Dominant Drivers of Soil Multifunctionality Change: Interactions Among Soil, Plants, and the Atmosphere

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Main Authors: Luan, Tiantian, Zhou, Weiyi, Zhang, Fenghong, Guo, Rui, He, Hongyuan, Tao, Wu, Li, Hongxia, Ma, Yiting, Shi, Yun
Format: Recurso digital
Published: Zenodo 2025
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_version_ 1866902294599041024
author Luan, Tiantian
Zhou, Weiyi
Zhang, Fenghong
Guo, Rui
He, Hongyuan
Tao, Wu
Li, Hongxia
Ma, Yiting
Shi, Yun
author_facet Luan, Tiantian
Zhou, Weiyi
Zhang, Fenghong
Guo, Rui
He, Hongyuan
Tao, Wu
Li, Hongxia
Ma, Yiting
Shi, Yun
contents <p>This study provides two integrated datasets. The first is the data dataset, which compiles detailed observations from different soil depths in alluvial fan areas, covering multiple soil nutrients, core indicators of soil multifunctionality (SMF), and vegetation community information. The second is the response ratio dataset, derived from response ratio calculations, which reflects the differences in SMF and key nutrient contents among plant communities relative to the overall mean level. Together, these datasets offer a solid foundation for exploring the complex characteristics and underlying mechanisms of soil ecosystems under different vegetation communities.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_19552992
institution Zenodo
language
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Dominant Drivers of Soil Multifunctionality Change: Interactions Among Soil, Plants, and the Atmosphere
Luan, Tiantian
Zhou, Weiyi
Zhang, Fenghong
Guo, Rui
He, Hongyuan
Tao, Wu
Li, Hongxia
Ma, Yiting
Shi, Yun
<p>This study provides two integrated datasets. The first is the data dataset, which compiles detailed observations from different soil depths in alluvial fan areas, covering multiple soil nutrients, core indicators of soil multifunctionality (SMF), and vegetation community information. The second is the response ratio dataset, derived from response ratio calculations, which reflects the differences in SMF and key nutrient contents among plant communities relative to the overall mean level. Together, these datasets offer a solid foundation for exploring the complex characteristics and underlying mechanisms of soil ecosystems under different vegetation communities.</p>
title Dominant Drivers of Soil Multifunctionality Change: Interactions Among Soil, Plants, and the Atmosphere
url https://doi.org/10.5281/zenodo.19552992