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使用犬粪便接种物对豆类进行化学成分及体外发酵特性研究

Chemical composition and in vitro fermentation characteristics of legumes using canine fecal inoculum.

作者信息

Traughber Zachary T, He Fei, Hoke Jolene M, Davenport Gary M, de Godoy Maria R C

机构信息

Department of Animal Sciences, University of Illinois, Urbana, IL.

Archer Daniels Midland Company, Decatur, IL.

出版信息

Transl Anim Sci. 2020 Oct 30;4(4):txaa200. doi: 10.1093/tas/txaa200. eCollection 2020 Oct.

Abstract

Legumes are a popular grain-free alternative carbohydrate source in canine diets, however, information on their fermentative characteristics have not been established. Thus, the objectives of the present study were to 1) quantify the chemical compositions and 2) fermentative profile of select legumes using canine fecal inoculum. Five legume varieties, whole yellow peas (), green lentils (), black bean grits (), navy bean powder (), and garbanzo beans, were analyzed and compared to a positive control, beet pulp (). Substrates were analyzed for gross energy (), dry and organic matter, crude protein (), acid hydrolyzed fat, and total dietary fiber () fractions, beta-glucans, starch-free, and hydrolyzed sugars, as well as fermentative characteristics: pH, short-chain fatty acids (), branched-chain fatty acids (), total gas, hydrogen, and methane. Substrates then underwent a two-stage in vitro digestion and subsequent fermentation using canine fecal inoculum for 0, 3, 6, 9, and 12 h. All test substrates contained approximately 8% to 9% moisture and 4.5 kcal/g GE. The highest CP content was observed in GL (27%). Analyzed TDF content of test substrates was greatest for WYP (32%) and GL (36%). Total starch content was greatest for GL (58%) and WYP (56%). Sucrose and stachyose were the most predominant free sugars and glucose was the most predominant hydrolyzed sugar among test substrates. After 3 and 6 h of fermentation, a net negative change in pH was observed among most substrates with a net negative change in all substrates after 9 and 12 h. Values for SCFA did not differ among substrates after 3 or 6 h of fermentation with BP and WYP among the greatest acetate (1,656 and 1,765 umol/g, respectively) and propionate production values (157.7 and 126.1, respectively) after 9 h. All substrates produced greater total gas volumes than WYP after 3 h, with no differences observed after any other time points. However, BP hydrogen production values were greater after 9 and 12 h ( < 0.0001; 726,042 and 394,675 ng/g, respectively) with greater methane production values after 12 h ( < 0.0001; 54,291 ng/g) than all test substrates. These data suggest that legumes offer a diverse macronutrient profile and appear to be a source of slowly fermentable fiber, which may have beneficial implications on the ratios of saccharolytic to proteolytic fermentation toward the distal colon.

摘要

豆类是犬粮中一种很受欢迎的无谷物替代碳水化合物来源,然而,关于它们的发酵特性的信息尚未确定。因此,本研究的目的是:1)量化选定豆类的化学成分;2)使用犬粪便接种物研究其发酵特征。分析了五个豆类品种,即黄豌豆、绿扁豆、黑豆粗粉、海军豆粉和鹰嘴豆,并与阳性对照甜菜粕进行比较。分析了底物的总能、干物质和有机物质、粗蛋白、酸水解脂肪、总膳食纤维组分、β-葡聚糖、无淀粉和水解糖,以及发酵特征:pH值、短链脂肪酸、支链脂肪酸、总气体、氢气和甲烷。然后,使用犬粪便接种物对底物进行两阶段体外消化和随后的发酵,持续0、3、6、9和12小时。所有测试底物的水分含量约为8%至9%,总能为4.5千卡/克。绿扁豆的粗蛋白含量最高(27%)。测试底物的总膳食纤维含量以黄豌豆(32%)和绿扁豆(36%)最高。总淀粉含量以绿扁豆(58%)和黄豌豆(56%)最高。蔗糖和水苏糖是测试底物中最主要的游离糖,葡萄糖是最主要的水解糖。发酵3小时和6小时后,大多数底物的pH值出现净负变化,9小时和12小时后所有底物的pH值均出现净负变化。发酵3小时或6小时后,底物之间的短链脂肪酸值没有差异,9小时后,甜菜粕和黄豌豆的乙酸盐产量值最高(分别为1656和1765微摩尔/克),丙酸盐产量值最高(分别为157.7和126.1)。所有底物在3小时后产生的总气体体积均比黄豌豆大,在其他任何时间点均未观察到差异。然而,甜菜粕在9小时和12小时后的氢气产量值更高(P<0.0001;分别为726,042和394,675纳克/克),12小时后的甲烷产量值更高(P<0.0001;54,291纳克/克),高于所有测试底物。这些数据表明,豆类提供了多样化的宏量营养素组成,似乎是一种缓慢发酵纤维的来源,这可能对远端结肠的糖分解发酵与蛋白分解发酵的比例产生有益影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e75/7723332/6bfbcc6f04cb/txaa200_fig1.jpg

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