Effects of small ridge and furrow mulching degradable film on dry direct seeded rice

Abstract Global climate change and socio-economic development have led to a shortage of water and labour resources, which has had a significant impact on rice cultivation. In this study, the application of micro-ridge-furrow planting technology and degradable film mulching in dry direct-seeded rice...

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Autores principales: Hui Li, Shan Zeng, Xiwen Luo, Longyu Fang, Zhanhao Liang, Wenwu Yang
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/a6392bd0921946e9b22b97395c55f07c
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spelling oai:doaj.org-article:a6392bd0921946e9b22b97395c55f07c2021-12-02T14:01:22ZEffects of small ridge and furrow mulching degradable film on dry direct seeded rice10.1038/s41598-020-79227-92045-2322https://doaj.org/article/a6392bd0921946e9b22b97395c55f07c2021-01-01T00:00:00Zhttps://doi.org/10.1038/s41598-020-79227-9https://doaj.org/toc/2045-2322Abstract Global climate change and socio-economic development have led to a shortage of water and labour resources, which has had a significant impact on rice cultivation. In this study, the application of micro-ridge-furrow planting technology and degradable film mulching in dry direct-seeded rice was investigated to address the factors restricting the development of the rice industry and reduce the impact of rice production on the environment. The effects of a micro-ridge-furrow planting pattern and degradable film mulching on soil temperature, seedling growth, and yield of dry direct-seeded rice in a semiarid region of China were studied through three field experiments: micro-ridge-furrow mulching with traditional plastic film (T1); micro-ridge-furrow mulching with degradable film (T2); and traditional flat-cropping mulching with traditional plastic film (CK). The experimental results demonstrated that the micro-ridge-furrow mulching film planting pattern promoted the germination of rice seeds and improved the soil temperature, plant height, leaf area, dry mass, and grain yield. T2 had the highest average soil temperature (14.68–17.83 ℃ during the day; 14.4–15.74 ℃ at night), leaf area (41.85 cm2 plant−1), root dry mass (45.32 mg plant−1), shoot dry mass (58.46 mg plant−1), root–shoot ratio (0.821), and yield (8.112 t ha−1). In summary, the micro-ridge-furrow mulching with degradable film (T2) is recommended as an efficient planting and mulching pattern for sustainably solving environmental problems and improving grain yield in semiarid regions of China.Hui LiShan ZengXiwen LuoLongyu FangZhanhao LiangWenwu YangNature PortfolioarticleMedicineRScienceQENScientific Reports, Vol 11, Iss 1, Pp 1-12 (2021)
institution DOAJ
collection DOAJ
language EN
topic Medicine
R
Science
Q
spellingShingle Medicine
R
Science
Q
Hui Li
Shan Zeng
Xiwen Luo
Longyu Fang
Zhanhao Liang
Wenwu Yang
Effects of small ridge and furrow mulching degradable film on dry direct seeded rice
description Abstract Global climate change and socio-economic development have led to a shortage of water and labour resources, which has had a significant impact on rice cultivation. In this study, the application of micro-ridge-furrow planting technology and degradable film mulching in dry direct-seeded rice was investigated to address the factors restricting the development of the rice industry and reduce the impact of rice production on the environment. The effects of a micro-ridge-furrow planting pattern and degradable film mulching on soil temperature, seedling growth, and yield of dry direct-seeded rice in a semiarid region of China were studied through three field experiments: micro-ridge-furrow mulching with traditional plastic film (T1); micro-ridge-furrow mulching with degradable film (T2); and traditional flat-cropping mulching with traditional plastic film (CK). The experimental results demonstrated that the micro-ridge-furrow mulching film planting pattern promoted the germination of rice seeds and improved the soil temperature, plant height, leaf area, dry mass, and grain yield. T2 had the highest average soil temperature (14.68–17.83 ℃ during the day; 14.4–15.74 ℃ at night), leaf area (41.85 cm2 plant−1), root dry mass (45.32 mg plant−1), shoot dry mass (58.46 mg plant−1), root–shoot ratio (0.821), and yield (8.112 t ha−1). In summary, the micro-ridge-furrow mulching with degradable film (T2) is recommended as an efficient planting and mulching pattern for sustainably solving environmental problems and improving grain yield in semiarid regions of China.
format article
author Hui Li
Shan Zeng
Xiwen Luo
Longyu Fang
Zhanhao Liang
Wenwu Yang
author_facet Hui Li
Shan Zeng
Xiwen Luo
Longyu Fang
Zhanhao Liang
Wenwu Yang
author_sort Hui Li
title Effects of small ridge and furrow mulching degradable film on dry direct seeded rice
title_short Effects of small ridge and furrow mulching degradable film on dry direct seeded rice
title_full Effects of small ridge and furrow mulching degradable film on dry direct seeded rice
title_fullStr Effects of small ridge and furrow mulching degradable film on dry direct seeded rice
title_full_unstemmed Effects of small ridge and furrow mulching degradable film on dry direct seeded rice
title_sort effects of small ridge and furrow mulching degradable film on dry direct seeded rice
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/a6392bd0921946e9b22b97395c55f07c
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AT xiwenluo effectsofsmallridgeandfurrowmulchingdegradablefilmondrydirectseededrice
AT longyufang effectsofsmallridgeandfurrowmulchingdegradablefilmondrydirectseededrice
AT zhanhaoliang effectsofsmallridgeandfurrowmulchingdegradablefilmondrydirectseededrice
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