Air or soil temperature matters the responses of alpine plants in biomass accumulation to climate warming

物候学 生物量(生态学) 生长季节 气候变化 蒿属 生物 野甘草属 一年生植物 农学 高原(数学) 全球变暖 营养繁殖 植物 生态学 数学 数学分析
作者
Shuai Li,Shikui Dong,Yongshuo H. Fu,Bingrong Zhou,Shiliang Liu,Hao Shen,Yudan Xu,Xiaoxia Gao,Jiannan Xiao,Shengnan Wu,Fu Li
出处
期刊:Science of The Total Environment [Elsevier]
卷期号:844: 157141-157141 被引量:14
标识
DOI:10.1016/j.scitotenv.2022.157141
摘要

Climate change has substantially affected plant phenology and growth on the Qinghai-Tibetan Plateau (QTP), while it remains unclear how plant phenology and growth impact the plant biomass under climate change. We used long-term data (from 1997 to 2017) for four plants, Stipa purpurea, Artemisia scoparia, Kobresia humilis and Astragalus laxmannii in the alpine meadow to examine the relationships among multiple climate factors, vegetative growth, reproductive growth, intrinsic growth rate and biomass. The order of returning to green determines the growth strategies of different plants, the earliest plants to green (p < 0.05) (e.g., Stipa purpurea and Artemisia scoparia) would choose the strategy of vegetative growth (p < 0.05); the earlier plants (p < 0.05) (e.g., Kobresia humilis) would be regulated by both vegetative growth and reproductive growth (p < 0.05); while the latest plant to green (p < 0.05) such as Astragalus laxmannii, would choose intrinsic growth rate rather than growing season (P < 0.05). Temperature was the most important drivers for key phenological phases and growth patterns of four species, different factors play a role in different stages of the growth period, i.e., in the early and late stage is the soil temperature, while in the middle stage is the average temperature or the maximum temperature, and all the optimum thresholds were >30 day. These findings provide the in-situ evidences of long-term changes in phenology and its associated growth on the biomass of alpine plants on the QTP in the era of climate change.
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