生物
非生物胁迫
基因家族
基因调控网络
基因
转录因子
MADS箱
发育可塑性
非生物成分
功能(生物学)
环境压力
遗传学
转录组
进化生物学
可塑性
生态学
基因表达
拟南芥
热力学
物理
突变体
作者
Natalia Castelán-Muñoz,Joel Herrera,Wendy Cajero-Sánchez,Maite Arrizubieta,Carlos Trejo,Berenice García‐Ponce,María de la Paz Sánchez,Elena Álvarez‐Buylla,Adriana Garay‐Arroyo
标识
DOI:10.3389/fpls.2019.00853
摘要
Plants, as sessile organisms, adapt to different stressful conditions, such as drought, salinity, extreme temperatures, and nutrient deficiency, via plastic developmental and growth responses. Depending on the intensity and the developmental phase in which it is imposed, a stress condition may lead to a broad range of responses at the morphological, physiological, biochemical, and molecular levels. Transcription factors are key components of regulatory networks that integrate environmental cues and concert responses at the cellular level, including those that imply a stressful condition. Despite the fact that several studies have started to identify various members of the MADS-box gene family as important molecular components involved in different types of stress responses, we still lack an integrated view of their role in these processes. In this review, we analyze the function and regulation of MADS-box gene family members in response to drought, salt, cold, heat, and oxidative stress conditions in different developmental processes of several plants. In addition, we suggest that MADS-box genes are key components of gene regulatory networks involved in plant responses to stress and plant developmental plasticity in response to seasonal changes in environmental conditions.
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