Indian Institute of Science Education and Research, Berhampur (IISER Berhampur), Engineering School Road, Berhampur, 760010, Odisha, India.
Plant Cell Rep. 2024 Jan 2;43(1):27. doi: 10.1007/s00299-023-03083-w.
In this review, we made an attempt to create a holistic picture of plant response to a rising temperature environment and its impact by covering all aspects from temperature perception to thermotolerance. This comprehensive account describing the molecular mechanisms orchestrating these responses and potential mitigation strategies will be helpful for understanding the impact of global warming on plant life. Organisms need to constantly recalibrate development and physiology in response to changes in their environment. Climate change-associated global warming is amplifying the intensity and periodicity of these changes. Being sessile, plants are particularly vulnerable to variations happening around them. These changes can cause structural, metabolomic, and physiological perturbations, leading to alterations in the growth program and in extreme cases, plant death. In general, plants have a remarkable ability to respond to these challenges, supported by an elaborate mechanism to sense and respond to external changes. Once perceived, plants integrate these signals into the growth program so that their development and physiology can be modulated befittingly. This multifaceted signaling network, which helps plants to establish acclimation and survival responses enabled their extensive geographical distribution. Temperature is one of the key environmental variables that affect all aspects of plant life. Over the years, our knowledge of how plants perceive temperature and how they respond to heat stress has improved significantly. However, a comprehensive mechanistic understanding of the process still largely elusive. This review explores how an increase in the global surface temperature detrimentally affects plant survival and productivity and discusses current understanding of plant responses to high temperature (HT) and underlying mechanisms. We also highlighted potential resilience attributes that can be utilized to mitigate the impact of global warming.
在这篇综述中,我们试图从温度感知到耐热性等各个方面来全面描绘植物对升温环境的反应及其影响。描述这些反应的分子机制和潜在缓解策略的全面说明将有助于理解全球变暖对植物生命的影响。生物体需要不断地根据环境变化重新调整发育和生理机能。与气候变化相关的全球变暖正在加剧这些变化的强度和周期性。由于植物是固定不动的,它们特别容易受到周围变化的影响。这些变化会导致结构、代谢组学和生理学上的紊乱,导致生长程序的改变,在极端情况下,甚至导致植物死亡。总的来说,植物具有非凡的能力来应对这些挑战,这得益于一种精细的机制来感知和响应外部变化。一旦感知到,植物就会将这些信号整合到生长程序中,从而可以适当调节其发育和生理机能。这个多方面的信号网络帮助植物建立适应和生存反应,使它们能够广泛分布在各地。温度是影响植物生命各个方面的关键环境变量之一。多年来,我们对植物如何感知温度以及它们如何应对热应激的认识有了显著提高。然而,对这一过程的全面机制理解仍然很大程度上难以捉摸。这篇综述探讨了全球表面温度升高如何对植物的生存和生产力产生不利影响,并讨论了植物对高温(HT)的反应和潜在机制的现有理解。我们还强调了可以用来减轻全球变暖影响的潜在弹性属性。