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Plant litter decomposition: drivers insight to the ecological process

机译:植物凋落物分解:驱动程序洞察生态过程

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Decomposition of litter is a function of various interrelated variables; both biotic factors and abiotic factors. Litter decomposition acts like a natural fertilizer, plays a prime role in maintaining the productivity and nutrient cycling in forest ecosystem. So, it is necessary to be aware of the machinery operation behind this significant ecological process. This review is based on the published work carried out in recent years and critically examines the role of different factors involved in litter decomposition, their limitations and gaps to be investigated. Numerous methods are there, litter bag technique is quite simple and handy in investigating and explaining the variations in decomposition rate constant ' k '. It is not surprising that the environment and decomposers are the key players; but role of litter quality cannot be underestimated. Changing climate can alter the microbial diversity and its consequences can be drastic in nature. Under soil aspect, nutrients (N and P), whether endogenous or exogenous, have the ability to modify the process but results are diverse and conflicting. Most of the studies and related information is based on the single species litter decomposition. However, forest ecosystems are mixer of understory herbaceous plants and woody trees and interaction between all the variables and mixed litter surely modify the litter dynamics. Future studies should be focused on how qualitative and quantitative characters of mixed litter, interact with others factors of this promising ecological process. It is necessary to divert the interest towards the mechanism and modeling of decomposition rates ' k ' and rate of nutrient released by mixed litter decomposition with special reference to with global environment change.
机译:垃圾的分解是各种相互关联的变量的函数。生物因素和非生物因素。凋落物分解就像天然肥料一样,在维持森林生态系统的生产力和养分循环方面起着主要作用。因此,有必要意识到这一重要生态过程背后的机械操作。这篇综述基于近年来发表的工作,并严格审查了凋落物分解中涉及的不同因素的作用,它们的局限性和需要研究的差距。那里有许多方法,垃圾袋技术在研究和解释分解速率常数“ k”的变化时非常简单方便。毫不奇怪,环境和分解者是关键角色;但是垃圾质量的作用不可低估。气候变化会改变微生物的多样性,其后果自然可能是严峻的。在土壤方面,无论是内源还是外源的养分(N和P)都具有改变过程的能力,但结果却是多样且矛盾的。大多数研究和相关信息是基于单一物种凋落物分解的。然而,森林生态系统是林下草本植物和木本植物的混合体,所有变量和混合凋落物之间的相互作用必定会改变凋落物的动态。未来的研究应侧重于混合垃圾的定性和定量特征如何与这一有前途的生态过程的其他因素相互作用。有必要将注意力转移到分解速率“ k”和混合凋落物分解释放的养分速率的机理和模型上,并特别参考全球环境变化。

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