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澳大利亚热带稀树草原中树木和草本植物生产力的季节性、年际和年代际驱动因素。

Seasonal, interannual and decadal drivers of tree and grass productivity in an Australian tropical savanna.

机构信息

School of Earth, Atmosphere and Environment, Monash University, Clayton, Vic., Australia.

Genomic Ecology of Global Change, Carl R. Woese Institute for Genomic Biology, University of Illinois, Urbana, IL, USA.

出版信息

Glob Chang Biol. 2018 Jun;24(6):2530-2544. doi: 10.1111/gcb.14072. Epub 2018 Feb 28.

Abstract

Tree-grass savannas are a widespread biome and are highly valued for their ecosystem services. There is a need to understand the long-term dynamics and meteorological drivers of both tree and grass productivity separately in order to successfully manage savannas in the future. This study investigated the interannual variability (IAV) of tree and grass gross primary productivity (GPP) by combining a long-term (15 year) eddy covariance flux record and model estimates of tree and grass GPP inferred from satellite remote sensing. On a seasonal basis, the primary drivers of tree and grass GPP were solar radiation in the wet season and soil moisture in the dry season. On an interannual basis, soil water availability had a positive effect on tree GPP and a negative effect on grass GPP. No linear trend in the tree-grass GPP ratio was observed over the 15-year study period. However, the tree-grass GPP ratio was correlated with the modes of climate variability, namely the Southern Oscillation Index. This study has provided insight into the long-term contributions of trees and grasses to savanna productivity, along with their respective meteorological determinants of IAV.

摘要

森林草原是一种广泛分布的生物群落,因其生态系统服务而具有高度价值。为了成功地管理未来的草原,有必要分别了解树木和草本植物生产力的长期动态和气象驱动因素。本研究通过将长期(15 年)涡度协方差通量记录与从卫星遥感推断的树木和草本植物 GPP 的模型估计相结合,调查了树木和草本植物总初级生产力(GPP)的年际变异性(IAV)。在季节性基础上,树木和草本植物 GPP 的主要驱动因素是雨季的太阳辐射和旱季的土壤湿度。在年际基础上,土壤水分供应对树木 GPP 有积极影响,对草本 GPP 有消极影响。在 15 年的研究期间,未观察到树木-草本 GPP 比的线性趋势。然而,树木-草本 GPP 比与气候变率的模式有关,即南方涛动指数。本研究深入了解了树木和草本植物对草原生产力的长期贡献,以及它们各自的气象决定因素的年际变异性。

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