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[模拟降水变化对中国黄河三角洲湿地植物群落特征的影响]

[Effects of simulated precipitation changes on plant community characteristics of wetland in the Yellow River Delta, China].

作者信息

Hou Ya-Lin, Han Guang-Xuan, Zhu Lian-Qi, Li Xin-Ge, Zhou Ying-Feng, Xu Jing-Wei

机构信息

College of Geography and Environmental Science, Henan University, Kaifeng 475004, Henan, China.

Key Laboratory of Coastal Zone Environmental Processes and Ecological Remediation, Yantai Institute of Coastal Zone Research, Chinese Academy of Sciences, Yantai 264003, Shandong, China.

出版信息

Ying Yong Sheng Tai Xue Bao. 2022 May;33(5):1260-1266. doi: 10.13287/j.1001-9332.202205.012.

Abstract

Under the changing climate scenario, changes in precipitation regimes are expected to alter soil water and salinity conditions, with consequences on the characteristics of plant community in estuarine wetland. Here, we used a six-year (2015-2020) precipitation manipulation experiment to examine how plant community characteristics responded to precipitation changes in the Yellow River Delta. The results showed that soil electrical conductivity significantly decreased, while soil moisture significantly increased with increasing precipitation. Precipitation changes altered plant community composition. Increased precipitation reduced the absolute dominance of and , but increased that of and . Shannon index and Margalef richness index of plant community significantly increased with increasing precipitation. Compared with the control, both decreased and increased precipitation decreased the plant community abundance, frequency and coverage. The treatment of 60% increased precipitation significantly decreased plant community frequency by 54.9%, while the 60% decreased precipitation, 40% decreased precipitation, 40% increased precipitation and 60% increased precipitation treatment significantly decreased plant abundance by 38.9%, 33.8%, 35.8% and 45.7%, respectively. The aboveground biomass significantly increased with increasing precipitation, but aboveground plant biomass under 60% increased precipitation treatment being lower than that reducing under 40% increased precipitation treatment, probably due to the negative effects of flooding stress. In addition, Margalef richness index had a significantly positive relationship with aboveground biomass. Aboveground biomass, Shannon diversity index, Margalef richness index, and Simpson diversity index were negatively related to soil electrical conductivity, and aboveground plant biomass was positively related to soil moisture. Our results revealed that precipitation changes regulate growth characteristics, species composition, and diversity of plant community by altering soil water and salinity conditions in a coastal wetland.

摘要

在气候变化情景下,预计降水格局的变化将改变土壤水分和盐分状况,从而对河口湿地植物群落特征产生影响。在此,我们利用一项为期六年(2015 - 2020年)的降水控制实验,来研究黄河三角洲植物群落特征如何响应降水变化。结果表明,随着降水量增加,土壤电导率显著降低,而土壤湿度显著增加。降水变化改变了植物群落组成。降水量增加降低了[具体物种1]和[具体物种2]的绝对优势度,但增加了[具体物种3]和[具体物种4]的优势度。植物群落的香农指数和马加利夫丰富度指数随降水量增加而显著增加。与对照相比,降水减少和增加均降低了植物群落的多度、频度和盖度。降水量增加60%的处理使植物群落频度显著降低了54.9%,而降水量减少60%、减少40%、增加40%和增加60%的处理分别使植物多度显著降低了38.9%、33.8%、35.8%和45.7%。地上生物量随降水量增加而显著增加,但降水量增加60%处理下的地上植物生物量低于降水量增加40%处理下的,这可能是由于淹水胁迫的负面影响。此外,马加利夫丰富度指数与地上生物量呈显著正相关。地上生物量、香农多样性指数、马加利夫丰富度指数和辛普森多样性指数与土壤电导率呈负相关,地上植物生物量与土壤湿度呈正相关。我们的结果表明,降水变化通过改变沿海湿地的土壤水分和盐分状况来调节植物群落的生长特征、物种组成和多样性。

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