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NAC transcription factors in plant multiple abiotic stress responses: progress and prospects

机译:植物多重非生物胁迫响应中的NAC转录因子:研究进展与展望

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Abiotic stresses adversely affect plant growth and agricultural productivity. According to the current climate prediction models, crop plants will face a greater number of environmental stresses, which are likely to occur simultaneously in the future. So it is very urgent to breed broad-spectrum tolerant crops in order to meet an increasing demand for food productivity due to global population increase. As one of the largest families of transcription factors (TFs) in plants, NAC TFs play vital roles in regulating plant growth and development processes including abiotic stress responses. Lots of studies indicated that many stress-responsive NAC TFs had been used to improve stress tolerance in crop plants by genetic engineering. In this review, the recent progress in NAC TFs was summarized, and the potential utilization of NAC TFs in breeding abiotic stress tolerant transgenic crops was also be discussed. In view of the complexity of field conditions and the specificity in multiple stress responses, we suggest that the NAC TFs commonly induced by multiple stresses should be promising candidates to produce plants with enhanced multiple stress tolerance. Furthermore, the field evaluation of transgenic crops harboring NAC genes, as well as the suitable promoters for minimizing the negative effects caused by over-expressing some NAC genes, should be considered.
机译:非生物胁迫对植物生长和农业生产力产生不利影响。根据当前的气候预测模型,农作物将面临更多的环境压力,将来可能会同时发生。因此,迫切需要培育广谱耐性作物,以满足全球人口增长带来的对粮食生产力的日益增长的需求。作为植物中最大的转录因子家族(TFs)之一,NAC TFs在调节植物生长和发育过程(包括非生物胁迫响应)中起着至关重要的作用。许多研究表明,通过基因工程,许多胁迫响应性NAC TF已被用于改善作物的胁迫耐受性。在这篇综述中,总结了NAC TFs的最新进展,并讨论了NAC TFs在育种非生物耐性转基因作物中的潜在利用。鉴于田间条件的复杂性和多重胁迫响应的特异性,我们建议通常由多重胁迫诱导的NAC TFs有望成为生产具有更高多重胁迫耐受性的植物的候选者。此外,应考虑对具有NAC基因的转基因农作物进行现场评估,并考虑适当的启动子,以最大程度地减少因过度表达某些NAC基因而引起的负面影响。

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