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首页> 外文期刊>Journal of Animal Science >Evaluation of soluble corn fiber on chemical composition and nitrogen-corrected true metabolizable energy and its effects on in vitro fermentation and in vivo responses in dogs
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Evaluation of soluble corn fiber on chemical composition and nitrogen-corrected true metabolizable energy and its effects on in vitro fermentation and in vivo responses in dogs

机译:溶解玉米纤维对化学成分和氮校正真正代谢能量的评价及其对犬体外发酵和体内反应的影响

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摘要

Dietary fermentable fiber is known to benefit intestinal health of companion animals. Soluble corn fiber (SCF) was evaluated for its chemical composition, nitrogen-corrected true ME (TMEn) content, in vitro digestion and fermentation characteristics, and in vivo effects on nutrient digestibility, fecal fermentation end products, and modulation of the fecal microbiome of dogs. Soluble corn fiber contained 78% total dietary fiber, all present as soluble dietary fiber; 56% was low molecular weight soluble fiber (did not precipitate in 95% ethanol). The SCF also contained 26% starch and 8% resistant starch and had a TMEn value of 2.6 kcal/g. Soluble corn fiber was first subjected to in vitro hydrolytic-enzymatic digestion to determine extent of digestibility and then fermented using dog fecal inoculum, with fermentative outcomes measured at 0, 3, 6, 9, and 12 h. Hydrolytic-enzymatic digestion of SCF was only 7%. In vitro fermentation showed increased (P 0.05) concentrations of shortchain fatty acids through 12 h, with acetate, propionate, and butyrate reaching peak concentrations of 1,803, 926, and 112 mu mol/g DM, respectively. Fermentability of SCF was higher (P 0.05) than for cellulose but lower (P 0.05) than for pectin. In the in vivo experiment, 10 female dogs (6.4 +/- 0.2 yr and 22 +/- 2.1 kg) received 5 diets with graded concentrations of SCF (0, 0.5, 0.75, 1.0, or 1.25% [as-is basis]) replacing cellulose in a replicated 5 x 5 Latin square design. Dogs were first acclimated to the experimental diets for 10 d followed by 4 d of total fecal collection. Fresh fecal samples were collected to measure fecal pH and fermentation end products and permit a microbiome analysis. For microbiome analysis, extraction of DNA was followed by amplification of the V4 to V6 variable region of the 16S rRNA gene using barcoded primers. Sequences were classified into taxonomic levels using a nucleotide basic local alignment search tool (BLASTn) against a curated GreenGenes database. Few changes in nutrient digestibility or fecal fermentation end products or stool consistency were observed, and no appreciable modulation of the fecal microbiome occurred. In conclusion, SCF was fermentable in vitro, but higher dietary concentrations may be necessary to elicit potential in vivo responses.
机译:已知膳食可发酵纤维可使伴侣动物的肠道健康受益。评价可溶性玉米纤维(SCF)的化学成分,氮校正真实ME(TMEN)含量,体外消化和发酵特征,以及对营养消化率,粪便发酵终产物的体内影响和粪便微生物的调节小狗。可溶性玉米纤维含有78%的膳食纤维,全部存在作为可溶性膳食纤维; 56%的低分子量可溶性纤维(在95%乙醇中没有沉淀)。 SCF还含有26%的淀粉和8%的抗性淀粉,并且具有2.6千卡/克的Tmen值。首先进行可溶性玉米纤维在体外水解 - 酶消化中以确定消化率的程度,然后使用狗粪便器发酵,在0,3,6,9和12小时下测量发酵结果。 SCF的水解酶消化仅为7%。体外发酵显示出增加(P <0.05)浓度的缩短脂肪酸通过12小时,乙酸盐,丙酸盐和丁酸盐分别达到1,803,926和112μmmol/ g dm的峰浓度。 SCF的发酵性高于纤维素而不是纤维素而不是纤维素而高于纤维素(P <0.05)。在体内实验中,10名雌性犬(6.4 +/- 0.2yr和22 +/- 2.1 kg)接受了5次饮食,具有SCF的渐变浓度(0,0.5,0.75,1.0或1.25%] )在复制的5 x 5拉丁方形设计中替换纤维素。首先将狗适应于10天的实验饮食,然后进行4 d总粪便。收集新鲜的粪便样品以测量粪便pH和发酵终产物,并允许微生物组分析。对于微生物组分析,使用条形码引物在16S rRNA基因的v4至V6可变区的提取之后进行DNA的提取。使用核苷酸基本局部对准搜索工具(Blastn)对策级的Greengenes数据库进行分类为分类学水平的序列。观察到营养消化率或粪便发酵末端产物或粪便一致性的少量变化,并且不会发生粪便微生物组的明显调节。总之,SCF在体外可发酵,但可能需要更高的膳食浓度来引发体内反应的潜力。

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