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Subsoiling practices change root distribution and increase post-anthesis dry matter accumulation and yield in summer maize
- Source :
- PLoS ONE, Vol 12, Iss 4, p e0174952 (2017), PLoS ONE
- Publication Year :
- 2017
- Publisher :
- Public Library of Science (PLoS), 2017.
-
Abstract
- Subsoiling is an important management practice for improving maize yield, especially for maize planted at high plant density. However, the affected physiological processes have yet to be specifically identified. In this study, field experiments with two soil tillage (CK: no-tillage, SS: subsoiling) and three planting densities (low: 45000 plants ha-1, medium: 67500plants ha-1, and high: 90000 plants ha-1) were conducted from 2010 to 2012 at Xinxiang, Henan province. Yield, canopy function, and root system were investigated to determine the associated physiological processes for improving maize production affected by soil tillage and plant density. Subsoiling significantly increased the grain yield of the low-, medium-, and high-planting densities by 6.21%, 8.92%, and 10.09%, respectively. Yield increase in the SS plots was mainly attributed to greater post-anthesis DMA and improved grain filling compared to CK plots. Greater green leaf area, leaf net photosynthetic rate, FV/Fm and ΦPSII in the SS plots were mainly contributed to enhanced dry matter production post-anthesis. This is mainly because subsoiling increased density of root dry weight in deep soil and root bleeding sap amount due to decreased the bulk density of the 0-30 cm soil profile layer. Density of root dry weight at 10-50 cm depth with SS increased by 40.68%, 32.17%, and 20.14% at low, medium, and high planting densities compared to CK, respectively, while the root bleeding sap amount increased by 17.41%, 15.82%, and 20.91%. These results indicate that subsoiling could change the root distribution and improve soil layer environment for root growth, thus maintaining a higher canopy photosynthetic capacity post-anthesis and in turn promoting DMA and yield, particularly at higher planting densities.
- Subjects :
- 0106 biological sciences
Canopy
Leaves
Density
lcsh:Medicine
Root system
Plant Science
Pathology and Laboratory Medicine
01 natural sciences
Plant Roots
Biochemistry
Vascular Medicine
Soil
Materials Physics
Medicine and Health Sciences
Photosynthesis
lcsh:Science
Plant Growth and Development
Multidisciplinary
Plant Biochemistry
Plant Anatomy
Physics
Agriculture
04 agricultural and veterinary sciences
Plants
Root Growth
Experimental Organism Systems
Physical Sciences
Soil horizon
Planting
Research Article
Materials Science
Material Properties
Crops
Hemorrhage
Biology
Horticulture
Research and Analysis Methods
Zea mays
Model Organisms
Signs and Symptoms
Dry weight
Plant and Algal Models
Diagnostic Medicine
Dry matter
Grasses
lcsh:R
Organisms
Sowing
Biology and Life Sciences
Photosynthetic capacity
Bulk density
Agronomy
Maize
040103 agronomy & agriculture
0401 agriculture, forestry, and fisheries
lcsh:Q
010606 plant biology & botany
Developmental Biology
Crop Science
Cereal Crops
Subjects
Details
- Language :
- English
- ISSN :
- 19326203
- Volume :
- 12
- Issue :
- 4
- Database :
- OpenAIRE
- Journal :
- PLoS ONE
- Accession number :
- edsair.doi.dedup.....13f9019844b06dcd6d7521015b3f1fcf