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WRKY: its structure, evolutionary relationship, DNA-binding selectivity, role in stress tolerance and development of plants

机译:WRKY:其结构,进化关系,DNA结合选择性,在胁迫耐受性和植物发育中的作用

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摘要

The plants during their sessile, autotrophic lifestyle are affected by wide range of environmental signals and regulate complex patterns of gene expression with the help of transcription factors. The WRKY transcription factors are considered as plant-specific, however, are also reported in protist, slime mold, fern and pine. The WRKY name is coined from its highly conserved 60 amino acid long WRKY domain. These TFs show W box specific binding which is also influenced by the W box flanking sequence. During evolution, the family has expanded in different patterns to facilitate distinct cellular, developmental, and physiological role in plants. The WRKY TFs form one of the largest families in flowering plants, and play a broad spectrum regulatory role as positive and negative regulators of plant defense regulation, abiotic stresses and also involved in growth and development of plants.
机译:植物在其固执,自养的生活方式中会受到各​​种环境信号的影响,并借助转录因子调节基因表达的复杂模式。 WRKY转录因子被认为是植物特有的,但是,也有报道在原生生物,粘霉菌,蕨类植物和松树中。 WRKY名称是由其高度保守的60个氨基酸长的WRKY结构域创造的。这些TF显示出W盒特异性结合,其也受到W盒侧翼序列的影响。在进化过程中,该家族以不同的模式扩展,以促进植物中独特的细胞,发育和生理作用。 WRKY TFs是开花植物中最大的家族之一,在植物防御调节,非生物胁迫以及植物生长和发育的正负调节剂中发挥着广泛的调节作用。

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