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ABO5,编码一个五肽重复蛋白,对于线粒体 nad2 内含子 3 的顺式剪接是必需的,参与拟南芥脱落酸的响应。

ABA overly-sensitive 5 (ABO5), encoding a pentatricopeptide repeat protein required for cis-splicing of mitochondrial nad2 intron 3, is involved in the abscisic acid response in Arabidopsis.

机构信息

State Key Laboratory of Plant Physiology and Biochemistry, College of Biological Sciences, China Agricultural University, Beijing, China.

出版信息

Plant J. 2010 Sep;63(5):749-65. doi: 10.1111/j.1365-313X.2010.04280.x.

Abstract

To study the molecular mechanism of abscisic acid (ABA) regulation of root development, we screened the root growth of Arabidopsis mutants for sensitivity to ABA. ABA overly-sensitive 5 (ABO5/At1g51965) was identified, and was determined to encode a pentatricopeptide repeat protein required for cis-splicing of mitochondrial nad2 intron 3 (nad2 is one subunit in complex I). Under constant light conditions (24-h light/0-h dark photoperiod), abo5 mutants exhibited various phenotypes and expressed lower transcripts of stress-inducible genes, such as RD29A, COR47 and ABF2, and photosynthesis-related genes proton gradient regulation 5 (PGR5) and PGR5-likephotosynthetic phenotype (PGRL1), but higher levels of nuclear-encoded genes alternative oxidase 1a (AOX1a) and oxidative signal-inducible 1 (OXI1). Prolonged ABA treatment increased the expression of the cox2 gene in complex IV and nad genes in complex I to a higher level than no ABA treatment in the wild type, but only to a moderate level in abo5, probably because abo5 already expressed high levels of mitochondrial-encoded cox2 and nad genes under no ABA treatment. More H(2) O(2) accumulated in the root tips of abo5 than in the wild type, and H(2) O(2) accumulation was further enhanced by ABA treatment. However, these growth phenotypes and gene-expression defects were attenuated by growing abo5 plants under short-day conditions (12-h light/12-h dark photoperiod). Our results indicate that ABO5 is important in the plant response to ABA.

摘要

为了研究脱落酸(ABA)调节根系发育的分子机制,我们筛选了对 ABA 敏感的拟南芥突变体的根生长。鉴定出 ABA 超敏 5(ABO5/At1g51965),并确定其编码一个五肽重复蛋白,该蛋白对于线粒体 nad2 内含子 3 的顺式剪接(nad2 是复合物 I 的一个亚基)是必需的。在持续光照条件下(24 小时光照/0 小时黑暗光周期),abo5 突变体表现出各种表型,并表达较低水平的应激诱导基因,如 RD29A、COR47 和 ABF2,以及光合作用相关基因质子梯度调节 5(PGR5)和 PGR5-like 光合作用表型(PGRL1),但核编码基因替代氧化酶 1a(AOX1a)和氧化信号诱导 1(OXI1)的水平较高。长时间的 ABA 处理会增加复合体 IV 中的 cox2 基因和复合体 I 中的 nad 基因的表达水平,高于野生型无 ABA 处理的水平,但在 abo5 中仅达到中等水平,这可能是因为 abo5 已经在无 ABA 处理下表达了高水平的线粒体编码 cox2 和 nad 基因。abo5 根尖比野生型积累了更多的 H2O2,并且 H2O2 的积累在 ABA 处理下进一步增强。然而,这些生长表型和基因表达缺陷在 abo5 植物在短日照条件下(12 小时光照/12 小时黑暗光周期)生长时得到减弱。我们的研究结果表明,ABO5 在植物对 ABA 的反应中很重要。

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