Artificially remediated plants impact soil physiochemical properties along the riparian zones of the three gorges dam in China

Farkhanda Naz, Muhammad Arif, Tan Xue, Changxiao Li
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Abstract

River ecosystem biodiversity and biogeochemical processes are shaped largely by riverside vegetation and soil. Moreover, river ecosystems provide ecological services influenced by the surrounding vegetation and soil interactions. However, the mechanisms by which artificially remediated plants (ARPs) and riparian soil interact to provide these benefits are still unclear among various ARPs. This study fills this gap and examines the impact of ARPs along the riparian zones of Three Gorges Dam (TGD) in Chongqing City, China. We sampled four varieties of ARPs from the Ruxi River Basin in the TGD. These varieties included Cynodon dactylon, Hemarthria altissima, Taxodium disticum, and Salix mastudana. Our results indicated substantial changes in soil physicochemical parameters. Comparably, T. distigum contains significantly higher soil chemical contents. Interestingly, principal component analysis explained almost 100% of the variance for all plant species in this study. Moreover, different vegetation types and soil chemical properties were positively correlated using Pearson correlation analysis (p < 0.05). Furthermore, all plant species exhibited strong negative correlations with physical characteristics (up to r = −1.00). Specifically, these mechanisms explain the interactions between ARPs and soil from riparian areas in the TGD. Hence, this study may facilitate ecological restoration and land management in degraded riparian areas.
人工修复植物对中国三峡大坝河岸带土壤理化性质的影响
河流生态系统的生物多样性和生物地球化学过程在很大程度上是由河边植被和土壤决定的。此外,河流生态系统提供的生态服务也受到周围植被和土壤相互作用的影响。然而,各种人工修复植物(ARP)与河岸土壤相互作用提供这些益处的机制尚不清楚。本研究填补了这一空白,并考察了 ARP 对中国重庆市三峡大坝(TGD)河岸带的影响。我们从三峡大坝汝溪河流域采集了四个品种的 ARP 样本。这些品种包括糙伏牛(Cynodon dactylon)、海马(Hemarthria altissima)、梭梭(Taxodium disticum)和沙柳(Salix mastudana)。我们的研究结果表明,土壤理化参数发生了很大变化。相比之下,T. distigum 的土壤化学成分含量明显更高。有趣的是,主成分分析几乎解释了本研究中所有植物物种 100%的方差。此外,通过皮尔逊相关分析,不同植被类型和土壤化学性质呈正相关(p < 0.05)。此外,所有植物物种与物理特征都呈现出强烈的负相关(最高 r =-1.00)。具体而言,这些机制解释了天津港发展区河岸地区 ARP 与土壤之间的相互作用。因此,这项研究可能有助于退化河岸地区的生态恢复和土地管理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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