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Influence of soybean-crop proportion on the conservation of maize-soybean bi-crop silage

机译:大豆作物比例对玉米大豆双作物青贮饲养的影响

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Our objective was to determine the influence of soybean proportion on the conservation of maize-soybean bi-crop silages. We hypothesized that the aerobic stability of bi-crop silages would increase with the level of legume in the mixture, without affecting fermentative losses. Maize (Zea mays) and soybean (Glycine max) were cultivated in alternating rows within four 0.5-ha plots and manually harvested when the maize crop reached 330 g/kg of dry matter (DM). After cut, maize and soybean plants from each plot were chopped separately. Five proportions of whole-plant soybean were mixed with whole-plant maize, ensiled in laboratory silos (0, 125, 250, 375 and 500 g/kg of fresh matter) and stored for 90 d. As expected, crude protein increased linearly with the inclusion of soybean crop in the mixed silages (from 106 to 154 g/kg DM), mainly at the expense of soluble N. On the other hand, the addition of soybean increased DM loss during fermentation (from 59 to 109 g/kg) without altering yeast counts and aerobic stability of the silages. The increase in 2,3-butanediol, ethanol and acetic acid concentrations suggested that soybean addition favored the development of enterobacteria. In vitro DM and fiber digestibility linearly decreased with the inclusion of soybean, due to an increase in acid detergent fiber content. In conclusion, despite the expected increase in crude protein, mixing up to 500 g/kg of whole-plant soybean in whole-plant maize at ensiling did not improve aerobic stability, increased fermentative losses and reduced the in vitro digestibility of the silages compared with whole-plant maize silage.
机译:我们的目标是确定大豆比例对玉米 - 大豆双作物青贮饲养的影响。我们假设双作物青贮的有氧稳定性随着混合物中的豆科水平而增加,而不会影响发酵损失。玉米(Zea mays)和大豆(甘氨酸Max)在四个0.5-ha图中的交替行中培养并在玉米作物达到330g / kg干物质(Dm)时手动收获。切割后,每种图的玉米和大豆植物分别切碎。将五种全植物大豆与全植物玉米混合,在实验室筒仓(0,125,250,375和500g / kg的新鲜物质)中进行,储存90℃。正如预期的那样,粗蛋白随着混合的青贮血剂(106至154g / kg DM)包含大豆作物,主要以可溶性N.另一方面,在发酵过程中增加大豆损失增加了大豆损失增加(从59到109 g / kg)而不改变酵母计数和青贮的有氧稳定性。 2,3-丁二醇,乙醇和乙酸浓度的增加表明大豆添加有利于进肠的发育。由于酸性洗涤剂纤维含量的增加,在体外DM和纤维消化率随着大豆线性降低。总之,尽管粗蛋白的预期增加,但在酶中的整个植物玉米中混合高达500克/千克的全植物大豆并未提高好氧稳定性,增加发酵损失,并降低了宿粒的体外消化率。与全植物玉米青贮饲料。

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