Deep Vertical Rotary Tillage: A Sustainable Agricultural Practice to Improve Soil Quality and Crop Yields in China

Author:

Zhang Wenlong1ORCID,Shao Jinhua12,Huang Kai2,Chen Limin3,Niu Guanghui3,Wei Benhui4,Huang Guoqin1

Affiliation:

1. Key Laboratory of Crop Physiology, Ecology and Genetics Breeding, College of Agriculture, Jiangxi Agricultural University, Nanchang 330045, China

2. Guangxi Key Laboratory of Water Engineering Materials and Structures, Guangxi Hydraulic Research Institute, Nanning 530023, China

3. Irrigation Experiment Station of Qinzhou City, Qinzhou 535000, China

4. Cash Crops Research Institute, Guangxi Academy of Agricultural Sciences, Nanning 530007, China

Abstract

Deep vertical rotary tillage (DVRT) is an innovative soil tillage technology that has been widely adopted in China and shown significant potential in enhancing soil quality, optimizing water use efficiency, and increasing crop yields across diverse ecological and agronomic conditions. DVRT utilizes a vertical spiral drill bit for deep plowing, which preserves soil structure, reduces soil compaction, and improves water retention, making it particularly effective in regions facing climatic challenges such as drought. This review synthesizes the effects of DVRT on soil’s physical and chemical properties, crop root systems, photosynthesis, and water use efficiency, demonstrating its advantages in promoting robust root development and improving nutrient utilization. Although the technology has been applied successfully across various crops and regions, its nationwide adoption remains limited. This paper emphasizes the need for further research to refine the theoretical framework of DVRT and develop tailored strategies for different local conditions. Additionally, integrating DVRT with other agronomic practices and advancing machinery design, supported by policy measures, is essential for maximizing its benefits. In conclusion, DVRT presents a promising approach for sustainable agriculture in China, contributing to improved soil quality, increased crop yields, and enhanced food security.

Funder

Guangxi Key Research and Development Program Project

2023 Water Conservancy Talent Development Funding Project

Jiangxi Provincial Postgraduate Innovation Special Project

Publisher

MDPI AG

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