首页> 外文期刊>Ciencia Rural >Epocas de emergencia de Brachiaria brizantha no desenvolvimento da cultura da sojaBrachiaria brizantha emergence periods on soybean development
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Epocas de emergencia de Brachiaria brizantha no desenvolvimento da cultura da sojaBrachiaria brizantha emergence periods on soybean development

机译:Brachiaria brizantha出现在大豆发育时期的时间Brachiaria brizantha出现在大豆发育时期的时间

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Crop-livestock integration benefits grain and animal production simultaneously. However, the weed species that mainly competes with the annual crop is forage. This study aimed at the quantification of Brachiaria brizantha emergence periods on soybean. The trial carried out under greenhouse conditions evaluated 7 emergence periods of B. brizantha (-21, -14, -7, 0, 7, 14, and 21 days after soybean emergence) and soybean monocrop. When soybean was in full flower (stage R2), the leaf area and dry biomass partitioning in both species, the number of trifoliolate leaves and nodes per soybean plant, as well as the stem number of B. brizantha were evaluated At soybean harvest (stage R8) the aerial dry biomass and stem number of B. brizantha were determined as well as the grain yield per plant, number of pods per plant, and number of seeds per pod. The B. brizantha emergence period in relation to soybean was determinant for both species' growth. A grain yield reduction for intercropped soybean compared to soybean monocrop of 97, 96, 91, 80, 34, 27, and 15% was observed, approximately, when B. brizantha emerged within -21, -14, -7, 0, 7, 14, and 21 days, respectively. The forage accumulated an aerial dry biomass of 275, 279, 267, 202, 79, 46, and 23 g per pot in these treatments, respectively. Listed in decreasing order, the morphological traits expressing soybean susceptibility to B. brizantha interference were: trifoliolate leaf numbers and leaf area > dry biomass of leaves, stem, roots and nodules > node number The number of pods per soybean plant was not affected by B. brizantha interference when its emergence occurred 21 days after soybean emergence and the number of seeds per pod was only negatively affected when the forage emergence occurred -21 and -14 days after soybean's.
机译:作物-畜牧一体化同时使谷物和动物生产受益。但是,主要与一年生作物竞争的杂草是牧草。这项研究旨在量化Brachiaria brizantha在大豆上的出苗期。在温室条件下进行的试验评估了B. brizantha的7个出苗期(大豆出苗后-21,-14,-7、0、7、14和21天)和大豆单作。当大豆盛花时(R2阶段),两种植物的叶面积和干生物量分配,每株大豆的三叶草叶和节数以及B. brizantha的茎数在大豆收获时(阶段R8)确定了B. brizantha的空中干燥生物量和茎数,以及每株植物的谷物产量,每株植物的豆荚数和每荚的种子数。与大豆有关的B. brizantha出苗期是两个物种生长的决定性因素。与单作大豆的97、96、91、80、34、27和15%相比,间作大豆的谷物单产下降,大约在B. brizantha出现在-21,-14,-7、0、7时,分别为14天和21天。在这些处理中,草料每罐分别累积了275、279、267、202、79、46和23 g的空中干燥生物量。按降序排列,表示大豆易受B. brizantha干扰的形态性状为:三叶小叶数和叶面积>叶片,茎,根和根瘤的干生物量>结节数每个大豆植株的豆荚数不受B影响。brizantha干扰在大豆出苗后21天出现时才发生,并且当豆粕在大豆出苗后-21天和-14天出现时,每个豆荚的种子数只会受到负面影响。

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