首页> 美国卫生研究院文献>PLoS Clinical Trials >Gene Knockout Study Reveals That Cytosolic Ascorbate Peroxidase 2(OsAPX2) Plays a Critical Role in Growth and Reproduction in Rice under Drought, Salt and Cold Stresses
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Gene Knockout Study Reveals That Cytosolic Ascorbate Peroxidase 2(OsAPX2) Plays a Critical Role in Growth and Reproduction in Rice under Drought, Salt and Cold Stresses

机译:基因敲除研究表明,干旱,盐和冷胁迫下胞质抗坏血酸过氧化物酶2(OsAPX2)在水稻的生长和繁殖中起关键作用

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摘要

Plant ascorbate peroxidases (APXs), enzymes catalyzing the dismutation of H2O2 into H2O and O2, play an important role in reactive oxygen species homeostasis in plants. The rice genome has eight OsAPXs, but their physiological functions remain to be determined. In this report, we studied the function of OsAPX2 gene using a T-DNA knockout mutant under the treatment of drought, salt and cold stresses. The Osapx2 knockout mutant was isolated by a genetic screening of a rice T-DNA insertion library under 20% PEG-2000 treatment. Loss of function in OsAPX2 affected the growth and development of rice seedlings, resulting in semi-dwarf seedlings, yellow-green leaves, leaf lesion mimic and seed sterility. OsAPX2 expression was developmental- and spatial-regulated, and was induced by drought, salt, and cold stresses. Osapx2 mutants had lower APX activity and were sensitive to abiotic stresses; overexpression of OsAPX2 increased APX activity and enhanced stress tolerance. H2O2 and MDA levels were high in Osapx2 mutants but low in OsAPX2-OX transgenic lines relative to wild-type plants after stress treatments. Taken together, the cytosolic ascorbate peroxidase OsAPX2 plays an important role in rice growth and development by protecting the seedlings from abiotic stresses through scavenging reactive oxygen species.
机译:植物抗坏血酸过氧化物酶(APXs)是催化H2O2分解为H2O和O2的酶,在植物体内活性氧稳态中起着重要作用。水稻基因组有八个OsAPX,但它们的生理功能仍有待确定。在本报告中,我们使用T-DNA敲除突变体研究了干旱,盐分和寒冷胁迫下OsAPX2基因的功能。通过在20%PEG-2000处理下对水稻T-DNA插入文库进行基因筛选,分离出Osapx2基因敲除突变体。 OsAPX2功能的丧失影响了水稻幼苗的生长和发育,导致半矮苗,黄绿色叶片,叶片病变模拟和种子不育。 OsAPX2表达受发育和空间调节,并由干旱,盐和冷胁迫诱导。 Osapx2突变体的APX活性较低,并且对非生物胁迫敏感。 OsAPX2的过表达增加了APX活性并增强了压力承受能力。胁迫处理后,相对于野生型植物,Osapx2突变体中的H2O2和MDA水平较高,而OsAPX2-OX转基因品系中较低。两者合计,胞质抗坏血酸过氧化物酶OsAPX2通过清除活性氧来保护幼苗免受非生物胁迫,在水稻生长和发育中发挥重要作用。

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