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Functional and phylogenetic analysis of a DREB/CBF-like gene in perennial ryegrass (Lolium perenne L.)

机译:多年生黑麦草(黑麦草)中DREB / CBF样基因的功能和系统发育分析

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The dehydration-responsive element binding proteins (DREB1)/C-repeat (CRT) binding factors (CBF) function as transcription factors and bind to the DRE/CRT cis-acting element (core motif: G/ACCGAC) commonly present in cold-regulated (COR) genes and subsequently upregulate the expression of such genes in Arabidopsis. We identified a DREB1A/CBF3-like gene, designated LpCBF3, from perennial ryegrass (Lolium perenne L.) by using RT-PCR and RACE (rapid amplification of cDNA end). The LpCBF3 gene contains all the conserved domains known to exist in other CBF genes. A comprehensive phylogenetic analysis using known and computationally identified CBF homologs in this study revealed that all monocot CBF genes are separately clustered from eudicot CBF genes and the LpCBF3 is the ortholog of rice OsDREB1A/CBF3 gene. Similar to other DREB1A/CBF3 homologs, expression of the LpCBF3 is induced by cold stress, but not by abscisic acid (ABA), drought, or salinity. Overexpression of the LpCBF3 cDNA in Arabidopsis induced expression of the Arabidopsis DREB1A/CBF3 target COR genes, COR15a and RD29A, without cold acclimation. Ion leakage in leaves of the overexpression transgenic plants was significantly reduced, an indication of enhanced freezing tolerance. Our data demonstrated that LpCBF3 not only resembles DREB/CBF genes of Arabidopsis, but is also capable of functioning as a transcriptional regulator in Arabidopsis, a species distant to the grass family.
机译:脱水反应元件结合蛋白(DREB1)/ C重复(CRT)结合因子(CBF)起转录因子的作用,并与冷态中常见的DRE / CRT顺式作用元件(核心基序:G / ACCGAC)结合调控(COR)基因,并随后上调拟南芥中此类基因的表达。我们通过使用RT-PCR和RACE(cDNA末端的快速扩增),从多年生黑麦草(黑麦草)中鉴定了DREB1A / CBF3样基因,命名为LpCBF3。 LpCBF3基因包含已知存在于其他CBF基因中的所有保守域。在这项研究中,使用已知的和计算机确定的CBF同源物进行了全面的系统发育分析,结果表明,所有单子叶植物CBF基因都与真双子叶植物CBF基因分别聚在一起,而LpCBF3是水稻OsDREB1A / CBF3基因的直系同源物。与其他DREB1A / CBF3同系物相似,LpCBF3的表达是由冷胁迫诱导的,而不是由脱落酸(ABA),干旱或盐度诱导的。 LpCBF3 cDNA在拟南芥中的过表达诱导拟南芥DREB1A / CBF3靶COR基因COR15a和RD29A的表达,而无需冷驯化。过表达转基因植物叶片中的离子泄漏显着减少,这表明冷冻耐受性增强。我们的数据表明,LpCBF3不仅类似于拟南芥的DREB / CBF基因,而且还能够在拟南芥中作为一种转录调节因子起作用,该物种远离草科。

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