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  5. Global research trends in Rhizodeposition-mediated soil carbon cycle: A bibliometric analysis

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Article
English
2024

Global research trends in Rhizodeposition-mediated soil carbon cycle: A bibliometric analysis

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English
2024
Applied Soil Ecology
Vol 202
DOI: 10.1016/j.apsoil.2024.105531

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Yakov Kuzyakov
Yakov Kuzyakov

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Dongming Chen
Fei Yan
Xuemei Fang
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Abstract

Rhizodeposition plays a crucial role in the soil carbon (C) cycle, yet a comprehensive understanding of global research trends and directions related to rhizodeposition remains elusive. To provide a global perspective, this study employs bibliometric analysis to systematically review research on the Soil C cycle-rhizodeposition (SCC-Rhizo) publication characteristics, topic trends, and knowledge domains over the past decades. The SCC-Rhizo documents (2598) from 1966 to 2023 in the Web of Science Core Collection and Scopus were analyzed using VOSviewer, CiteSpace software and ‘bibliometrix’ package of R. A significant rise in annual publications and international scientific collaboration has been observed over the past years, indicating substantial growth potential and a dynamic research landscape. The study topics varied and flourished over time. The research scope expands from small-scale lab simulations to encompass large-scale ecosystem studies in diverse environments (i.e. grasslands, forests and paddy fields). The composition of rhizodeposition has been scrutinized from general compounds to specific materials (such as organic acids), while interactions between rhizodeposition and soil are currently being explored at the molecular level, which is expected to be a focal point of future research. Beyond bacteria, investigations now encompass fungi, microbial activity, and microbial communities. Isotope labeling and metagenomics sequencing are increasingly prevalent technology in SCC-Rhizo research. The results provide a global, objective perspective for understanding SCC-Rhizo research over the past decades. This research underscores the necessity for future studies to accurately quantify the rates and composition of rhizodeposition at the ecosystem level, explore the interactions with soil components, and develop predictive models.

How to cite this publication

Dongming Chen, Fei Yan, Xuemei Fang, Jiqiong Zhou, Xingpeng Hu, Xiaoming Ma, Xin Zheng, Yin Rui, Feida Sun, Yanfu Bai, Zhouwen Ma, Yakov Kuzyakov, Lin Liu (2024). Global research trends in Rhizodeposition-mediated soil carbon cycle: A bibliometric analysis. Applied Soil Ecology, 202, pp. 105531-105531, DOI: 10.1016/j.apsoil.2024.105531.

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Publication Details

Type

Article

Year

2024

Authors

13

Datasets

0

Total Files

0

Language

English

Journal

Applied Soil Ecology

DOI

10.1016/j.apsoil.2024.105531

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