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Temperature-regulation of plant architecture

机译:工厂建筑的温度调节

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摘要

As sessile organisms, plants have evolved great plasticity to adapt to their surrounding environment. Temperature signals regulate the timing of multiple developmental processes and have dramatic effects on plant architecture and biomass. The modulation of plant architecture by temperature is of increasing relevance with regard to crop productivity and global climate change. Unlike many other organisms, the mechanisms through which plants sense changes in ambient temperature remain elusive. Multiplestudies have identified crosstalk between ambient temperature sensing, light signaling, cold acclimation and pathogen response pathways. The regulation of plant architecture by temperature appears to involve the complex integration of multiple hormone signaling networks. Gibberellin (GA), Salicylic Acid (SA) and cytokinin have been implicated in the regulation of plant growth during chilling, whilst a predominant role for auxin is observed at high temperatures. This mini-review summarizes current knowledge of plant growth regulation by temperature and crosstalk with other abiotic and biotic stress signaling pathways.
机译:植物作为固着生物,已经进化出很大的可塑性以适应周围环境。温度信号调节多个发育过程的时间,并对植物结构和生物量产生巨大影响。温度对植物结构的调节与作物生产力和全球气候变化的相关性越来越高。与许多其他生物不同,植物通过其感知环境温度变化的机制仍然难以捉摸。多项研究已确定环境温度感测,光信号传导,冷驯化和病原体反应途径之间的串扰。温度对植物结构的调节似乎涉及多种激素信号网络的复杂整合。赤霉素(GA),水杨酸(SA)和细胞分裂素已牵涉到冷却过程中植物生长的调节,而在高温下观察到生长素的主要作用。这份小型回顾总结了当前通过温度和与其他非生物和生物胁迫信号传导途径的串扰来调控植物生长的知识。

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