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大麦中一个大型CBF基因家族的结构、功能及系统发育特征

Structural, functional, and phylogenetic characterization of a large CBF gene family in barley.

作者信息

Skinner Jeffrey S, von Zitzewitz Jarislav, Szucs Péter, Marquez-Cedillo Luis, Filichkin Tanya, Amundsen Keenan, Stockinger Eric J, Thomashow Michael F, Chen Tony H H, Hayes Patrick M

机构信息

Department of Horticulture, College of Agriculture, Oregon State University, Corvallis, OR 97331, USA.

出版信息

Plant Mol Biol. 2005 Nov;59(4):533-51. doi: 10.1007/s11103-005-2498-2.

Abstract

CBFs are key regulators in the Arabidopsis cold signaling pathway. We used Hordeum vulgare (barley), an important crop and a diploid Triticeae model, to characterize the CBF family from a low temperature tolerant cereal. We report that barley contains a large CBF family consisting of at least 20 genes (HvCBFs) comprising three multigene phylogenetic groupings designated the HvCBF1-, HvCBF3-, and HvCBF4-subgroups. For the HvCBF1- and HvCBF3-subgroups, there are comparable levels of phylogenetic diversity among rice, a cold-sensitive cereal, and the cold-hardy Triticeae. For the HvCBF4-subgroup, while similar diversity levels are observed in the Triticeae, only a single ancestral rice member was identified. The barley CBFs share many functional characteristics with dicot CBFs, including a general primary domain structure, transcript accumulation in response to cold, specific binding to the CRT motif, and the capacity to induce cor gene expression when ectopically expressed in Arabidopsis. Individual HvCBF genes differed in response to abiotic stress types and in the response time frame, suggesting different sets of HvCBF genes are employed relative to particular stresses. HvCBFs specifically bound monocot and dicot cor gene CRT elements in vitro under both warm and cold conditions; however, binding of HvCBF4-subgroup members was cold dependent. The temperature-independent HvCBFs activated cor gene expression at warm temperatures in transgenic Arabidopsis, while the cold-dependent HvCBF4-subgroup members of three Triticeae species did not. These results suggest that in the Triticeae - as in Arabidopsis - members of the CBF gene family function as fundamental components of the winter hardiness regulon.

摘要

CBF是拟南芥冷信号通路中的关键调节因子。我们利用重要作物二倍体小麦族模式植物大麦,来鉴定一个耐低温谷类作物中的CBF家族。我们报道,大麦含有一个庞大的CBF家族,至少由20个基因(HvCBFs)组成,这些基因包含三个多基因系统发育分组,分别命名为HvCBF1-、HvCBF3-和HvCBF4-亚组。对于HvCBF1-和HvCBF3-亚组,在冷敏感谷类作物水稻和抗寒小麦族之间,系统发育多样性水平相当。对于HvCBF4-亚组,虽然在小麦族中观察到相似的多样性水平,但仅鉴定出一个祖先水稻成员。大麦CBF与双子叶植物CBF具有许多功能特征,包括一般的初级结构域结构、冷响应转录积累、与CRT基序的特异性结合,以及在拟南芥中异位表达时诱导cor基因表达的能力。单个HvCBF基因对非生物胁迫类型和响应时间框架的反应不同,这表明相对于特定胁迫,使用了不同组的HvCBF基因。HvCBF在温暖和寒冷条件下均能在体外特异性结合单子叶和双子叶植物cor基因的CRT元件;然而,HvCBF4-亚组成员的结合依赖于低温。温度不依赖的HvCBF在转基因拟南芥的温暖温度下激活cor基因表达,而三个小麦族物种中依赖低温的HvCBF4-亚组成员则不能。这些结果表明,在小麦族中——与拟南芥一样——CBF基因家族成员作为抗寒调节子的基本组成部分发挥作用。

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