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February 11, 2026Forests0 citationsOpen Access

Long-Term Understory Rotary Tillage Incorporation Enhances Plain Plantation Growth by Synergistic Regulation of Soil and Microbial Properties

WLWenhao LiuJilin Jianzhu UniversityLZLanying ZhangExperimental Center of Forestry in North ChinaGLGuimin LiuShandong Academy of Forestry

Key Points

  • This research aims to assess the impact of long-term rotary tillage on growth and soil properties in Fraxinus chinensis plantations.
  • Compared 7- and 15-year-old Fraxinus chinensis stands subjected to rotary tillage and non-tilled controls
  • Measured tree growth metrics such as diameter at breast height and height
  • Analyzed soil nutrient contents and microbial community structure
  • Rotary tillage increased tree diameter at breast height by 28.89% in 7-year-olds and 22.58% in 15-year-olds
  • Tree height improved by 19.51% in 7-year-olds and 25.00% in 15-year-olds
  • Enhanced soil organic carbon, total nitrogen, and total phosphorus levels
  • Altered soil particulate and mineral-associated carbon distributions
  • Promoted greater microbial diversity and gene abundances in older stands

Abstract

To investigate the effects of long-term continuous rotary tillage incorporation (RT) on Fraxinus chinensis Roxb. plantations, this study compared 7- and 15-year-old stands subjected to RT since afforestation with their non-tilled counterparts (CK). Results demonstrated that RT significantly enhanced tree growth by synergistically improving soil nutrient availability, physical properties, and microbial community structure and function: (1) Compared with CK, RT increased diameter at breast height (DBH) by 28.89% in 7-year-old stands and 22.58% in 15-year-old stands, and tree height by 19.51% in 7-year-old stands and 25.00% in 15-year-old stands; (2) RT increased contents of soil organic carbon (SOC), total nitrogen (TN), and total phosphorus (TP), rearranged the distribution patterns of soil particulate organic carbon (POC) and mineral-associated organic carbon (MAOC), and reduced soil bulk density (BD) and soil water content (SWC); (3) RT regulated microbial diversity, co-occurrence networks, and carbohydrate-degrading gene abundances, with more prominent effects in 15-year-old stands. This tillage practice is feasible and effective, and thus is recommended for application in F. chinensis plantation management, providing a scientific basis for refined and sustainable plantation management.

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Cite This Study

Liu et al. (2026) studied this question.

synapsesocial.com/papers/698c1c46267fb587c655e9d4https://doi.org/10.3390/f17020232
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