Rashid Fatimah Azzahra Ahmad, Scafaro Andrew P, Asao Shinichi, Fenske Ricarda, Dewar Roderick C, Masle Josette, Taylor Nicolas L, Atkin Owen K
Australian Research Council Centre of Excellence in Plant Energy Biology, Research School of Biology, The Australian National University, Canberra, ACT, 2601, Australia.
Department of Biology, Faculty of Science and Mathematics, Sultan Idris Education University, 35900 Tanjung Malim, Perak, Malaysia.
New Phytol. 2020 Oct;228(1):56-69. doi: 10.1111/nph.16661. Epub 2020 Jun 7.
Leaf respiration in the dark (R ) is often measured at a single time during the day, with hot-acclimation lowering R at a common measuring temperature. However, it is unclear whether the diel cycle influences the extent of thermal acclimation of R , or how temperature and time of day interact to influence respiratory metabolites. To examine these issues, we grew rice under 25°C : 20°C, 30°C : 25°C and 40°C : 35°C day : night cycles, measuring R and changes in metabolites at five time points spanning a single 24-h period. R differed among the treatments and with time of day. However, there was no significant interaction between time and growth temperature, indicating that the diel cycle does not alter thermal acclimation of R . Amino acids were highly responsive to the diel cycle and growth temperature, and many were negatively correlated with carbohydrates and with organic acids of the tricarboxylic acid (TCA) cycle. Organic TCA intermediates were significantly altered by the diel cycle irrespective of growth temperature, which we attributed to light-dependent regulatory control of TCA enzyme activities. Collectively, our study shows that environmental disruption of the balance between respiratory substrate supply and demand is corrected for by shifts in TCA-dependent metabolites.
黑暗中叶片呼吸(R)通常在一天中的某个时间进行测量,热驯化会在共同的测量温度下降低R。然而,尚不清楚昼夜循环是否会影响R的热驯化程度,或者温度和一天中的时间如何相互作用来影响呼吸代谢产物。为了研究这些问题,我们在25°C:20°C、30°C:25°C和40°C:35°C的昼夜循环条件下种植水稻,在跨越单个24小时周期的五个时间点测量R和代谢产物的变化。R在不同处理间以及一天中的不同时间存在差异。然而,时间和生长温度之间没有显著的相互作用,这表明昼夜循环不会改变R的热驯化。氨基酸对昼夜循环和生长温度高度敏感,许多氨基酸与碳水化合物以及三羧酸(TCA)循环的有机酸呈负相关。无论生长温度如何,TCA循环的有机中间体都受到昼夜循环的显著影响,我们将其归因于TCA酶活性的光依赖性调节控制。总的来说,我们的研究表明,呼吸底物供需平衡的环境破坏通过依赖TCA的代谢产物的变化得到校正。