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首页> 外文期刊>Plant biology >BrRZFP1 a Brassica rapa C3HC4-type RING zinc finger protein involved in cold, salt and dehydration stress
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BrRZFP1 a Brassica rapa C3HC4-type RING zinc finger protein involved in cold, salt and dehydration stress

机译:BrRZFP1是一种甘蓝型油菜C3HC4型RING锌指蛋白,参与寒冷,盐分和脱水胁迫

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C3HC4-type RING zinc finger proteins are known to be essential in the regulation of plant processes, including responses to abiotic stress. Here, we identify, clone and examine the first C3HC4-type RING zinc finger protein (BrRZFP1) from Brassica rapa under stress conditions. Phylogenetic analysis of BrRZFP1 revealed strong sequence similarity to C3HC4-type zinc finger proteins from Arabidopsis that are induced by abiotic stresses. Diverse environmental stresses, including salt and cold, were found to induce BrRZFP1 transcripts greater than eightfold in B. rapa. Additional strong induction was shown of the stress hormone abscisic acid, together suggesting that BrRZFP1 could play a role as a general stress modulator. Similar profiles of induction for each of these stresses was found in both root and shoot tissues, although at much higher levels in roots. Constitutive expression of BrRZFP1 in Nicotiana tabacum was conducted to further analyse how changes in gene expression levels would affect plant stress responses. BrRZFP1 overexpression conferred increased tolerance to cold, salt and dehydration stresses. This was observed in several assays examining growth status throughout development, including increased germination, fresh weight and length of shoots and roots, as well as enhanced chlorophyll retention. These results suggest that the transcription factor BrRZFP1 is an important determinant of stress response in plants and that changes in its expression level in plants could increase stress tolerance.
机译:已知C3HC4型RING锌指蛋白在调节植物过程(包括对非生物胁迫的反应)中至关重要。在这里,我们确定,克隆和检查在压力条件下来自甘蓝的第一个C3HC4型RING锌指蛋白(BrRZFP1)。 BrRZFP1的系统发育分析表明,与非拟南芥诱导的拟南芥C3HC4型锌指蛋白具有很强的序列相似性。发现各种环境胁迫,包括盐和寒冷,都可以诱导B. rapa中的BrRZFP1转录本大于八倍。显示了对应激激素脱落酸的额外强诱导作用,共同表明BrRZFP1可以作为一般应激调节剂发挥作用。虽然在根部和根部组织中都发现了类似的诱导方式,但在根部和芽组织中均如此。在烟草中进行了BrRZFP1的组成型表达,以进一步分析基因表达水平的变化如何影响植物的胁迫反应。 BrRZFP1过表达赋予了对寒冷,盐分和脱水胁迫的耐受性。在几种检测整个发育过程中生长状态的试验中观察到了这一点,包括发芽增加,鲜重和芽和根的长度以及叶绿素保留增强。这些结果表明,转录因子BrRZFP1是植物逆境反应的重要决定因素,其在植物中表达水平的变化可能会增加逆境耐受性。

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