Banerjee Aditya, Roychoudhury Aryadeep
Postgraduate Department of Biotechnology, St. Xavier's College (Autonomous), 30 Mother Teresa Sarani, Kolkata, West Bengal 700016, India.
ScientificWorldJournal. 2015;2015:807560. doi: 10.1155/2015/807560. Epub 2015 Mar 24.
WRKY proteins are emerging players in plant signaling and have been thoroughly reported to play important roles in plants under biotic stress like pathogen attack. However, recent advances in this field do reveal the enormous significance of these proteins in eliciting responses induced by abiotic stresses. WRKY proteins act as major transcription factors, either as positive or negative regulators. Specific WRKY factors which help in the expression of a cluster of stress-responsive genes are being targeted and genetically modified to induce improved abiotic stress tolerance in plants. The knowledge regarding the signaling cascade leading to the activation of the WRKY proteins, their interaction with other proteins of the signaling pathway, and the downstream genes activated by them are altogether vital for justified targeting of the WRKY genes. WRKY proteins have also been considered to generate tolerance against multiple abiotic stresses with possible roles in mediating a cross talk between abiotic and biotic stress responses. In this review, we have reckoned the diverse signaling pattern and biological functions of WRKY proteins throughout the plant kingdom along with the growing prospects in this field of research.
WRKY蛋白是植物信号传导中新兴的参与者,并且已有充分报道表明它们在植物遭受病原体攻击等生物胁迫时发挥重要作用。然而,该领域的最新进展确实揭示了这些蛋白在引发非生物胁迫诱导的反应中的巨大意义。WRKY蛋白作为主要转录因子,既可以作为正调控因子,也可以作为负调控因子。有助于一组胁迫响应基因表达的特定WRKY因子正被作为靶点进行基因改造,以提高植物对非生物胁迫的耐受性。关于导致WRKY蛋白激活的信号级联、它们与信号通路中其他蛋白的相互作用以及由它们激活的下游基因的知识,对于合理靶向WRKY基因至关重要。WRKY蛋白也被认为可以产生对多种非生物胁迫的耐受性,并可能在介导非生物胁迫和生物胁迫反应之间的相互作用中发挥作用。在这篇综述中,我们梳理了整个植物界WRKY蛋白多样的信号传导模式和生物学功能,以及该研究领域不断增长的前景。