Plant-microbe-soil interactions in a vulnerable ecosystem: promising re-vegetation approaches to slow down rocky karst desertification

Plant-microbe-soil interactions in a vulnerable ecosystem: promising re-vegetation approaches to slow down rocky karst desertification
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DOI:
10.1007/s11104-022-05478-2
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发表时间:
2022-05
期刊:
影响因子:
4.9
通讯作者:
Wei-Yu Shi;Minggang Xu;Xinhua He
Wei-Yu Shi;Minggang Xu;Xinhua He
中科院分区:
农林科学2区
文献类型:
--
作者:
Wei-Yu Shi;Minggang Xu;Xinhua He

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接受日期:2022年5月5日©作者在施普林格Nature Switzerland AG 2022的独家许可下,通过在恶劣的喀斯特栖息地中植物,微生物和土壤之间的相互作用。然而,对生物物理和生物地球化学过程的小规模或局部研究很少与生态系统结构特性相结合(Silva和Lambers 2021),导致缺乏对生态系统水平上植物-微生物-土壤相互作用的理解。因此,我们将重点放在喀斯特石漠化下植被恢复过程中植物-微生物-土壤相互作用的研究上,并利用最先进的技术,包括稳定和放射性同位素、分子生物学技术、物理探针(热脉冲或扩散),甚至遥感技术和大数据或荟萃分析。本期特刊包括来自57份稿件的13项研究;我们将这些研究简要介绍如下。
Accepted: 5 May 2022© The Author (s), under exclusive licence to Springer Nature Switzerland AG 2022 by interactions among plants, microbes and soil in the harsh karst habitats. However, small-or local-scale studies on biophysical and biogeochemical processes are rarely combined with structural ecosystem properties (Silva and Lambers 2021), resulting in a lack of understanding of plant-microbe-soil interactions at an ecosystem level. As a result, we focused on plantmicrobe-soil interactions within the process of revegetation under rocky karst desertification and gathered studies with state-of-art technologies, including stable and radioactive isotopes, molecular biological techniques, physical probes (heat pulse or diffuse), and even remote-sensing technology and big data or meta-analysis. This special issue composes 13 studies resulting from 57 manuscript submissions; we briefly introduce these studies as follows.