Yan Cheng-Hai, Chen Fang-Hui, Yang Yu-Lu, Shen Li-Wei, Xun Xiao-Meng, Zhang Zhi-Ang, Zhan Yu-Fan, You Shuai, Wang Jun
Jiangsu Key Laboratory of Sericultural Biology and Biotechnology, School of Biotechnology, Jiangsu University of Science and Technology, Zhenjiang, China.
Key Laboratory of Silkworm and Mulberry Genetic Improvement, Ministry of Agricultural and Rural Affairs, Sericultural Research Institute, Chinese Academy of Agricultural Sciences, Zhenjiang, China.
J Sci Food Agric. 2024 Mar 15;104(4):2204-2214. doi: 10.1002/jsfa.13103. Epub 2023 Nov 22.
With the requirements of environmental, cost and economic sustainability, new sources of alternative proteins in the livestock industry are receiving increasing attention. Mulberry (Morus alba L.) leaves are a unique feed resource because of their high protein content and large availability. Therefore, mining sustainable protein suitable for the animal husbandry industry in sericulture resources could achieve a win-win situation.
The protein content in mulberry leaves is 232.10-386.16 g kg , and the mean value of crude fat content is 43.76 ± 8.48 g kg , which has the advantages of protein content and energy. In addition, the average content of phytic acid in mulberry leaves is only 1.88 ± 0.56 g kg , which means that it is not inhibited in terms of nutrient absorption. Meanwhile, the digestibility of protein was Bean pulp > Sample 8 ≈ Alfalfa ≈ Sample 13 ≈ Cottonseed meal > Fish meal, and the β-turn and particle size of mulberry leaf protein are more conducive to digestion in vitro. Furthermore, the protein of Sample 13 had the richest essential amino acids (252.00 g kg ) and the highest essential amino acid index (EAAI), which was superior to conventional feed protein. In addition, the partial substitution of mulberry leaf protein (15%) significantly increased the EAAI value of conventional feed protein. However, to balance nutrition, it is necessary to combine mulberry leaf protein with other proteins to further broaden its application field.
Mulberry leaves are a new source of feed protein, which helps to alleviate the two major problems of mulberry resource surplus and feed protein resource shortage. © 2023 Society of Chemical Industry.
随着环境、成本和经济可持续性的要求,畜牧业中新型替代蛋白质来源受到越来越多的关注。桑叶因其高蛋白含量和丰富的可获得性,是一种独特的饲料资源。因此,从蚕桑资源中挖掘适合畜牧业的可持续蛋白质可实现双赢局面。
桑叶中的蛋白质含量为232.10 - 386.16 g/kg,粗脂肪含量平均值为43.76 ± 8.48 g/kg,具有蛋白质含量和能量方面的优势。此外,桑叶中植酸的平均含量仅为1.88 ± 0.56 g/kg,这意味着在营养吸收方面不会受到抑制。同时,蛋白质消化率为豆粕>样品8≈苜蓿≈样品13≈棉籽粕>鱼粉,且桑叶蛋白的β-转角和粒径更有利于体外消化。此外,样品13的蛋白质具有最丰富的必需氨基酸(252.00 g/kg)和最高的必需氨基酸指数(EAAI),优于传统饲料蛋白质。另外,桑叶蛋白(15%)的部分替代显著提高了传统饲料蛋白质的EAAI值。然而,为了平衡营养,有必要将桑叶蛋白与其他蛋白质结合,以进一步拓宽其应用领域。
桑叶是一种新型饲料蛋白质来源,有助于缓解蚕桑资源过剩和饲料蛋白质资源短缺这两大问题。© 2023化学工业协会。