首页> 外文期刊>Journal of Agriculture and Ecology Research International >Effect of Mulching on Microclimatic Manipulation, Weed Suppression, and Growth and Yield of Pea (Pisum sativum L.)
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Effect of Mulching on Microclimatic Manipulation, Weed Suppression, and Growth and Yield of Pea (Pisum sativum L.)

机译:地膜覆盖对豌豆(Pisum sativum L.)小气候控制,杂草抑制以及生长和产量的影响

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Aim: An experiment was conducted in the Bangladesh Agricultural University to study the effect of various mulches on microclimatic manipulation, weed suppression, and growth and yield of pea ( Pisum sativum L.). Study Design: Treatments were comprised of transparent polyethylene, black polyethylene and rice straw mulches and a no mulch treatment (control). Treatments were laid-out following a randomized complete block design with three replicates. Place and Duration of Study: The study was conducted in the Field Laboratory of the Department of Crop Botany, Bangladesh Agricultural University, Mymensingh, during the cropping season extended from November 2009 to February 2010. Methodology: Measurements included soil and air temperatures, soil water, weed and crop dry weights, plant height, primary branch number per plant, yield components, and grain yield. Results: The transparent and black polyethylene covers increased soil temperature whereas rice straw decreased it as compared to that at no mulched soil. However, all mulch covers retained significantly higher amount of soil water in the order of black polyethylene>transparent polyethylene>rice straw>no mulch. Weed growth was suppressed by black polyethylene mulch whereas it was promoted under transparent film followed by the no mulched soil. Plant height, number of primary branches per plant, leaf area index, dry matter accumulation, seed yield and yield contributing attributes like number of pod per plant and seed per pod, seed weight per plant and individual seed weight were influenced by different mulches. High yield attributes occurred from the crops grown with black or transparent polyethylene mulches whereas lowest yields occurred from the crops grown with rice straw mulch or control. The highest seed yield was obtained from the crops grown with black (5.66 t/ha) or transparent polyethylene covers (5.54 t/ha), and the lowest occurred with rice straw (4.38 t/ha) or with no mulch (4.26 t/ha). Conclusion: Black or transparent polyethylene sheet can be used as an effective mulching material for the better yield of pea crop under the existing agro-climatic conditions of Bangladesh.
机译:目的:在孟加拉国农业大学进行了一项实验,研究了各种覆盖物对豌豆(Pisum sativum L.)的微气候操纵,杂草抑制以及生长和产量的影响。研究设计:处理包括透明聚乙烯,黑色聚乙烯和稻草覆盖物和无覆盖物处理(对照)。在随机重复的完整区组设计中重复进行三个重复的治疗。研究的地点和持续时间:该研究是在2009年11月至2010年2月的种植季节期间,在孟加拉国农业大学Mymensingh作物植物学系的田间实验室进行的。方法:测量包括土壤和空气温度,土壤水,杂草和农作物的干重,植物高度,每株植物的主要分支数,产量构成和谷物产量。结果:与没有覆盖的土壤相比,透明和黑色的聚乙烯覆盖了升高的土壤温度,而稻草降低了土壤温度。但是,所有覆盖物覆盖的土壤水量明显较高,依次为黑色聚乙烯>透明聚乙烯>稻草>无覆盖物。黑色聚乙烯覆盖物抑制了杂草的生长,而透明膜下无杂草的土壤促进了杂草的生长。株高,单株初生枝数,叶面积指数,干物质积累,种子产量和产量贡献属性(如每株豆荚和每株种子的种子数,每株植物的种子重量和个体种子重量)受到不同覆盖物的影响。黑色或透明聚乙烯覆盖物种植的农作物高产,而稻草覆盖物或对照种植的农作物低产。从黑色(5.66吨/公顷)或透明聚乙烯覆盖物(5.54吨/公顷)种植的农作物中获得最高的种子产量,最低的是稻草(4.38吨/公顷)或没有覆盖物(4.26吨/公顷)。哈)。结论:在孟加拉国现有的农业气候条件下,黑色或透明的聚乙烯片材可以用作有效的覆盖材料,以提高豌豆作物的产量。

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