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太阳能光伏电站对干旱和半干旱生态系统的潜在益处与风险:土壤微生物和植物群落评估

Potential benefits and risks of solar photovoltaic power plants on arid and semi-arid ecosystems: an assessment of soil microbial and plant communities.

作者信息

Liu Ziyu, Peng Tong, Ma Shaolan, Qi Chang, Song Yanfang, Zhang Chuanji, Li Kaile, Gao Na, Pu Meiyun, Wang Xiaomin, Bi Yurong, Na Xiaofan

机构信息

Key Laboratory of Cell Activities and Stress Adaptations, Ministry of Education, School of Life Sciences, Lanzhou University, Lanzhou, China.

No. 1 Middle School of Penyang, Guyuan, China.

出版信息

Front Microbiol. 2023 Aug 1;14:1190650. doi: 10.3389/fmicb.2023.1190650. eCollection 2023.

Abstract

Exponential increase in photovoltaic installations arouses concerns regarding the impacts of large-scale solar power plants on dryland ecosystems. While the effects of photovoltaic panels on soil moisture content and plant biomass in arid ecosystems have been recognized, little is known about their influence on soil microbial communities. Here, we employed a combination of quantitative PCR, high-throughput sequencing, and soil property analysis to investigate the responses of soil microbial communities to solar panel installation. We also report on the responses of plant communities within the same solar farm. Our findings showed that soil microbial communities responded differently to the shading and precipitation-alternation effects of the photovoltaic panels in an arid ecosystem. By redirecting rainwater to the lower side, photovoltaic panels stimulated vegetation biomass and soil total organic carbon content in the middle and in front of the panels, positively contributing to carbon storage. The shade provided by the panels promoted the co-occurrence of soil microbes but inhibited the abundance of gene in the soil. Increase in precipitation reduced gene abundance, whereas decrease in precipitation led to decline in plant aboveground biomass, soil prokaryotic community alpha diversity, and dehydrogenase activity under the panels. These findings highlight the crucial role of precipitation in maintaining plant and soil microbial diversities in dryland ecosystems and are essential for estimating the potential risks of large-scale solar power plants on local and global climate change in the long term.

摘要

光伏装置的指数增长引发了人们对大型太阳能发电厂对旱地生态系统影响的担忧。虽然光伏板对干旱生态系统中土壤水分含量和植物生物量的影响已得到认可,但关于它们对土壤微生物群落的影响却知之甚少。在此,我们采用定量PCR、高通量测序和土壤性质分析相结合的方法,研究土壤微生物群落对太阳能板安装的响应。我们还报告了同一太阳能农场内植物群落的响应情况。我们的研究结果表明,在干旱生态系统中,土壤微生物群落对光伏板的遮荫和降水交替效应有不同的响应。通过将雨水引向较低一侧,光伏板刺激了光伏板中部和前方的植被生物量和土壤总有机碳含量,对碳储存有积极贡献。光伏板提供的遮荫促进了土壤微生物的共存,但抑制了土壤中基因的丰度。降水量增加会降低基因丰度,而降水量减少会导致光伏板下植物地上生物量、土壤原核生物群落α多样性和脱氢酶活性下降。这些发现凸显了降水在维持旱地生态系统中植物和土壤微生物多样性方面的关键作用,对于长期评估大型太阳能发电厂对局部和全球气候变化的潜在风险至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b562/10427150/02e6dd6ddbec/fmicb-14-1190650-g001.jpg

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