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Litter accumulation alters the abiotic environment and drives community successional changes in two fenced grasslands in Inner Mongolia

机译:凋落物积累改变了非生物环境,并在内蒙古的两个围栏草地上推动了社区连续变化

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Fencing is an effective and practical method for restoring degraded grasslands in northern China. However, little is known about the role of excess litter accumulation due to long‐term fencing in regulating abiotic environment and driving changes in community structure and function. We conducted a three‐year field experiment in two fenced grasslands in Inner Mongolia, and monitored light quantity, soil temperature, and soil moisture continuously, and determined community height, community aboveground net primary productivity (ANPP), and the relative dominance of different plant functional groups. Litter accumulation reduced light quantity and soil temperature but increased soil moisture. The regulating effects of litter accumulation on soil temperature and soil moisture fluctuated temporally and gradually weakened over the growing season. Litter accumulation also altered community vertical structure and function by increasing community height and ANPP. The increase in soil moisture increased the relative dominance of rhizome grasses but suppressed bunch grasses, thereby shifting bunch grass grasslands to rhizome grass grasslands. Our findings provide a potential mechanism for community succession in the context of litter accumulation in fenced grasslands and indicate that the vegetation and ecosystem services of degraded grasslands are improved after appropriate fencing.
机译:击剑是一种恢复中国北方的退化草原的有效实用的方法。然而,由于在调节非生物环境中的长期围栏和促进社区结构和功能的变化,对多余的凋落物积累的作用很少。我们在内蒙古的两个围栏草地上进行了为期三年的田间实验,并不断监测光量,土壤温度和土壤水分,确定群落高度,社区地上净初级生产率(ANPP)以及不同植物的相对优势功能群体。凋落物积聚降低光量和土壤温度,但土壤水分增加。凋落物积累对土壤温度和土壤水分的调节效应在日期上波动,逐渐减弱了生长季节。垃圾累积也通过增加社区高度和ANPP来改变社区垂直结构和功能。土壤水分的增加增加了根茎草的相对优势,但抑制了束草,从而将束草草原转向根茎草草原。我们的调查结果为围栏草原凋落物积累的背景下的社区连续提供了潜在的机制,并表明在适当的击剑后改善了降解草原的植被和生态系统服务。

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