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The Use of Microbial Biotechnology in Value Addition to Cassava Wastes as Feed for Pigs: Prospects and Challenges

机译:在木薯废物作为猪饲料的增值中利用微生物生物技术的前景与挑战

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Cassava peels were fermented through a combination of two lactic acid bacteria (Lactobacillus coryneformis and Lactobacillus delbrueckii) and a fungus (Aspergillus fumigatus) using solid substrate fermentation (SSF) technique for five consecutive days. The enhanced product designated as microbially fermented cassava peel (MFCP) was used at graded levels in the feed formulation for growing pigs. Four iso-nitrogenous and iso-caloric diets were formulated with MFCP at 0% (T1), 20% (T2), 40% (T3) and 60% (T4) inclusion levels. Twenty-four boarlings of an average initial weight of 37.15 kg were used in a fourteen-week trial to test the effect of these graded levels of MFCP on growth performance, digestive and reproductive physiology of the experimental animals. The result showed significant differences (P < 0.05) in mean daily feed consumption. Pigs in T3 had the highest feed intake (2.24 ± 0.05 kg), while pigs in T4 had the lowest (1.78 ± 0.04 kg). The final highest live weight was in T3 (72.00 kg) and the least in T4 (58.17 kg). The feed conversion ratios also showed significant differences (P < 0.05) among treatment means. The result obtained from gut morphometry showed that animals in T1 had the highest stomach weight (full and empty), while animals in T3 had the least rate of gastric emptying (81.50%). Animals in T3 and T4 had the longest small intestine (16.21 m and 15.35 m, respectively), while those in T4 had the longest colon (4.24 m). Animals in T1 and T2 had more numbers of gastric glands, while animals in T3 and T4 had more parietal cells. The reproductive indices revealed that animals in T1 were better in terms of the weight and relative weight of vesicular and Cowper’s gland, while animals in T4 had the highest value of the weight and relative weight of prostate gland. Proximate analyses of the ileal digesta revealed that the rate of nutrient absorption was highest in T3 and T1 and lowest in T4. Histological examination of the testes revealed normal testicular architecture in the control diet. The testes of animals fed 0%, 20% and 40% MFCP diets exhibited normal and intact lumen, Sertoli cells, and germ cells. However, animal fed 60% MFCP diet revealed massive disruption and degeneration of germinal epithelium, and complete erosion of the seminiferous tubules. It could be concluded that feeding pigs at 40% MFCP would enhance feed consumption, nutrient absorption and improve the growth rate of pigs. Using MFCP beyond 40% level on swine diet could compromise gut health through diarrhoeagenic disposition of the digesta in the distal colon and modification of the parietal and chief cells of the gastric glands. The hypertrophy of the prostate gland and vacuolization of the seminiferous tubules of pigs fed the 60% MFCP diet indicated a probable reduced reproductive performance.
机译:使用固体底物发酵(SSF)技术,通过两种乳酸菌(棒状乳酸杆菌和德氏乳杆菌)和真菌(烟曲霉)的组合发酵木薯皮,连续五天。被称为微生物发酵木薯皮(MFCP)的增强产品在生长猪的饲料配方中以分级使用。用MFCP配制4种等氮和等热量日粮,其添加水平为0%(T1),20%(T2),40%(T3)和60%(T4)。在十四周的试验中,使用二十四只平均初始重量为37.15千克的公猪来测试这些分级的MFCP对实验动物的生长性能,消化和生殖生理的影响。结果表明,平均日饲料消耗量存在显着差异(P <0.05)。 T3猪的采食量最高(2.24±0.05千克),而T4猪的采食量最低(1.78±0.04千克)。最终的最高活重在T3(72.00千克),最小的是T4(58.17千克)。饲料转化率在处理方式之间也显示出显着差异(P <0.05)。从肠道形态学获得的结果表明,T1中的动物的胃重最高(饱和空),而T3中的动物的胃排空率最低(81.50%)。 T3和T4的动物的小肠最长(分别为16.21 m和15.35 m),而T4的动物的结肠则最长(4.24 m)。 T1和T2中的动物的胃腺数量更多,而T3和T4中的动物的壁细胞数量更多。生殖指数表明,T1的动物的囊泡和考珀氏腺的重量和相对重量更好,而T4的动物的前列腺腺体的重量和相对重量最高。对回肠消化物的近期分析表明,营养素的吸收率在T3和T1最高,在T4最低。睾丸的组织学检查显示对照饮食中睾丸结构正常。饲喂0 %,20 %和40 %MFCP日粮的动物的睾丸表现出正常和完整的管腔,支持细胞和生殖细胞。但是,饲喂60%MFCP饮食的动物表现出生发上皮的大量破坏和变性,以及生精小管的完全侵蚀。可以得出结论,以40%MFCP饲喂猪将增加饲料消耗,养分吸收并提高猪的生长速度。在猪日粮中使用超过40%的MFCP可能会通过腹泻引起的远端结肠消化物的沉积以及胃腺壁细胞和主细胞的改变而损害肠道健康。饲喂60%MFCP饲料的猪的前列腺肥大和曲细精管空泡化表明生殖性能可能降低。

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