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尽管无法追踪最佳温度,但北极针叶树随着变暖而保持碳吸收
Mirindi Eric Dusenge1,2,3, Jeffrey M Warren4, Peter B Reich5,6,7
1Department of Biology, Mount Allison University, Sackville, NB, E4L 1E4, Canada. mdusenge@mta.ca.
Nature communications
|August 3, 2023
概括
暖化增加了北极针叶树的光合作用最佳温度,但不足以匹配温度上升. 这些树木仍然可以适应气候,保持碳吸收,尽管热量转移不足.
科学领域:
- 生态生态学 生态生态学
- 植物生理学 植物生理学
- 气候变化生物学 气候变化生物学
背景情况:
- 全球气温上升对植物生理过程产生影响.
- 众所周知,光合作用热最佳值 (ToptA) 随着变暖而变化,但在高二氧化碳水平下种植的野外树木的数据有限.
研究的目的:
- 为了调查成熟的北方针叶树中的ToptA是否与21世纪预计的气体CO2升高的气候变暖保持同步.
- 评估气候变暖和二氧化碳增加对生长温度下的净光合作用速率的影响.
主要方法:
- 利用了整个生态系统的变暖实验,控制了环境和升高的二氧化碳水平.
- 在实验性加热下,在成熟的北方针叶树 (杉和) 中监测的ToptA变化.
- 在平均生长温度下计算的净光合作用速率.
主要成果:
- 极地针叶树的ToptA随着实验变暖而增加.
- 在ToptA (0.26-0.35°C每1°C升温) 的转变落后于变暖的速度.
- 在增长温度下的净光合作用随着二氧化碳升温而增加,但在其他处理中保持不变.
结论:
- 玻里亚针叶树ToptA在高碳二氧化碳下不会完全适应变暖.
- 尽管ToptA变化不足,但这些物种表现出热适应能力,在未来的温度下保持碳吸收.
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