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芒果和鳄梨副产品作为饲料成分及补充剂的瘤胃发酵特性和甲烷减排潜力

Rumen fermentation profile and methane mitigation potential of mango and avocado byproducts as feed ingredients and supplements.

作者信息

Jalal Hassan, Sucu Ekin, Cavallini Damiano, Giammarco Melania, Akram Muhammad Zeeshan, Karkar Büşra, Gao Min, Pompei Luigi, Eduardo Jorge, Prasinou Paraskevi, Fusaro Isa

机构信息

Department of Veterinary Medicine, University of Teramo, Loc. Piano d'Accio, 64100, Teramo, Italy.

Faculty of Agriculture, Department of Animal Science, Bursa Uludag University, 16059, Bursa, Türkiye.

出版信息

Sci Rep. 2025 May 9;15(1):16164. doi: 10.1038/s41598-025-00675-2.

Abstract

Fruit byproducts represent a sustainable alternative to conventional feed for ruminants, addressing food-feed competition and environmental concerns, particularly through their potential to reduce enteric methane emissions via bioactive compounds. This study explored the use of mango and avocado byproducts as feed ingredients and supplements. In experiment 1, mango peel (MP), mango seed kernel (MSK), mango seed coat (MSC), avocado peel (AP), and avocado seed (AS) were independently tested to determine their chemical composition, in vitro digestibility, and rumen fermentation parameters, including gas production and methane emissions. In experiment 2, rumen fermentation parameters were evaluated across five treatment groups: The control group received 200 mg of alfalfa hay alone, without any supplementation. The remaining four groups each received 200 mg of alfalfa hay as the basal diet, supplemented with 15 mg of one of the following microencapsulated extracts: mango peel extract (MPE), avocado peel extract (APE), mango seed kernel extract (MSKE), or avocado seed extract (ASE). Both experiments were conducted over three runs, with each run including three replicates per treatment group, resulting in a total of nine replicates per group. Data were analyzed using linear mixed models with Bonferroni-adjusted pairwise comparisons (p < 0.05). MSK had the highest crude protein content, whereas AP had the highest ether content. MSC and AP presented the highest fiber fractions. AP and MP showed higher total phenolic content and antioxidant capacity. In experiment 1, AS, MP and MSK resulted in greater in vitro dry matter digestibility, and cumulative gas production compared to MSC and AP. Acetate to propionate ratios were higher in AS, MSC, and MSK. Methane production (ml/g dry matter incubated) was highest in MSK (43.7), while AP (19.8) and MSC (18.7) produced the lowest, representing almost 55% reduction compared to MSK (P < 0.001). MP (40.9) and AS (42.2) had intermediate methane values. Ammonia nitrogen was highest in AP and lowest in MSC. In experiment 2, MSKE, ASE and the control had the highest cumulative gas production, whereas APE reduced methane production by 16% compared to the control and lowered the acetate-to-propionate ratio. Compared with the control, all the encapsulated extracts lowered the ammonia nitrogen concentration. Overall, MP, MSK, and AS have emerged as the most promising ingredients because of their relatively high digestibility, and fermentation efficiency, whereas APE and MPE have potential as feed supplements for reducing in vitro methane production.

摘要

水果副产品是反刍动物传统饲料的可持续替代品,可解决食物与饲料的竞争问题以及环境问题,特别是它们有可能通过生物活性化合物减少肠道甲烷排放。本研究探索了将芒果和鳄梨副产品用作饲料原料和补充剂。在实验1中,分别对芒果皮(MP)、芒果种仁(MSK)、芒果种皮(MSC)、鳄梨皮(AP)和鳄梨籽(AS)进行测试,以确定它们的化学成分、体外消化率和瘤胃发酵参数,包括产气量和甲烷排放。在实验2中,对五个处理组的瘤胃发酵参数进行了评估:对照组仅接受200毫克苜蓿干草,不添加任何其他物质。其余四组每组均接受200毫克苜蓿干草作为基础日粮,并添加15毫克以下微囊化提取物之一:芒果皮提取物(MPE)、鳄梨皮提取物(APE)、芒果种仁提取物(MSKE)或鳄梨籽提取物(ASE)。两个实验均进行了三轮,每轮每个处理组包括三个重复,因此每组共有九个重复。数据使用线性混合模型和Bonferroni校正的成对比较进行分析(p < 0.05)。MSK的粗蛋白含量最高,而AP的乙醚含量最高。MSC和AP的纤维组分含量最高。AP和MP的总酚含量和抗氧化能力较高。在实验1中,与MSC和AP相比,AS、MP和MSK的体外干物质消化率和累积产气量更高。AS、MSC和MSK中的乙酸与丙酸比率更高。甲烷产量(毫升/克干物质培养量)在MSK中最高(43.7),而AP(19.8)和MSC(18.7)产生的甲烷量最低,与MSK相比减少了近55%(P < 0.001)。MP(40.9)和AS(42.2)的甲烷产量处于中间水平。氨氮在AP中最高,在MSC中最低。在实验2中,MSKE、ASE和对照组的累积产气量最高,而APE与对照组相比使甲烷产量降低了16%,并降低了乙酸与丙酸的比率。与对照组相比,所有微囊化提取物均降低了氨氮浓度。总体而言,MP、MSK和AS因其相对较高的消化率和发酵效率而成为最有前景的成分,而APE和MPE有潜力作为饲料补充剂来减少体外甲烷产量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f2fe/12064803/52098852bcdd/41598_2025_675_Fig1_HTML.jpg

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