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生态学杂志 ›› 2022, Vol. 41 ›› Issue (4): 777-783.doi: 10.13292/j.1000-4890.202203.001

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昼夜不对称变暖对陆地生态系统的影响

朱军涛*,郑家禾   

  1. (拉萨高原生态试验站, 生态系统网络观测与模拟重点实验室, 中国科学院地理科学与资源研究所, 北京 100101)
  • 出版日期:2022-04-10 发布日期:2022-09-09

Effects of diurnal asymmetric warming on terrestrial ecosystems.

ZHU Jun-tao*, ZHENG Jia-he   

  1. (Lhasa Plateau Ecosystem Research Station, Key Laboratory of Ecosystem Network Observation and Modeling, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing 100101, China).
  • Online:2022-04-10 Published:2022-09-09

摘要: 昼夜不对称变暖指的是白天和夜间的增温幅度不同,夜间温度升高的比白天快,全球大部分地区存在昼夜不对称变暖的现象。以往关于气候变暖对生态系统影响的研究大多建立在全天对等增温的基础上,缺乏对白天和夜间增温不对称性影响的深入研究。一些研究表明,白天增温和夜间增温对生态系统的作用机制不同,进而产生不同的影响。本文梳理了近期的研究进展,综述了昼夜不对称变暖对植物物候、生态系统碳循环、生物群落以及植被生产力等方面的特异性影响及其机理机制,并引述了不对称变暖对高寒生态系统碳循环可能产生的影响。在总结研究基础上,提出未来关于不对称变暖的影响研究应重视一些生态学规律的普适性验证,例如夜间增温下“光合补偿作用”,关注高寒冻土区土壤的碳积累和释放过程,深入剖析生物多样性与生态系统生产力稳定性间的关系等,提升我们对全球气候变暖影响的理解和认知。

 

关键词: 昼夜不对称变暖, 植物物候, 生态系统碳循环, 生物群落, 植被生产力

Abstract: Asymmetric warming refers to the difference in temperature increase between day and night. Night temperature is increasing faster than day temperature. This phenomenon has been discovered in most parts of the world. However, most of the previous studies were based on the equivalent warming throughout the day, which did not consider the different effects of daytime and nighttime warming. Some studies have showed that daytime and nighttime warming lead to various effects due to different mechanisms. We reviewed the effects of asymmetric warming on plant phenology, ecosystem carbon cycle, biological community, and primary productivity as well as the mechanisms. We summarized the possible effects of asymmetric warming on carbon cycle of alpine ecosystems. Based on the current researches, we propose that future research on asymmetric warming should be paid attention to validate the universality of some ecological laws, such as “photosynthetic compensation” under nighttime warming. Furthermore, we should pay more attention to soil carbon accumulation and release in alpine permafrost regions, and the relationships between biodiversity and the stability of ecosystem productivity. Therefore, we will acquire more understanding and cognition of the impacts of global warming.

Key words: diurnal asymmetric warming, plant phenology, ecosystem carbon cycle, biological community, vegetation productivity.