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Degradation in the rumen of treated and untreated soya bean meal proteins

机译:经处理和未经处理的豆粕蛋白的瘤胃降解

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In order to estimate the quantity of solubilized nitrogen in the rumen that can contribute to intestinal feed non-ammonia nitrogen, degradation in the rumen was studied both for a control soya bean meal (cSBM) and a treated one (tSBM) to assess simultaneously the kinetics of: 1) protein disappearance from rumen bags and 2) rumen fluid contents in various nitrogen fractions in the rumen fluid: total nitrogen (Nt), ammonia nitrogen (NH3-N), non-ammonia nitrogen (NAN), peptides-N and amino acids-N, and true protein (protein-N). Measurements were taken on four sheep fed successiveIy with four diets consisting of hay plus one of the two meals, in the proportion of 40% and 20% control meal (cSBM 40% and cSBM 20%), 40% treated meal (tSBM) and a control diet based on hay alone supplemented with starch and urea (HSU). The effective degradability estimated with the nylon bag method was 0.727 and 0.502 for cSBM and tSBM, respectively. Sodium dodecyl sulphate gel electrophoresis (SDS-PAGE) showed that the cSBM conglycinins were degraded at a higher rate in the rumen than glycinins. The same proteins were degraded at a slower rate in the tSBM. Most of the nitrogen degraded in the rumen fluid was in NH3-N form, and only 30% as NAN. For cSBM, NAN comprised protein-N (concentration was low 1 and 2 h after feeding), peptides-N and amino acids-N, while for the treated meal the NAN comprised solely peptides-N and amino acids-N. These results showed that for soya bean meal - a feed in which the dietary proteins are strongly degraded at moderate rates - very little of the solubilized proteins from the bags can escape degradation in the rumen. Whatever the meal studied (treated or untreated), the estimation of feed NAN in rumen fluid able to escape degradation in the rumen compared to the degraded proteins (calculated from the degradation in nylon bags) was negligible (about 1%). ((C) Elsevier / Inra). [References: 43]
机译:为了估计瘤胃中可溶解的氮量,这些氮可导致肠内饲料中的非氨氮,针对对照豆粕(cSBM)和经过处理的豆粕(tSBM)进行了瘤胃降解研究,以同时评估动力学:1)瘤胃袋中蛋白质的消失; 2)瘤胃液中各种氮组分中的瘤胃液含量:总氮(Nt),氨氮(NH3-N),非氨氮(NAN),肽-N和氨基酸-N,以及真正的蛋白质(protein-N)。对四只绵羊进行了测量,这些绵羊连续饲喂四种由干草加两种膳食之一组成的日粮,分别占对照膳食的40%和20%(cSBM 40%和cSBM 20%),40%的经处理的膳食(tSBM)和以干草为基础的补充淀粉和尿素(HSU)的对照饮食。用尼龙袋法估计的有效降解性对于cSBM和tSBM分别为0.727和0.502。十二烷基硫酸钠凝胶电泳(SDS-PAGE)显示,cSBM伴大豆球蛋白在瘤胃中的降解速率高于甘氨酸。相同的蛋白质在tSBM中降解的速度较慢。瘤胃液中降解的大多数氮是以NH3-N形式存在的,而只有30%为NAN。对于cSBM,NAN包含蛋白质-N(进食后1和2小时浓度较低),肽-N和氨基酸-N,而对于经处理的膳食,NAN仅包含肽-N和氨基酸-N。这些结果表明,对于豆粕(一种饲料中的膳食蛋白质以中等速度强烈降解)而言,来自袋子的增溶蛋白质中很少有能逃脱瘤胃中的降解。无论研究的是什么餐食(处理或未处理),与降解蛋白质(由尼龙袋中的降解计算得出)相比,能够逃避瘤胃降解的瘤胃液中饲料NAN的估算都可以忽略不计(约1%)。 ((C)爱思唯尔/ Inra)。 [参考:43]

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