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首页> 外文期刊>Plant Molecular Biology Reporter >Components of the Arabidopsis CBF Cold-Response Pathway Are Conserved in Non-heading Chinese Cabbage
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Components of the Arabidopsis CBF Cold-Response Pathway Are Conserved in Non-heading Chinese Cabbage

机译:无头大白菜中拟南芥CBF冷响应途径的成分得以保留。

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Many plants increase in freezing tolerance upon exposure to low non-freezing temperatures, a phenomenon known as cold acclimation. Cold acclimation in Arabidopsis involves rapid cold-induced expression of the inducer of C-repeat/dehydration-responsive element-binding factor (CBF) expression (ICE) transcriptional activators followed by expression of the CBF; subsequently, CBF-targeted genes that increase freezing tolerance. Here, we present evidence for a CBF cold-response pathway in non-heading Chinese cabbage (Brassica campestris ssp. chinensis L. Makino). We show that non-heading Chinese cabbage encodes ICE1-like gene BrICE1 that bracket an open reading frame of 1,491 bp encoding a protein with a potential bHLH domain, which accumulates rapidly in response to low temperature followed closely by expression of the BrCBF gene, an ortholog of the Arabidopsis CBF3-like gene, and then BrCOR14 gene, an ortholog of the Arabidopsis CBF-targeted COR15b gene. An alignment of the later two genes from Arabidopsis, Brassica napus revealed the presence of conserved CANNTG core element and AP2 domain in BrCBF and a CCG core element in BrCOR14. In addition, BrCBF and BrCOR14 showed increased expression induced by low temperature as well as salt and drought, but not by ABA stress which are similar to those of Arabidopsis. We conclude that components of the CBF cold-response pathway are highly conserved in non-heading Chinese cabbage.
机译:许多植物在暴露于较低的非冻结温度后会提高其耐寒性,这种现象称为冷驯化。拟南芥中的冷驯化涉及快速冷诱导的C重复/脱水反应元件结合因子(CBF)表达(ICE)转录激活因子诱导剂的表达,然后是CBF的表达。随后,以CBF为目标的基因增加了抗冻性。在这里,我们提供了在不抽穗的大白菜(甘蓝型油菜L. Makino)中的CBF冷响应途径的证据。我们显示无标题的大白菜编码ICE1样基因BrICE1,该基因架入1,491 bp的开放阅读框,编码具有潜在bHLH结构域的蛋白质,该蛋白质在低温下迅速积累,紧随其后是BrCBF基因的表达,拟南芥CBF3样基因的直系同源物,然后是拟南芥CBF靶向COR15b基因的直系同源物BrCOR14基因。来自拟南芥的两个基因的比对,即甘蓝型油菜揭示了在BrCBF中存在保守的CANNTG核心元件和AP2结构域,在BrCOR14中存在CCG核心元件。另外,BrCBF和BrCOR14显示出由低温以及盐和干旱诱导的表达增加,但不是由ABA胁迫引起的,这与拟南芥相似。我们得出的结论是,在不抽穗的大白菜中,CBF冷应答途径的成分高度保守。

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