Plant Invasion and N2O Emission in Forest Ecosystems

Nasir Shad, Ling Zhang, Ghulam Mujtaba Shah, Fang Haifu, M. Ilyas, Abbas Ali, Salman Ali Khan
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引用次数: 5

Abstract

Nitrogen (N) is a key factor for any ecosystem and has been found limited for biomass production. More N in forest ecosystem and their efficient utilization will contribute to the maximization in their growth, competition, and reproduction. Invasive plants capture and utilize more N than native plants and accelerate N cycles through altering the structure and community of soil microbes and the litter decomposition rates, under microclimate conditions, resulting in an increase of N availability. All these factors are promoting the invasiveness of plants and cause further ecological and economic damage and decline in native biodiversity. Plant invasions affect soil microbial community, soil physiochemical properties, and litter decomposition rates, promoting N cycle and releasing more nitrous oxide (N 2 O) into the atmosphere, further facilitating global warming, causing changes in the geographic ranges of some invasive species. Also, a better understanding of the mechanism, affecting factors, impacts, and control of the invasive species will lead to proper forest management. Proper and effective management will ensure the control of invasive species which includes invasive plant inventory, early deduction and rapid response, management plan and implication, and government support.
森林生态系统植物入侵与N2O排放
氮(N)是任何生态系统的关键因子,对生物质生产的影响有限。森林生态系统中氮素的增加和氮素的有效利用将有助于其生长、竞争和繁殖的最大化。在小气候条件下,入侵植物比本地植物捕获和利用更多的氮,并通过改变土壤微生物的结构和群落以及凋落物分解速率来加速氮循环,从而增加氮素有效性。所有这些因素都在促进植物的入侵,造成进一步的生态经济破坏和本地生物多样性的下降。植物入侵影响土壤微生物群落、土壤理化性质和凋落物分解速率,促进N循环,向大气释放更多的氧化亚氮(n2o),进一步促进全球变暖,导致一些入侵物种的地理范围发生变化。同时,更好地了解入侵物种的机制、影响因素、影响和控制将有助于合理的森林管理。适当和有效的管理将确保入侵物种的控制,包括入侵植物清单、早期推断和快速反应、管理计划和影响以及政府支持。
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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