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[实验性增温对中国青藏高原东部高寒灌丛土壤氮转化的影响]

[Effects of experimental warming on soil nitrogen transformation in alpine scrubland of eastern Qinghai-Tibet Plateau, China].

作者信息

Liu Mei, Ma Zhi-Liang

机构信息

Ecological Security and Protection Key Laboratory of Sichuan Province, Mianyang Normal University, Mianyang 621000, Sichuan, China.

College of Life Science, China West Normal University, Nanchong 637009, Sichuan, China.

出版信息

Ying Yong Sheng Tai Xue Bao. 2021 Jun;32(6):2045-2052. doi: 10.13287/j.1001-9332.202106.007.

Abstract

We investigated the effects of warming on soil nitrogen cycling process in alpine scrub ecosystem, with an simulated warming experiment at alpine scrubland on the eastern Qinghai-Tibet Plateau, China. We examined the responses of soil nitrogen transformation rate to warming in three critical periods (the early, late, and non-growing seasons). The results showed that warming increased soil temperature by 1.2 ℃, but decreased soil moisture by 2.5%. The soil net nitrogen mineralization rates (, ammonification and nitrification) in the growing season were significantly higher than those in the non-growing season. The rates of soil net nitrogen fixation in the non-growing season were significantly higher than that in the growing season. Soil nitrification was the major process of soil nitrogen transformation in the early growing season, while soil ammonification was the major one in the late growing season and non-growing season. The effects of experimental warming on soil nitrogen transformation differed among those three periods. Experimental warming significantly increased soil net ammonification, nitrification, nitrogen mine-ralization and fixation in the early growing season, and enhanced soil net nitrification and nitrogen mineralization in the non-growing season. However, warming significantly decreased soil net nitrification, nitrogen mineralization and fixation in the late growing season and soil net ammonification in the non-growing season. Moreover, warming did not affect soil net nitrogen fixation rates in the non-growing season and soil net nitrification rates in the late growing season. Future climate warming would significantly change soil nitrogen transformation by accelerating soil nitrogen cycling in the alpine scrub ecosystem on the eastern Qinghai-Tibet Plateau.

摘要

我们在中国青藏高原东部高寒灌丛草甸开展模拟增温实验,研究了增温对高寒灌丛生态系统土壤氮循环过程的影响。我们考察了土壤氮转化速率在三个关键时期(生长季前期、后期和非生长季)对增温的响应。结果表明,增温使土壤温度升高了1.2℃,但土壤湿度降低了2.5%。生长季土壤净氮矿化速率(氨化作用和硝化作用)显著高于非生长季。非生长季土壤净固氮速率显著高于生长季。生长季前期土壤硝化作用是土壤氮转化的主要过程,而生长季后期和非生长季土壤氨化作用是主要过程。实验增温对土壤氮转化的影响在这三个时期有所不同。实验增温显著提高了生长季前期土壤净氨化作用、硝化作用、氮矿化作用和固氮作用,增强了非生长季土壤净硝化作用和氮矿化作用。然而,增温显著降低了生长季后期土壤净硝化作用、氮矿化作用和固氮作用以及非生长季土壤净氨化作用。此外,增温对非生长季土壤净固氮速率和生长季后期土壤净硝化速率没有影响。未来气候变暖将通过加速青藏高原东部高寒灌丛生态系统的土壤氮循环,显著改变土壤氮转化。

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