Department of Animal Science, Faculty of Animal Science and Food Technology, Agricultural Sciences and Natural Resources University of Khuzestan, Ahvaz, Iran.
Animal Science Research Department, Bushehr Agricultural and Natural Resources Research and Education Center, Agricultural Research, Education and Extension Organization (AREEO), Bushehr, Iran.
J Appl Microbiol. 2021 Dec;131(6):2739-2747. doi: 10.1111/jam.15129. Epub 2021 Jun 3.
This study was performed to investigate the effects of Lactobacillus plantarum (LP) on the in vitro gas production (GP) kinetics and ruminal fermentation parameter of three species of tropical forage Ziziphus mauritiana, Acacia victoriae and Moringa oleifera.
Treatments were (i) Z. mauritiana (Z) without LP (-ZLP), (ii) Z. mauritiana (Z) with LP (+ZLP), (iii) A. victoriae (A) without LP (-ALP), (4) A. victoriae (A) with LP (+ALP), (5) M. oleifera (M) without LP (-MLP) and (6) M. oleifera (M) with LP (+MLP). The LP was used at 0·5 Mcfarland (1·5 × 10 colony-forming unit per millilitre (CFU per ml)). Kinetic of GP (GP from the fermentable fraction [b], GP rate [c] and lag phase [L]) and GP were affected (P < 0·05) by plant species and LP. The highest value of b, c and GP were observed in +MLP treatment compared with other treatments. The lowest value of L was observed for the +ZLP treatment compared with other treatments. The GP and fermentation parameter included organic matter digestibility (OMD), metabolizable energy (ME) content, microbial CP (MCP) and truly degraded substrate (TDS) were affected by plant species and LP supplementation. The highest OMD, ME, TDS and MCP values were observed in +MLP treatment. At different incubation times, the highest amount of ammonia-N was observed in treatment +MLP compared with other treatments. Under the influence of experimental treatments (effect of plant species and LP), the highest concentrations of total volatile fatty acids, acetate and acetate to propionate ratio were observed in treatments +MLP, +ALP and +ALP, respectively. Concentrations of propionate, iso-butyrate, n-valerate and iso-valerate were affected by plant species, and the highest levels were observed in -ZLP, +MLP, -MLP and +MLP tretments, respectively.
The use of LP as a microbial additive had a positive effect on the in vitro digestibility and ruminal fermentation of tannins-rich tropical plants. Results suggest that dietary LP inclusion could be an option to improve ruminant energy utilization efficiency of tannins-rich tropical plants.
Regardless the effect of the forage species, the use of LP as a microbial additive improved GP and kinetics and also increased OMD, TDS, MCP and enhanced the total in vitro ruminal VFAs production.
本研究旨在探讨植物乳杆菌(LP)对三种热带牧草(Mauritia flexuosa、Acacia victoriae 和 Moringa oleifera)体外产气动力学和瘤胃发酵参数的影响。
处理组分别为:(i)无 LP 的 Mauritia flexuosa(Z)(-ZLP),(ii)有 LP 的 Mauritia flexuosa(Z)(+ZLP),(iii)无 LP 的 Acacia victoriae(A)(-ALP),(iv)有 LP 的 Acacia victoriae(A)(+ALP),(v)无 LP 的 Moringa oleifera(M)(-MLP)和(vi)有 LP 的 Moringa oleifera(M)(+MLP)。LP 的使用量为 0.5 Mcfarland(1.5×10 个菌落形成单位/毫升(CFU/ml))。产气量(可发酵部分的产气量 [b]、产气量 [c]和滞后期 [L])和产气量(GP)受到植物种类和 LP 的影响(P<0.05)。与其他处理相比,+MLP 处理的 b、c 和 GP 值最高。与其他处理相比,+ZLP 处理的 L 值最低。产气量和发酵参数包括有机物消化率(OMD)、可代谢能(ME)含量、微生物 CP(MCP)和真正降解底物(TDS)受到植物种类和 LP 补充的影响。+MLP 处理的 OMD、ME、TDS 和 MCP 值最高。在不同的孵育时间内,+MLP 处理的氨氮含量最高。在实验处理(植物种类和 LP 的影响)的影响下,+MLP、+ALP 和 +ALP 处理的总挥发性脂肪酸、乙酸和乙酸丙酸比的浓度最高。丙酸、异丁酸、正戊酸和异戊酸的浓度受植物种类的影响,-ZLP、+MLP、-MLP 和 +MLP 处理的浓度最高。
LP 作为微生物添加剂的使用对富含单宁的热带植物的体外消化率和瘤胃发酵有积极影响。结果表明,日粮中添加 LP 可以提高富含单宁的热带植物反刍动物能量利用效率。
无论饲料种类的影响如何,LP 作为微生物添加剂的使用均提高了产气量和动力学特性,增加了 OMD、TDS、MCP,并提高了总体外瘤胃 VFA 产量。