录本对衰老的水稻叶片中H2O2水平的升高高度敏感,而较高的H2O2浓度导致两个胞质OsAPX基因的转录本增强,OsAPX7转录本随H2O2浓度和孵育时间的不同而变化很大,这表明在叶片衰老过程中,不同的OsAPXs亚型在不同的H2O2浓度下感知和清除H2O2积累方面起着互补作用。在整个esl突变体叶片的采样期间,较高的H2O2水平,升高的AsA水平,较高的APX和谷胱甘肽还原酶(GR)活性以及相对稳定的GSH含量暗示着在进行过程中,AsA水平与APX活性之间存在密切的相互关系。水稻叶片的衰老。尽管两种水稻基因型之间GR活性的衰老相关变化,但稻叶中GSH的供应不是有效维持AsA-GSH循环的限制因素。 (C)2014 Elsevier GmbH。版权所有。

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