Collins Adam D, Ryan Michael G, Adams Henry D, Dickman Lee Turin, Garcia-Forner Núria, Grossiord Charlotte, Powers Heath H, Sevanto Sanna, McDowell Nate G
Earth and Environmental Sciences Division, Los Alamos National Laboratory, Los Alamos, New Mexico, USA.
Department of Ecosystem Science and Sustainability, Colorado State University, Fort Collins, Colorado, USA.
Plant Cell Environ. 2021 Dec;44(12):3623-3635. doi: 10.1111/pce.14183. Epub 2021 Oct 1.
Short-term plant respiration (R) increases exponentially with rising temperature, but drought could reduce respiration by reducing growth and metabolism. Acclimation may alter these responses. We examined if species with different drought responses would differ in foliar R response to +4.8°C temperature and -45% precipitation in a field experiment with mature piñon and juniper trees, and if any differences between species were related to differences in photosynthesis rates, shoot growth and nonstructural carbohydrates (NSCs). Short-term foliar R had a Q of 1.6 for piñon and 2.6 for juniper. Piñon foliar R did not respond to the +4.8°C temperatures, but R increased 1.4× for juniper. Across treatments, piñon foliage had higher growth, lower NSC content, 29% lower photosynthesis rates, and 44% lower R than juniper. Removing 45% precipitation had little impact on R for either species. Species differences in the response of R under elevated temperature were related to substrate availability and stomatal response to leaf water potential. Despite not acclimating to the higher temperature and having higher R than piñon, greater substrate availability in juniper suggests it could supply respiratory demand for much longer than piñon. Species responses will be critical in ecosystem response to a warmer climate.
短期植物呼吸作用(R)随温度升高呈指数增长,但干旱会通过降低生长和代谢来减少呼吸作用。驯化可能会改变这些反应。在一项针对成熟矮松和杜松的田间试验中,我们研究了具有不同干旱反应的物种在叶片呼吸对温度升高4.8°C和降水量减少45%的反应上是否存在差异,以及物种之间的任何差异是否与光合速率、枝条生长和非结构性碳水化合物(NSCs)的差异有关。矮松的短期叶片呼吸Q值为1.6,杜松为2.6。矮松的叶片呼吸对温度升高4.8°C没有反应,但杜松的呼吸作用增加了1.4倍。在所有处理中,矮松的叶片生长更高,NSC含量更低,光合速率比杜松低29%,呼吸作用比杜松低44%。去除45%的降水量对这两个物种的呼吸作用影响不大。高温下呼吸反应的物种差异与底物可用性和气孔对叶片水势的反应有关。尽管杜松没有适应更高的温度且呼吸作用比矮松高,但杜松中更高的底物可用性表明它能够比矮松更长时间地满足呼吸需求。物种反应对于生态系统对气候变暖的反应至关重要。