Plant Resilience Institute, Michigan State University, East Lansing, MI, 48824, USA.
Department of Biology, Western University, N6A 3K7, London, ON, Canada.
Plant Physiol. 2023 May 31;192(2):710-727. doi: 10.1093/plphys/kiad167.
Respiration plays a key role in the terrestrial carbon cycle and is a fundamental metabolic process in all plant tissues and cells. We review respiration from the perspective of plants that grow in their natural habitat and how it is influenced by wide-ranging elements at different scales, from metabolic substrate availability to shifts in climate. Decades of field-based measurements have honed our understanding of the biological and environmental controls on leaf, root, stem, and whole-organism respiration. Despite this effort, there remain gaps in our knowledge within and across species and ecosystems, especially in more challenging-to-measure tissues like roots. Recent databases of respiration rates and associated leaf traits from species representing diverse biomes, plant functional types, and regional climates have allowed for a wider-lens view at modeling this important CO2 flux. We also re-analyze published data sets to show that maximum leaf respiration rates (Rmax) in species from around the globe are related both to leaf economic traits and environmental variables (precipitation and air temperature), but that root respiration does not follow the same latitudinal trends previously published for leaf data. We encourage the ecophysiological community to continue to expand their study of plant respiration in tissues that are difficult to measure and at the whole plant and ecosystem levels to address outstanding questions in the field.
呼吸作用在陆地碳循环中起着关键作用,是所有植物组织和细胞的基本代谢过程。我们从生长在自然栖息地的植物的角度来回顾呼吸作用,以及它如何受到不同尺度的广泛因素的影响,从代谢底物的可用性到气候的变化。数十年来的实地测量工作使我们深入了解了叶片、根系、茎和整个生物体呼吸作用的生物和环境控制因素。尽管我们已经做了这些努力,但在物种内和跨物种以及生态系统中,我们的知识仍然存在空白,特别是在更难测量的组织如根系中。最近的数据库中包含了来自不同生物群落、植物功能类型和区域气候的物种的呼吸速率和相关叶片特征的数据,这使得我们可以更广泛地了解模拟这种重要 CO2 通量的模型。我们还重新分析了已发表的数据,结果表明,来自全球各地的物种的最大叶片呼吸速率(Rmax)与叶片经济特征和环境变量(降水和空气温度)有关,但与以前发表的叶片数据的相同纬度趋势不同,根呼吸作用并没有遵循。我们鼓励生理生态学家社区继续扩大对难以测量的组织以及整个植物和生态系统水平的植物呼吸作用的研究,以解决该领域的悬而未决的问题。