Dispersion is essential in crop residue application.

Q2 Pharmacology, Toxicology and Pharmaceutics
F1000Research Pub Date : 2025-08-28 eCollection Date: 2018-01-01 DOI:10.12688/f1000research.16748.3
Masato Oda
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引用次数: 0

Abstract

Background: Crop residue application can maintain soil fertility and sustain agriculture. However, the effects of residue application are unstable because of variable weather conditions and the residual effects of crop residue application. Furthermore, residue application often reduces crop yields. Therefore, I tried to clarify effective residue application factors in an environment which was has stable weather conditions and low residual effects.

Methods: Majuro atoll, a coral sand atoll near the equator, was selected for the experiment site because of its stable weather and low residual effect of coral sand. A factorial design experiment using sweet corn was conducted based on the following four factors: fungi propagation before application, cutting residue into pieces, dispersion (or accumulation) of applied residue, and placement (on the surface or incorporation) with an equal amount of crop residue. The effects of each factors on the corn yields were evaluated using Cohen's effect size analysis.

Results: The dispersion showed the largest effect (1.2 in Cohen's), which exceeded the effect of incorporation (0.7). The interaction of dispersion and incorporation showed a huge effect (4.9) on corn yield.

Discussion: The effect of dispersion was not positive but it avoided the negative effects of residue clustering. Because, the toxicity of the plant residue and generation of toxic substances by anaerobic decomposition are widely known. Anaerobic decomposition occurs inside the residue clusters. However, dispersion reduced the toxicity by adsorption in soil and avoiding anaerobic decomposition. Furthermore, incorporation showed an interaction effect, but surface placement did not.

Conclusion: The dispersion of crop residue enhanced the positive effect of crop residue incorporation by avoiding the toxicity from crop residue. This finding adds a new viewpoint for the controversy between conventional and conservation agriculture.

分散在作物残茬施用中是必不可少的。
背景:作物残茬施用可以保持土壤肥力,维持农业。然而,由于天气条件的变化和作物残茬施用的残余效应,残茬施用的效果是不稳定的。此外,施用残茬往往会降低作物产量。因此,我试图在天气条件稳定,残留效应低的环境下,明确有效的残渣施用因素。方法:选择赤道附近的珊瑚沙环礁马朱罗环礁作为实验地点,因其气候稳定,珊瑚沙残留效应小。以甜玉米为试验对象,基于施前菌种繁殖、残茬切块、残茬分散(或积累)、等量作物残茬放置(在地表或掺入)4个因素进行因子设计试验。采用Cohen效应量分析评价各因素对玉米产量的影响。结果:弥散度的影响最大(Cohen's为1.2),超过了掺入效应(Cohen's为0.7)。分散与掺入的交互作用对玉米产量有巨大影响(4.9)。讨论:分散的影响不是正面的,但它避免了残馀聚类的负面影响。因为,植物残渣的毒性和厌氧分解产生的有毒物质是众所周知的。厌氧分解发生在残渣簇内。然而,分散通过在土壤中的吸附和避免厌氧分解而降低了毒性。此外,掺入表现出相互作用效应,而表面放置则没有。结论:作物残茬的分散,避免了作物残茬的毒性,增强了作物残茬掺入的积极作用。这一发现为传统农业和保护性农业之间的争论提供了一个新的视角。
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来源期刊
F1000Research
F1000Research Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (all)
CiteScore
5.00
自引率
0.00%
发文量
1646
审稿时长
1 weeks
期刊介绍: F1000Research publishes articles and other research outputs reporting basic scientific, scholarly, translational and clinical research across the physical and life sciences, engineering, medicine, social sciences and humanities. F1000Research is a scholarly publication platform set up for the scientific, scholarly and medical research community; each article has at least one author who is a qualified researcher, scholar or clinician actively working in their speciality and who has made a key contribution to the article. Articles must be original (not duplications). All research is suitable irrespective of the perceived level of interest or novelty; we welcome confirmatory and negative results, as well as null studies. F1000Research publishes different type of research, including clinical trials, systematic reviews, software tools, method articles, and many others. Reviews and Opinion articles providing a balanced and comprehensive overview of the latest discoveries in a particular field, or presenting a personal perspective on recent developments, are also welcome. See the full list of article types we accept for more information.
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