Precipitation changes alter plant dominant species and functional groups by changing soil salinity in a coastal salt marsh

盐度 盐沼 降水 沼泽 环境科学 土壤盐分 生态学 植物种类 盐生植物 水文学(农业) 海洋学 地理 湿地 生物 地质学 岩土工程 气象学
作者
Jia Song,Zhenghao Liang,Xinge Li,Xiaojie Wang,Xiaojing Chu,Mingliang Zhao,Xiaoshuai Zhang,Peiguang Li,W. M. Song,Wanxin Huang,Guang-Xuan HAN
出处
期刊:Journal of Environmental Management [Elsevier]
卷期号:368: 122235-122235
标识
DOI:10.1016/j.jenvman.2024.122235
摘要

Specific mechanisms of precipitation change due to global climate variability on plant communities in coastal salt marsh ecosystems remain unknown. Hence, a field manipulative precipitation experiment was established in 2014 and 5 years of field surveys of vegetation from 2017 to 2021 to explore the effects of precipitation changes on plant community composition. The results showed that changes in plant community composition were driven by dominant species, and that the dominance of key species changed significantly with precipitation gradient and time, and that these changes ultimately altered plant community traits (i.e., community density, height, and species richness). Community height increased but community density decreased with more precipitation averaged five years. Furthermore, changes in precipitation altered dominant species composition and functional groups mainly by influencing soil salinity. Salinity stress caused by decreased precipitation shifted species composition from a dominance of taller perennials and grasses to dwarf annuals and forbs, while the species richness decreased. Conversely, soil desalination caused by increased precipitation increased species richness, especially increasing in the dominance of grasses and perennials. Specifically, Apocynaceae became dominance from rare while Amaranthaceae decreased in response to increased precipitation, but Poaceae was always in a position of dominance. Meanwhile, the dominance of grasses and perennials has the cumulative effect of years and their proportion increased under the increased 60% of ambient precipitation throughout the years. However, the annual forb Suaeda glauca was gradually losing its dominance or even becoming extinct over years. Our study highlights that the differences in plant salinity tolerance are key to the effects of precipitation changes on plant communities in coastal salt marsh. These findings aim to provide a theoretical basis for predicting vegetation dynamics and developing ecological management strategies to adapt to future precipitation changes.
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