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首页> 外文期刊>Environmental Science and Pollution Research >Plant communities in relation to flooding and soil characteristics in the water level fluctuation zone of the Three Gorges Reservoir, China
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Plant communities in relation to flooding and soil characteristics in the water level fluctuation zone of the Three Gorges Reservoir, China

机译:三峡水库水位波动区与洪水和土壤特性相关的植物群落

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摘要

With the filling of the Three Gorges Reservoir, original vegetation in the water level fluctuation zone (WLFZ) between the elevations of 145 and 175 m disap?peared due to the reversal of submergence time (winter flooding) and prolonged inundation duration (nearly half a year). To better understand the relationships between the environmental factors and recovered plant communities for reconstructing floristically diverse riparian zone, we con?ducted a field survey in 11 sites in the WLFZ in June 2010, and vegetation composition, flooding characteristics, heavy metals, and soil major nutrients were determined. Consequently, the canonical correspondence analysis was used to investigate the relationships between plant species composition and flooding characteristics, heavy metal con?tamination, and soil nutrients. Results demonstrated that vegetation in the WLFZ was dominated by annuals, i.e., Echinochloa crusgalli and Bidens tripartita, and perennials including Cynodon dactylon, and plant species richness and diversity were negatively associated with flooding duration, heavy metal contamination, and nutrients including total phosphorus, available phosphorus, available potassium, and nitrate. Our results suggest that plant species, recovering mainly through soil seed bank and regeneration of remnant individuals, have been influenced by the combined effects of environmental factors.
机译:随着三峡水库的蓄水,由于淹没时间的逆转(冬季洪水)和漫长的淹没持续时间(将近半个半小时),水位波动区(WLFZ)中海拔145和175 m之间的原始植被消失了。年)。为了更好地了解环境因素与恢复的植物群落之间的关系,以重建植物多样性的河岸带,我们于2010年6月在WLFZ的11个地点进行了野外调查,调查了植被组成,洪水特征,重金属和土壤确定营养。因此,使用规范对应分析来研究植物物种组成与洪水特征,重金属污染和土壤养分之间的关​​系。结果表明,WLFZ地区的植被以一年生植物为主,即ie草和Bidens tripartita,多年生植物包括犬齿象,而植物物种的丰富性和多样性与洪水持续时间,重金属污染以及包括总磷在内的养分负相关。磷,有效钾和硝酸盐。我们的结果表明,主要通过土壤种子库恢复和残存个体再生的植物物种已受到环境因素综合作用的影响。

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