Analyzing the Synergistic Response of Soil Nematode Community Structure and Metabolic Footprint to the Southward Migration of Tea in the Qinba Mountain Area

Authors

  • Xinkun Song

DOI:

https://doi.org/10.54691/neyxde66

Keywords:

Qinba Mountain Area; Soil Nematode Community; Metabolic Footprint; Southern Tea Moves Northward; Ecological Response; Collaborative Law.

Abstract

As a strategy for adjusting the layout of the agricultural industry, the relocation of tea from the south to the north is gradually unfolding in the Qinba Mountain area. Soil nematodes, as important indicator organisms in soil ecosystems, have a sensitive community structure and metabolic footprint to changes in soil ecological environment during the process of southward tea migration. This article comprehensively elaborates on the structural characteristics and metabolic footprint of soil nematode communities in the Qinba Mountain area, and deeply analyzes their synergistic changes during the process of southward tea northward migration. The aim is to provide theoretical basis for understanding the impact of southward tea northward migration on soil ecosystems and sustainable agricultural development.

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References

[1] Biswal, D. 2023. 'Soil Nematodes as the Silent Sufferers of Climate-Induced Toxicity: Analysing the Outcomes of Their Interactions with Climatic Stress Factors on Land Cover and Agricultural Production', APPLIED BIOCHEMISTRY AND BIOTECHNOLOGY, 195: 2519-86.

[2] Chen, D. M., S. X. Zheng, Y. M. Shan, F. Taube, and Y. F. Bai. 2013. 'Vertebrate herbivore-induced changes in plants and soils: linkages to ecosystem functioning in a semi-arid steppe', FUNCTIONAL ECOLOGY, 27: 273-81.

[3] Gruzdeva, L. I., and A. A. Sushchuk. 2010. 'Trends of nematode community recovery after soil cover degradation', BIOLOGY BULLETIN, 37: 647-52.

[4] Li, N., and C. X. Xue. 2022. 'How Perceived Stress Affects Farmers' Continual Adoption of Farmland Quality Improvement Practices', AGRICULTURE-BASEL, 12.

[5] Liu, J., Q. Yang, E. Siemann, W. Huang, and J. Q. Ding. 2019. 'Latitudinal and altitudinal patterns of soil nematode communities under tallow tree (Triadica sebifera) in China', PLANT ECOLOGY, 220: 965-76.

[6] Liu, X. F., X. F. Zhu, Y. Z. Pan, S. S. Li, Y. Q. Ma, and J. Nie. 2016. 'Vegetation dynamics in Qinling-Daba Mountains in relation to climate factors between 2000 and 2014', JOURNAL OF GEOGRAPHICAL SCIENCES, 26: 45-58.

[7] Ma, Q., M. Q. Zhou, J. C. Liu, J. Zhao, and M. J. Xi. 2022. 'Coupling Relationship between Ecosystem Service Value and Socioeconomic Development in the Qinba Mountains, China', DIVERSITY-BASEL, 14.

[8] Wiesel, L., T. J. Daniell, D. King, and R. Neilson. 2015. 'Determination of the optimal soil sample size to accurately characterise nematode communities in soil', SOIL BIOLOGY & BIOCHEMISTRY, 80: 89-91.

[9] Yu, F., Y. C. Qi, Y. F. Yan, H. Xia, Q. Dong, C. Q. Jiang, C. L. Zu, and J. Shen. 2024. 'An Earthworm Peptide Alters Soil Nematode, Microbial, and Nutrient Dynamics: A Novel Mechanism of Soil Food Web Feedbacks', AGRONOMY-BASEL, 14.

[10] Zhang, Z., Q. Yang, Y. N. Niu, Y. X. Zhang, S. Dong, W. W. Zhang, and Z. Z. Wang. 2021. 'Diversity analysis and establishment of core collection among Akebia trifoliata (Thunb.) Koidz. in Qinba mountain area of China using ISSR and SRAP markers', GENETIC RESOURCES AND CROP EVOLUTION, 68: 1085-102.

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Published

2025-04-21

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Section

Articles

How to Cite

Song, X. (2025). Analyzing the Synergistic Response of Soil Nematode Community Structure and Metabolic Footprint to the Southward Migration of Tea in the Qinba Mountain Area. Scientific Journal of Technology, 7(4), 22-29. https://doi.org/10.54691/neyxde66