Castelán-Muñoz Natalia, Herrera Joel, Cajero-Sánchez Wendy, Arrizubieta Maite, Trejo Carlos, García-Ponce Berenice, Sánchez María de la Paz, Álvarez-Buylla Elena R, Garay-Arroyo Adriana
Laboratorio de Genética Molecular, Epigenética y Desarrollo de Plantas, Instituto de Ecología, Universidad Nacional Autónoma de México, Mexico City, Mexico.
Postgrado en Recursos Genéticos y Productividad-Fisiología Vegetal, Colegio de Postgraduados, Texcoco, Mexico.
Front Plant Sci. 2019 Jul 10;10:853. doi: 10.3389/fpls.2019.00853. eCollection 2019.
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.
植物作为固着生物,通过可塑性发育和生长反应来适应不同的胁迫条件,如干旱、盐度、极端温度和养分缺乏。根据胁迫的强度及其施加的发育阶段,胁迫条件可能会在形态、生理、生化和分子水平上引发广泛的反应。转录因子是调控网络的关键组成部分,这些网络整合环境信号并协调细胞水平的反应,包括那些暗示胁迫条件的反应。尽管已有多项研究开始将MADS-box基因家族的各种成员鉴定为参与不同类型胁迫反应的重要分子成分,但我们仍然缺乏对它们在这些过程中作用的整体认识。在本综述中,我们分析了MADS-box基因家族成员在几种植物不同发育过程中对干旱、盐、冷、热和氧化胁迫条件的响应功能及调控。此外,我们认为MADS-box基因是参与植物胁迫反应和植物对环境条件季节性变化响应的发育可塑性的基因调控网络的关键组成部分。