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首页> 外文期刊>Advances in Animal and Veterinary Sciences >The Potential of Pretreated Oil Palm Frond in Enhancing Rumen Degradability and Growth Performance: A Revie
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The Potential of Pretreated Oil Palm Frond in Enhancing Rumen Degradability and Growth Performance: A Revie

机译:预处理油棕榈叶伴有瘤胃降解性和生长绩效的潜力:Revie

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A million tons of agricultural by-products are produced each year. Many farmers in tropical countries used this by-product as the main feed sources for livestock feeding. Nonetheless, most of the agricultural by-products have poor nutritional value, primarily due to high crude fibre content, low crude protein, total fat, energy, mineral and vitamin contents. Similarly, oil palm frond (OPF) contains high lignocellulosic content with low nutritional value which can be important restrictions on the use of OPF as livestock feed. The chemical composition showed that OPF was composed of 70% fibre and 22% soluble carbohydrates on a dry matter (DM) basis. This problem has resulted in reduced animal production. Various approaches were investigated to enhance these feeds, including physical, chemical and biological pretreatments. Biological pretreatment may be amongst the most practical because it is safe and effective in decreasing content of fibre fractions with increased content of crude protein. Further research is required to investigate the biological pretreatment with enzyme extract from white rot fungi to reduce dry matter losses and shorten duration of incubation time. This review highlights the lignocellulose content of the agricultural by-product especially OPF, the shortcomings of rumen microbes in degrading the agricultural by-product and pretreatment strategies for OPF. The review also includes the effect of pretreated OPF on rumen degradability and growth performance. This knowledge can be used in upgrading the OPF as ruminant feed as the basis for future study.
机译:每年生产一百万吨的农业副产品。热带国家的许多农民使用这种副产品作为牲畜喂养的主要饲料来源。尽管如此,大多数农业副产品具有较差的营养价值,主要是由于粗纤维含量高,粗蛋白质,总脂肪,能量,矿物质和维生素含量。同样,油棕榈叶(OPF)含有高的木质纤维素含量,具有低营养价值,这可能是对蛋白酶作为牲畜饲料的使用的重要限制。化学组成表明,OPF在干物质(DM)的基础上由70%的纤维和22%可溶性碳水化合物组成。这个问题导致了动物生产减少。研究了各种方法以增强这些饲料,包括物理,化学和生物预处理。生物预处理可以是最实用的,因为它在降低纤维级分的含量下降含量增加含量的粗蛋白质。需要进一步的研究来研究来自白腐真菌的酶提取物的生物预处理,以减少干物质损失并缩短孵育时间的持续时间。本综述突出了农业副产物的木质纤维素含量,特别是OPF,瘤胃微生物在降解农业副产物和预处理策略方面的缺乏症。审查还包括预处理的OPF对瘤胃降解性和生长性能的影响。这种知识可用于将OPF作为反刍动物饲料作为未来研究的基础。

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