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环境湿度调节实验性增温对藏北高寒草甸植被指数和生物量生产的影响。

Environmental Humidity Regulates Effects of Experimental Warming on Vegetation Index and Biomass Production in an Alpine Meadow of the Northern Tibet.

作者信息

Fu Gang, Shen Zhen Xi

机构信息

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.

出版信息

PLoS One. 2016 Oct 31;11(10):e0165643. doi: 10.1371/journal.pone.0165643. eCollection 2016.

Abstract

Uncertainty about responses of vegetation index, aboveground biomass (AGB) and gross primary production (GPP) limits our ability to predict how climatic warming will influence plant growth in alpine regions. A field warming experiment was conducted in an alpine meadow at a low (4313 m), mid- (4513 m) and high elevation (4693 m) in the Northern Tibet since May 2010. Growing season vapor pressure deficit (VPD), soil temperature (Ts) and air temperature (Ta) decreased with increasing elevation, while growing season precipitation, soil moisture (SM), normalized difference vegetation index (NDVI), soil adjusted vegetation index (SAVI), AGB and GPP increased with increasing elevation. The growing season Ta, Ts and VPD in 2015 was greater than that in 2014, while the growing season precipitation, SM, NDVI, SAVI, AGB and GPP in 2015 was lower than that in 2014, respectively. Compared to the mean air temperature and precipitation during the growing season in 1963-2015, it was a warmer and wetter year in 2014 and a warmer and drier year in 2015. Experimental warming increased growing season Ts, Ta,VPD, but decreased growing season SM in 2014-2015 at all the three elevations. Experimental warming only reduced growing season NDVI, SAVI, AGB and GPP at the low elevation in 2015. Growing season NDVI, SAVI, AGB and GPP increased with increasing SM and precipitation, but decreased with increasing VPD, indicating vegetation index and biomass production increased with environmental humidity. The VPD explained more variation of growing season NDVI, SAVI, AGB and GPP compared to Ts, Ta and SM at all the three elevations. Therefore, environmental humidity regulated the effect of experimental warming on vegetation index and biomass production in alpine meadows on the Tibetan Plateau.

摘要

植被指数、地上生物量(AGB)和总初级生产力(GPP)的响应存在不确定性,这限制了我们预测气候变暖将如何影响高寒地区植物生长的能力。自2010年5月起,在藏北的一个低海拔(4313米)、中海拔(4513米)和高海拔(4693米)的高寒草甸开展了一项田间增温实验。生长季水汽压亏缺(VPD)、土壤温度(Ts)和气温(Ta)随海拔升高而降低,而生长季降水量、土壤湿度(SM)、归一化植被指数(NDVI)、土壤调整植被指数(SAVI)、AGB和GPP随海拔升高而增加。2015年的生长季Ta、Ts和VPD高于2014年,而2015年的生长季降水量、SM、NDVI、SAVI、AGB和GPP分别低于2014年。与1963 - 2015年生长季的平均气温和降水量相比,2014年是温暖湿润的一年,2015年是温暖干燥的一年。在2014 - 2015年,实验增温使所有三个海拔的生长季Ts、Ta、VPD升高,但使生长季SM降低。实验增温仅在2015年降低了低海拔地区的生长季NDVI、SAVI、AGB和GPP。生长季NDVI、SAVI、AGB和GPP随SM和降水量增加而增加,但随VPD增加而降低,表明植被指数和生物量生产随环境湿度增加。在所有三个海拔,与Ts、Ta和SM相比,VPD对生长季NDVI、SAVI、AGB和GPP的变化解释力更强。因此,环境湿度调节了实验增温对青藏高原高寒草甸植被指数和生物量生产的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f576/5087907/f1199671ef31/pone.0165643.g001.jpg

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