首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Ethylene insensitive3-like2 (OsEIL2) confers stress sensitivity by regulating OsBURP16, the beta subunit of polygalacturonase (PG1 beta-like) subfamily gene in rice
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Ethylene insensitive3-like2 (OsEIL2) confers stress sensitivity by regulating OsBURP16, the beta subunit of polygalacturonase (PG1 beta-like) subfamily gene in rice

机译:乙烯短暂敏感3样(Oseil2)通过调节OSBurp16,米乳糖酸盐酶(PG1 Beta样)亚家族基因的β亚基(PG1 Beta样)亚家族基因中的β亚基赋予应力敏感性

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The transcription factors EIN3 (ETHYLENE-INSENSITIVE 3) and EILs (EIN3-Likes) play important roles in plant development and defense responses; however, their mechanism in these processes remain unclear. Here, we report that OsEIL2, an EIN3-like transcription factor from rice (Oryza sativa), plays important roles in abiotic stress and leaf senescence. OsEIL2 is a nuclear-localized protein with transactivation activity in the C-terminus (amino acids 344-583) and can be induced by NaCl, polyethylene glycol (PEG), dark, and abscisic acid (ABA) treatment. Transgenic plants of overexpressing OsEIL2 (OsEIL2-OX) show reduced tolerance to salt and drought stress compared with the controls. While the transgenic plants of overexpressing OsEIL2-RNA interference (OsEIL2-RNAi) exhibit enhanced tolerance to salt and drought stress compared with the controls. Moreover, seedlings of OsEIL2-overexpressing transgenic plants exhibit delayed leaf development and an accelerated dark-induced senescence phenotype, whereas OsEIL2-RNAi plants display the opposite phenotype. We further found that OsEIL2 functions upstream of OsBURP14 and OsBURP16. OsBURP14 and OsBURP16 are the members of the beta subunit of polygalacturonase subfamilies. OsBURP16 overexpression reduced pectin content and cell adhesion and increased abiotic stress sensitivity in rice. OsEIL2 binds directly to the promoter of OsBURP14 and OsBURP16 and activates their transcript levels. We also found that OsEIL2 overexpression decreased the pectin content by increasing polygalacturonase (PG) activity. Taken together, these results revealed a new mechanism of OsEIL2 in abiotic stress responses. These findings provide new insights into plant resistance to abiotic stress.
机译:转录因子EIN3(乙烯 - 不敏感3)和EIL(EIN3-LIKES)在植物开发和国防反应中起重要作用;然而,它们在这些过程中的机制仍然不清楚。在这里,我们报告的是来自水稻(Oryza sativa)的Ein3样转录因子,在非生物应激和叶片衰老中起重要作用。 Oseil2是一种核局部化蛋白,具有C-末端(氨基酸344-583)的反膜激活活性,可以通过NaCl,聚乙二醇(PEG),暗和脱落酸(ABA)处理诱导。与对照相比,过表达OSEL2(OSEIL2-OX)过表达OSEIL2(OSEIL2-OX)的转基因植物显示出对盐和干旱胁迫的耐受性降低。虽然过表达Oseil2-RNA干扰的转基因植物(Oseil2-RNAi)与对照相比,对盐和干旱胁迫具有增强的耐受性。此外,Oseil2-过表达转基因植物的幼苗表现出延迟叶片发育和加速的黑暗诱导的衰老表型,而Oseil2-RNAi植物显示相对的表型。我们进一步发现,OSEIL2在OSBURP14和OSBURP16的上游函数。 osburp14和osburp16是多肢乳糖醛酸酶亚属植物的β亚基的成员。 OSBurp16过表达降低果胶含量和细胞粘附以及水稻中的非生物应激敏感性。 Oseil2直接与OSBurp14和OSBurp16的启动子结合,并激活其转录水平。我们还发现,Oseil2过表达通过增加多肢乳糖酸酶(PG)活性来降低果胶含量。总之,这些结果揭示了Oseil2在非生物应激反应中的新机制。这些调查结果为植物抵抗生育应力提供了新的见解。

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