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首页> 外文期刊>Botanical Studies >Heterologous expression of rice 9 - cis - epoxycarotenoid dioxygenase 4 ( OsNCED4 ) in Arabidopsis confers sugar oversensitivity and drought tolerance
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Heterologous expression of rice 9 - cis - epoxycarotenoid dioxygenase 4 ( OsNCED4 ) in Arabidopsis confers sugar oversensitivity and drought tolerance

机译:水稻9-顺-环氧类胡萝卜素双加氧酶4(OsNCED4)在拟南芥中的异源表达赋予糖过敏性和抗旱性。

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BackgroundThe 9 - cis - epoxycarotenoid dioxygenases OsNCED4 was cloned from rice in conjunction with OsNCED 1 - 3 and 5 , of which 3 has been shown to function in ABA biosynthesis and alteration of leaf morphology. In higher plants, NCEDs have been shown to be key enzymes controlling ABA biosynthesis and belong to a differentially expressed gene family. Aside from OsNCED3 , it remains largely unknown if other OsNCED genes are involved in ABA biosynthesis in rice. Thus, transgenic Arabidopsis plants overexpressing OsNCED4 were generated in the 129B08/ nced3 mutant background to explore OsNCED4 function in ABA biosynthesis. ResultsHeterologous expression of OsNCED4 in Arabidopsis increased ABA levels and altered plant size and leaf shape, delayed seed germination, caused sugar oversensitivity in post-germination growth, and enhanced tolerance to drought. The native OsNCED3 and OsNCED4 promoters were expressed in an overlapping pattern in rice seeds and young seedlings, suggesting possible functional redundancy between OsNCED3 and OsNCED4 . At the one-leaf stage, similar regulation of OsNCED3 and OsNCED4 gene expression in roots or leaves in response to moderate salt stress (150?mM NaCl) was observed. ConclusionLike OsNCED3 , OsNCED4 is functionally active in ABA biosynthesis in rice. OsNCED3 and OsNCED4 might play redundant roles in controlling ABA biosynthesis in rice, as suggested by GUS staining assay, but this should be further analyzed through complementation of rice NCED knockout mutants.
机译:背景技术从水稻中克隆了9-顺式-环氧类胡萝卜素双加氧酶OsNCED4以及OsNCED 1-3和5,其中3个在ABA生物合成和叶片形态变化中发挥作用。在高等植物中,已证明NCED是控制ABA生物合成的关键酶,并且属于差异表达的基因家族。除了OsNCED3之外,是否还存在其他OsNCED基因是否参与水稻ABA生物合成尚不清楚。因此,在129B08 / nced3突变体背景下产生了过表达OsNCED4的转基因拟南芥植物,以探索OsNCED4在ABA生物合成中的功能。结果拟南芥中OsNCED4的异源表达增加了ABA水平,改变了植物的大小和叶片形状,延迟了种子发芽,在发芽后的生长中引起糖分超敏反应,并增强了对干旱的耐受性。天然的OsNCED3和OsNCED4启动子在水稻种子和幼苗中以重叠模式表达,表明OsNCED3和OsNCED4之间可能存在功能冗余。在单叶阶段,观察到中度盐胁迫(150?mM NaCl)对根或叶中OsNCED3和OsNCED4基因表达的类似调节。结论OsNCED4与OsNCED3一样,在水稻ABA生物合成中具有功能性活性。如GUS染色分析所示,OsNCED3和OsNCED4在控制水稻ABA生物合成中可能起着多余的作用,但应通过水稻NCED基因敲除突变体的补充来进一步分析。

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