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Upland rice yield as affected by previous summer crop rotation (soybean or upland rice) and glyphosate management on cover crops.

机译:旱稻产量受先前夏季农作物轮作(大豆或旱稻)和遮盖作物草甘膦管理的影响。

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摘要

The appropriate chemical management of cover crops in no-tillage aims to obtain greater benefits with its employment in agricultural systems. The objective of this study was to assess upland rice yield as affected by the previous summer crop, species and desiccation timing of cover crops by glyphosate. Sown cover crops were sown (November 2007), followed by rice in half of the experimental area and soybean in the other half (November 2008). After the harvesting of these crops, the same cover crops were sown again (March 2009) and followed by upland rice in the total area (November 2009). The experiment consisted of the combination of five cover crops (fallow, Panicum maximum, Brachiaria ruziziensis, B. brizantha and Pennisetum glaucum), four desiccation timings (30, 20, 10 and 0 days before rice sowing), and two antecedents of the summer crop (rice or soybean) under no-tillage system (NTS), plus two control treatments at conventional tillage system (CTS). Cover crops significantly affect rice grain yield and its components. There is a significant tendency to highest yield when cover crop desiccation is conducted farther from the rice sowing date (from 2,577.1 kg ha-1 ? desiccation at rice sowing to 3,115.30 kg ha-1 ? desiccation 30 days before rice sowing). Soybean as an antecedent of summer crop allows better upland rice yield (3,754 kg ha-1) than rice as an antecedent of summer crop (2,635 kg ha-1); fallow/soybean/fallow (4,507 kg ha-1) and millet/soybean/millet (4,765 kg ha-1) rotation at no-tillage system, and incorporated fallow /soybean/ incorporated fallow (4,427 kg ha-1) at conventional tillage system allow the highest rice yield; upland rice yield is similar at no-till (3,194 kg ha-1) and till system (2,878 kg ha-1).
机译:免耕覆盖性作物的适当化学管理旨在通过在农业系统中就业来获得更大的收益。这项研究的目的是评估旱稻产量,该产量受先前夏季作物,草甘膦覆盖作物的种类和干燥时间的影响。播种了被覆作物(2007年11月),随后是试验区一半的水稻,另一半是大豆(2008年11月)。收割完这些作物后,再次播种相同的农作物(2009年3月),然后在整个面积上播种旱稻(2009年11月)。该试验由五种覆盖作物(休耕,最大恐慌,芸苔Brachiaria ruziziensis,B。brizantha和Pensetetum glaucum),四个脱水时间(水稻播种前30、20、10和0天)和夏季的两个前体组成。免耕(NTS)作物(大米或大豆),加上常规耕作系统(CTS)的两种对照处理。覆盖作物会严重影响水稻籽粒的产量及其组成。在距水稻播种日期较远的时间进行覆盖作物的干燥(从水稻播种时的2,577.1 kg ha-1?干燥到水稻播种前30天的3,115.30 kg ha-1?干燥),有明显的最高产量趋势。大豆作为夏季作物的前作比水稻作为夏季作物的前作(2,635 kg ha-1)具有更好的陆稻产量(3,754 kg ha-1);免耕方式下的休闲/大豆/休闲(4,507 kg ha-1)和小米/大豆/小米(4,765 kg ha-1)的轮作,常规耕作中包括休闲/大豆/休闲(4,427 kg ha-1)该系统可实现最高的水稻产量;免耕(3,194 kg ha-1)和免耕系统(2,878 kg ha-1)的旱稻产量相似。

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