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Reduction in lignin content and increase in the antioxidant capacity of corn and sugarcane silages treated with an enzymatic complex produced by white rot fungus

机译:降低木质素含量和玉米和甘蔗混合物的抗氧化能力的增加,用白色腐菌产生的酶综合体处理

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摘要

The objective was to evaluate the effect of the addition of 0, 10, 20, and 30 mg.kg-1 of natural matter of a lignocellulosic enzymatic complex produced by the white rot fungus on the chemical composition, cumulative gas production in vitro, and antioxidant compounds of corn and sugarcane silages. After being chopped and treated with the enzymatic complex, the plants were packed in vacuum-sealed bags. After 60 days, the mini silos were opened and the samples were dried in a forced ventilation oven at 55 °C for analysis of the proposed parameters. The experiment was conducted in a completely randomized design with four replicates per treatment. In the corn silage, there was a linear reduction in the lignin concentration. In the sugarcane silage showed a reduction of 12% in the lignin concentration, a linear reduction in the hemicellulose content, and a decrease of 8% in the cellulose concentration compared to the control treatment. The lignin monomers had linear increases in the syringyl:guaiacil ratio. This reflected on significant increases in the concentration of the non-fibrous carbohydrates and the A + B1 fraction of the carbohydrates, and a reduction in the C fraction. The in vitro gas production increased, the time of colonization and initiation of in vitro fermentation linearly decreased in both silages. The phenolic compounds and the antioxidant capacity increased linearly with the addition of the enzymes in both silages. The addition of the lignocellulolytic enzymes to the silages caused changes in the cell wall, resulting in improvements in the in vitro fermentative parameters, besides the additional effect on the antioxidant capacity. There was an effect of the addition of the enzymes on the evaluated fodder, and the best concentration was, on average, 20 mg kg-1 MN for corn silage and 10 mg kg-1 NM for sugarcane silage.
机译:的目的是评价添加的0,10,20的作用,和木质纤维素酶复合物由白腐菌的化学组合物生产的,累积产气体外的天然物质30 mg.kg-1,和玉米和甘蔗青贮抗氧化剂化合物。被切碎,并与酶复合物处理后,将植物装在真空密封的袋。 60天之后,微型筒仓被打开并且将样品在干燥在55℃的烘箱中所提出的参数进行分析的强制通风。实验在完全随机设计,每个处理四个重复进行。在玉米青贮,有一个在木质素浓度的线性下降。在甘蔗青贮显示该木质素浓度降低12%,在半纤维素含量的线性下降,并相对于对照治疗的8%纤维素浓度的降低。木质素单体曾在紫丁香线性增加:guaiacil比。这反映在[非纤维碳水化合物的浓度和碳水化合物的A + B1馏分,和C级分减少显著增加。体外产气增加,定殖和体外发酵开始的两个青贮线性减小的时间。酚类化合物和抗氧化能力与另外两个青贮酶的线性增加。加入木质纤维素酶的青贮引起细胞壁的变化,导致在体外发酵参数的改进,除了上的抗氧化能力的附加效果。有添加的评价饲料中的酶的的效果,而最好的浓度是,平均来说,20毫克KG-1 MN为玉米青贮饲料和10mg kg-1时NM甘蔗青贮饲料。

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