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Genome-Wide Analysis of the bZIP Gene Family Identifies Two ABI5-Like bZIP Transcription Factors BrABI5a and BrABI5b as Positive Modulators of ABA Signalling in Chinese Cabbage

机译:bZIP基因家族的全基因组分析确定了两个类似ABI5的bZIP转录因子BrABI5a和BrABI5b作为大白菜ABA信号的正调控因子

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摘要

bZIP (basic leucine zipper) transcription factors coordinate plant growth and development and control responses to environmental stimuli. The genome of Chinese cabbage (Brassica rapa) encodes 136 putative bZIP transcription factors. The bZIP transcription factors in Brassica rapa (BrbZIP) are classified into 10 subfamilies. Phylogenetic relationship analysis reveals that subfamily A consists of 23 BrbZIPs. Two BrbZIPs within subfamily A, Bra005287 and Bra017251, display high similarity to ABI5 (ABA Insensitive 5). Expression of subfamily A BrbZIPs, like BrABI5a (Bra005287/BrbZIP14) and BrABI5b (Bra017251/BrbZIP13), are significantly induced by the plant hormone ABA. Subcellular localization assay reveal that both BrABI5a and BrABI5b have a nuclear localization. BrABI5a and BrABI5b could directly stimulate ABA Responsive Element-driven HIS (a HIS3 reporter gene, which confers His prototrophy) or LUC (LUCIFERASE) expression in yeast and Arabidopsis protoplast. Deletion of the bZIP motif abolished BrABI5a and BrABI5b transcriptional activity. The ABA insensitive phenotype of Arabidopsis abi5-1 is completely suppressed in transgenic lines expressing BrABI5a or BrABI5b. Overall, these results suggest that ABI5 orthologs, BrABI5a and BrABI5b, have key roles in ABA signalling in Chinese cabbage.
机译:bZIP(碱性亮氨酸拉链)转录因子协调植物的生长和发育,并控制对环境刺激的反应。大白菜(Brassica rapa)的基因组编码136个假定的bZIP转录因子。甘蓝型油菜中的bZIP转录因子(BrbZIP)分为10个亚家族。系统发育关系分析表明,亚家族A由23个BrbZIP组成。亚家族A中的两个BrbZIP,即Bra005287和Bra017251,与ABI5(ABA不敏感5)具有高度相似性。植物激素ABA显着诱导亚家族A BrbZIPs的表达,如BrABI5a(Bra005287 / BrbZIP14)和BrABI5b(Bra017251 / BrbZIP13)。亚细胞定位测定表明BrABI5a和BrABI5b都具有核定位。 BrABI5a和BrABI5b可以直接刺激ABA响应元件驱动的HIS(HIS3报告基因,赋予其原营养)或LUC(LUCIFERASE)在酵母和拟南芥原生质体中的表达。 bZIP基序的删除取消了BrABI5a和BrABI5b的转录活性。在表达BrABI5a或BrABI5b的转基因株系中,拟南芥abi5-1的ABA不敏感表型被完全抑制。总体而言,这些结果表明,ABI5直系同源物BrABI5a和BrABI5b在大白菜ABA信号传导中起关键作用。

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