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首页> 外文期刊>Renewable Agriculture and Food Systems >Comparison of crop management strategies involving crop genotype and weed management practices in conventional and more diverse cropping systems.
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Comparison of crop management strategies involving crop genotype and weed management practices in conventional and more diverse cropping systems.

机译:比较常规和更为多样化的种植系统中涉及作物基因型和杂草管理实践的作物管理策略。

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Cropping systems that include forage legumes and small grains in addition to corn (Zea mays L.) and soybean [Glycine max (L.) Merr.] can achieve similar or higher crop productivity and economic return than simpler corn-soybean rotations. We hypothesized that this rotation effect occurs regardless of the crop genotype planted and the herbicide and cultivation regime selected for weed management. To test this hypothesis, we conducted a 3-year experiment that compared three cropping systems: a conventional 2-year corn-soybean rotation, a 3-year corn-soybean-oat (Avena sativa L.)/red clover (Trifolium pretense L.) rotation, and a 4-year corn-soybean-oat/alfalfa-alfalfa (Medicago sativa L.) rotation. Within each cropping system, two contrasting sets of management strategies were used: (i) genetically engineered corn with resistance to insect pests (Ostrinia nubilalis Hubner and Diabrotica spp.) plus the broadcast application of pre-emergence herbicides, followed in the rotation by a genetically engineered soybean variety with resistance to the herbicide glyphosate plus the post-emergence broadcast application of glyphosate; and (ii) non-genetically engineered corn plus the banded application of post-emergence herbicides, followed in the rotation by a non-genetically engineered soybean and banded application of several post-emergence herbicides. The two management strategies were identified as 'GE' and 'non-GE.' Corn yield was higher in the 3-year (12.51 Mg ha-1) and 4-year (12.79 Mg ha-1) rotations than in the conventional 2-year (12.16 Mg ha-1) rotation, and was also 2% higher with the GE strategy than with the non-GE strategy. Soybean yield was similar among rotation systems in 2008, but higher in the 3- and 4-year systems than the 2-year rotation in 2009 and 2010. Soybean yield was similar between management strategies in 2008, but higher in the GE strategy in 2009, and similar between strategies in the 3- and 4-year rotations in 2010. Increases in rotation length were accompanied by 88-91% reductions in synthetic N fertilizer application, and the use of the non-GE rather than the GE strategy was accompanied by a 93% reduction in herbicide active ingredients applied. Averaged over the period of 2008-2010, net returns to land and labor were highest for the 3-year rotation managed with either the GE ($928 ha-1yr-1) or non-GE ($936 ha-1yr-1) strategies, least in the 2-year rotation managed with the non-GE strategy ($738 ha-1yr-1), and intermediate in the other rotation x management combinations. Our results indicate that more diverse crop rotation systems can be as profitable as conventional corn-soybean systems and can provide farmers with greater flexibility in crop management options.
机译:与简单的玉米-大豆轮作相比,除玉米(Zea mays L.)和大豆(Glycine max(L.)Merr。)以外,还包括饲草类豆类和小粒作物的种植系统可以实现相似或更高的作物生产力和经济回报。我们假设这种旋转效应的发生与种植的农作物基因型以及除草剂的选择和除草方法无关。为了验证这一假设,我们进行了为期3年的实验,比较了三种种植系统:常规2年玉米-大豆轮作,3年玉米-大豆-燕麦(Avena sativa L。)/红三叶草(Trifolium pretense L 。)轮换,以及4年玉米-大豆-燕麦/苜蓿-苜蓿(Medicago sativa L.)轮换。在每个耕作系统中,使用了两种不同的管理策略:(i)对害虫具有抗性的转基因玉米(Ostrinia nubilalis Hubner和Diabrotica spp。),再加上播种前除草剂的施用,然后轮播使用转基因大豆品种,具有对除草剂草甘膦的抗性以及草甘膦的出苗后播种应用; (ii)非转基因玉米加上芽后除草剂的带状施用,然后轮换非转基因大豆和几种芽后除草剂的带状施用。这两种管理策略被标识为“ GE”和“非GE”。 3年(12.51 Mg ha -1 )和4年(12.79 Mg ha -1 )轮作的玉米单产高于常规的2年( 12.16 Mg ha -1 )旋转,并且GE策略比非GE策略高2%。 2008年轮作制度中的大豆产量相似,但3年和4年制中的大豆产量高于2009年和2010年的2年轮作。2008年不同管理策略中的大豆产量相似,但2009年GE战略中的大豆产量更高,以及在2010年进行3年和4年轮换的策略之间相似。轮换长度的增加伴随着合成氮肥施用量减少88-91%,并且伴随着使用非转基因而非转基因策略减少93%的除草剂活性成分。在2008年至2010年期间的平均水平下,用通用电气管理的三年轮换的土地和劳动力净回报最高($ 928 ha -1 yr -1 )或非GE($ 936 ha -1 yr -1 )策略,至少在使用非GE($ 738 ha -1 yr -1 ),并且位于其他轮播x管理组合中。我们的结果表明,更多样化的作物轮作制度可以像传统的玉米-大豆制度一样有利可图,并且可以为农民提供更大的作物管理选择灵活性。

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