夏种豆科覆盖作物和终止耕作方式对轮作玉米氮素有效性的影响

IF 2.1 Q3 SOIL SCIENCE
Xueming Yang, W. D. Reynolds, C. Drury, M. Reeb
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引用次数: 0

摘要

夏季播种豆类覆盖作物可以减少侵蚀,减轻非生长季节的硝酸盐浸出损失,并为后续作物提供生物累积氮。然而,关于终止夏季播种覆盖作物的最有效方法,或者它们可以为后续作物提供的氮量,目前的信息很少。因此,我们在安大略省西南部的粘壤土上连续3年评估了选定的豆类覆盖作物和覆盖作物终止耕作方法对玉米(Zea mays L.)氮信用和大豆(Glycine max Merr.)-冬小麦(Triticum aestivum L.)/覆盖作物-玉米轮作的粮食产量的影响。覆盖作物在小麦收获后的夏季播种,包括毛茛(Vicia villosa L.Roth)、红三叶草(Trifolium pratense L.)、白三叶草加深红三叶草混合物(incarnatum和Trifolium alba L.)和无覆盖作物对照(CK)。覆盖作物嵌套在终止耕作法中,包括秋季犁板犁下,春季在带状耕作或免耕下喷洒除草剂,然后种植玉米。玉米施用的氮肥是通过侧覆施用的,CK施用200 kg N ha-1,覆盖作物施用100 kg N ha-。平均3年以上,地上生物量氮水平遵循以下模式:毛豌豆>白三叶草加深红三叶草混合物>红三叶草秋季播种终止。春季终止覆盖作物生物量氮水平没有显著差异。终止耕作方式和覆盖作物种类对玉米对覆盖作物的响应有显著影响,其中免耕后玉米林分较差,红三叶草和白三叶草加深红色三叶草。秋季犁耕终止提供了80-85 kg N ha-1的N信用范围,这显著大于春季喷洒除草剂时的N信用。在春季带状耕作和免耕条件下,毛豌豆的玉米产量明显高于红三叶草和白色加深红色三叶草的混合物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impacts of summer-seeded legume cover crops and termination-tillage method on nitrogen availability to corn in rotation
Summer-seeding legume cover crops can reduce erosion, mitigate nitrate leaching losses during the non-growing season, and provide bio-accumulated nitrogen (N) to the following crop. Very little information is available, however, on the most effective methods for terminating summer-seeded cover crops, or on the amount of N they can provide to subsequent crops. We therefore evaluated the impacts of selected legume cover crops and cover crop termination-tillage methods on corn (Zea mays L.) N credit and grain yield in a soybean (Glycine max Merr.) - winter wheat (Triticum aestivum L.)/cover crop - corn rotation over 3 consecutive years on a clay loam soil in southwestern Ontario. The cover crops were summer-seeded after wheat harvest, and included hairy vetch (Vicia villosa L. Roth), red clover (Trifolium pratense L.), white clover plus crimson clover mix (incarnatum and Trifolium alba L.), and a no cover crop control (CK). The cover crops were nested within termination-tillage method, including moldboard plow-down in fall, and herbicide spray-down in spring under strip-tillage or no-tillage then corn planting. Nitrogen fertilizer to corn was applied via side-dress at 200 kg N ha-1 to the CKs, and at 100 kg N ha-1 to the cover crops. Averaged over 3 years, above-ground biomass N level followed the pattern: hairy vetch > white clover plus crimson clover mix > red clover for fall plow-down termination. There were no significant differences in cover crop biomass N levels for spring termination. Corn response to cover crop was significantly affected by termination-tillage method and cover crop species, with poor corn stands after no-tillage, red clover and white plus crimson clover. Fall plow-down termination provided a range in N credit of 80-85 kg N ha-1, which was significantly greater than the N credit under herbicide spray-down in spring. Under spring strip-tillage and no-tillage, hairy vetch produced significantly greater corn grain yields than red clover and white plus crimson clover mix.
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