Fermentation Quality, In Vitro Digestibility, and Aerobic Stability of Ensiling Spent Mushroom Substrate with Microbial Additives

This experiment investigated the effects of lactic acid bacteria and cellulase on the fermentation quality, in vitro digestibility, and aerobic stability of spent mushroom substrate silage (F-silage) and spent mushroom substrate silage (P-silage). Silage treatments included groups without any additi...

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Veröffentlicht in:Animals (Basel) 2023-03, Vol.13 (5), p.920
Hauptverfasser: Yi, Qixuan, Wang, Peng, Tang, Hongyu, Yu, Meng, Zhao, Tianyue, Sheng, Ziyang, Luo, Hailing
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Sprache:eng
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Zusammenfassung:This experiment investigated the effects of lactic acid bacteria and cellulase on the fermentation quality, in vitro digestibility, and aerobic stability of spent mushroom substrate silage (F-silage) and spent mushroom substrate silage (P-silage). Silage treatments included groups without any additives (control), with lactic acid bacteria (L), with cellulase (E), and with lactic acid bacteria and cellulase (M). Data analysis was performed using independent sample -test and analysis of variance. After 45 days of ensiling, the pH in F-silage and P-silage from the L, E, and M groups were lower than those in the control group ( < 0.05). The pH, acetic acid (AA), and propionic acid (PA) levels in P-silage were lower than those in F-silage, and the LA content in P-silage was higher than that in F-silage ( < 0.05). Compared with the control, the E treatment increased in vitro neutral detergent fibre digestibility (IVNDFD) and in vitro acid detergent fibre digestibility (IVADFD) in F-silage and P-silage ( < 0.05). The aerobic stability of F-silage inoculated with L increased ( < 0.05) by 24 h compared to the control. The aerobic stability of P-silage inoculated with M increased ( < 0.05) by 6 h compared to the control. The improvement in fermentation quality and aerobic stability is extremely large in terms of applying M in F-silage and P-silage. The E is effective in improving the in vitro digestibility of P-silage. The research results provide a theoretical basis for the production of high-quality spent mushroom substrate fermented feed.
ISSN:2076-2615
2076-2615
DOI:10.3390/ani13050920