Baldoni Elena, Genga Annamaria, Cominelli Eleonora
Dipartimento di Scienze Agrarie e Ambientali-Produzione, Territorio, Agroenergia, Università degli Studi di Milano, Via Celoria 2, 20133 Milano, Italy.
Istituto di Biologia e Biotecnologia Agraria, CNR, Via Bassini 15, 20133 Milano, Italy.
Int J Mol Sci. 2015 Jul 13;16(7):15811-51. doi: 10.3390/ijms160715811.
Water scarcity is one of the major causes of poor plant performance and limited crop yields worldwide and it is the single most common cause of severe food shortage in developing countries. Several molecular networks involved in stress perception, signal transduction and stress responses in plants have been elucidated so far. Transcription factors are major players in water stress signaling. In recent years, different MYB transcription factors, mainly in Arabidopsis thaliana (L.) Heynh. but also in some crops, have been characterized for their involvement in drought response. For some of them there is evidence supporting a specific role in response to water stress, such as the regulation of stomatal movement, the control of suberin and cuticular waxes synthesis and the regulation of flower development. Moreover, some of these genes have also been characterized for their involvement in other abiotic or biotic stresses, an important feature considering that in nature, plants are often simultaneously subjected to multiple rather than single environmental perturbations. This review summarizes recent studies highlighting the role of the MYB family of transcription factors in the adaptive responses to drought stress. The practical application value of MYBs in crop improvement, such as stress tolerance engineering, is also discussed.
水资源短缺是全球范围内植物生长不良和作物产量受限的主要原因之一,也是发展中国家严重粮食短缺最常见的单一原因。到目前为止,已经阐明了植物中涉及胁迫感知、信号转导和胁迫反应的几个分子网络。转录因子是水分胁迫信号传导中的主要参与者。近年来,不同的MYB转录因子,主要在拟南芥中,但也在一些作物中,已被鉴定参与干旱反应。对于其中一些转录因子,有证据支持其在响应水分胁迫中发挥特定作用,例如调节气孔运动、控制木栓质和角质蜡的合成以及调节花的发育。此外,其中一些基因还被鉴定参与其他非生物或生物胁迫,考虑到在自然界中,植物经常同时受到多种而非单一的环境扰动,这是一个重要特征。本综述总结了近期研究,突出了MYB转录因子家族在干旱胁迫适应性反应中的作用。还讨论了MYB在作物改良中的实际应用价值,如胁迫耐受性工程。