Effects of Tillage and Sowing Methods on Soil Physical Properties and Corn Plant Characters

Author:

Wang Ying12,Yang Sen12,Sun Jian1,Liu Ziguang2,He Xinmiao2,Qiao Jinyou1

Affiliation:

1. College of Engineering, Northeast Agricultural University, Harbin 150030, China

2. Key Laboratory of Combining Farming and Animal Husbandry, Ministry of Agriculture and Rural Affairs, Harbin 150030, China

Abstract

In the northeast plains of China, the intensive utilization of agricultural soils has been a persistent issue, and finding ways to utilize soil resources efficiently and sustainably through a scientifically-driven management system has become a crucial challenge for agricultural production. Conservation tillage is a crucial technology for sustainable agriculture. Currently, plow and rotary tillage are the dominant methods used in Mollisols, but there is limited information on the effects of different conservation tillage practices in this region. The objective of this study was to investigate the short-term impact of tillage and sowing methods on soil physical properties and corn plant growth and to examine the relationship between soil physical properties and plant characteristics during various stages of growth. This study consisted of four tillage and sowing methods: plow tillage and precision seeder sowing (PTS), rotary tillage and precision seeder sowing (RTS), no-tillage and no-tillage seeder sowing (NTS), and no-tillage and precise sowing in stubble field (STS) (all four treatments involved total straw return). The results indicated that the soil penetration resistance (SPR) in the 10–40 cm soil layer under the PTS treatment was significantly lower (by 11.9% to 18%) compared to the other treatments (p < 0.05). On average, the soil moisture content in the NTS treatment was 2.7% and 1.4% higher than that of the PTS and RTS treatments. Additionally, soil temperature was 5.6% to 8.6% lower under the STS treatment compared to the other treatments during late corn growth. The RTS treatment also significantly reduced the bulk density of surface soil. High SPR impeded early crop growth but did not impact mid-crop development, while low soil temperature was one of the main factors affecting late corn growth and development as temperatures decreased. Based on the comparisons, we found that the short-term implementation of conservation tillage did not result in a significant decrease in corn yield. We believe that the short-term implementation of NTS tillage sowing practices in Mollisol regions is a feasible option.

Funder

National Key R&D Projects during the Fourteenth Five Year Plan

Publisher

MDPI AG

Subject

Plant Science,Agronomy and Crop Science,Food Science

Reference42 articles.

1. Analysis of long-term mechanism for development of straw industry in northeast China under guidance of “Green-concept”;Cong;Trans. CSAE,2021

2. Soil physical properties and vertical distribution of root systems affected by tillage methods in black soil slope farmlands in Northeast China;Yan;Trans. CSAE,2021

3. Key issues of Mollisols research and soil erosion control strategies in China;Zhang;Bull. Soil Water Conserv.,2020

4. Effects of different rotational tillage patterns on soil physical properties and yield of winter wheat-spring maize rotation field in Weibei highland;Chen;Chin. J. Eco-Agric.,2015

5. Effects of short-term plowing and organic amendments on soil physical properties and maize yield in dark brown soil in Northeast China;Li;Trans. CSAE,2021

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