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深松条件下不同地表覆盖对马铃薯产量及水分利用效率的影响

李荣 侯贤清

农业工程学报2015,Vol.31Issue(20):115-123,9.
农业工程学报2015,Vol.31Issue(20):115-123,9.DOI:10.11975/j.issn.1002-6819.2015.20.017

深松条件下不同地表覆盖对马铃薯产量及水分利用效率的影响

Effects of different ground surface mulch under subsoiling on potato yield and water use efficiency

李荣 1侯贤清1

作者信息

  • 1. 宁夏大学农学院,银川 750021
  • 折叠

摘要

Abstract

Water deficiency is the main limiting factor for crop growth in dry-farming areas. Many studies and practices have demonstrated that, mulching tillage can improve the soil microclimate, and significantly increase the yield and water use efficiency of crops. In order to explore the effects of different ground surface methods combined with subsoiling tillage on soil physical characteristics, potato growth, yield and water use efficiency, field fixed position experiment was conducted to study the effect of mulching tillage on soil volume quality, aggregate, water, potato yield and water use efficiency in arid areas of southern Ningxia between 2013 and 2015. The field experiment consisted of the following 4 treatments: straw mulch with subsoiling tillage (ST+JM), plastic film mulch with subsoiling tillage (ST+DM), no mulch with subsoiling tillage (ST), and no mulch with conventional tillage (CT). The no mulch with conventional tillage was used as the control. Our study results showed that, the soil volume quality of the 0–40 cm soil layer under subsoiling combined with mulch was effectively decreased compared with conventional tillage, while the soil total porosity was greatly improved, and especially the straw mulch with subsoiling treatment was the best. During the study, the mean soil volume quality (0–40 cm) under straw mulch with subsoiling treatment was significantly (P<0.05) decreased by 17.1% when compared with the conventional tillage treatment. Our study found that, the subsoiling with ground surface mulch produced significantly higher amounts of >0.25 mm elastic-stable macroaggregates in the 0–40 cm soil layer compared with conventional tillage. The amounts of >0.25 mm aggregates (0–40 cm) under straw mulch with subsoiling and plastic film mulch with subsoiling treatments were significantly (P<0.05) increased by 30.7% and 17.4% respectively compared with the conventional tillage treatment. Subsoiling combined with ground surface mulch greatly improved soil water storage in the 0–200 cm soil layer during the growing stage of potato. The straw mulch with subsoiling and plastic film mulch with subsoiling treatments had the best effect on water conservation; the soil water storage in the 0–200 cm soil layer under the plastic film mulch with subsoiling treatment was significantly higher than the conventional tillage treatment at the early stage of potato, while the straw mulch with subsoiling treatment could significantly improve the soil water content (0–200 cm) in the later growth period. The application of mulching tillage significantly promoted the growth of potato, and the plant height, stem diameter and aboveground biomass of potato under the different ground surface mulching methods with subsoiling were significantly higher than the conventional tillage treatment. The plastic film mulch with subsoiling treatment significantly promoted the growth of potato in the early stage, and the straw mulch with subsoiling treatment significantly promoted the growth of potato in the later growth period. Higher yield and water use efficiency improvement were also achieved under different ground surface mulching methods with subsoiling. The potato yield, commodity rate and water use efficiency under the straw mulch with subsoiling treatment were significantly (P<0.05) increased by 37.3%, 93.3% and 41.2%, respectively, when compared with the conventional tillage treatment. For the plot experiments in 2 years, the ground surface mulch with subsoiling measure can not only effectively decrease soil volume quality, but also significantly improve soil structure, and shows the better soil water conservation ability, therefore promoting the growth of potato; and the straw mulch with subsoiling treatment significantly increases potato yield andwater use efficiency in the arid areas of southern Ningxia.

关键词

土壤/产量/水分/深松结合地表覆盖/土壤蓄水量/马铃薯产量/水分利用效率

Key words

soil/yield/water/ground surface mulch under subsoiling/soil water storage/potato yield/water use efficiency

分类

农业科技

引用本文复制引用

李荣,侯贤清..深松条件下不同地表覆盖对马铃薯产量及水分利用效率的影响[J].农业工程学报,2015,31(20):115-123,9.

基金项目

宁夏大学引进人才科研启动金项目(BQD2012007) (BQD2012007)

国家自然科学基金(31301280). (31301280)

农业工程学报

OA北大核心CSCDCSTPCD

1002-6819

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