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红豆草青贮过程中内源单宁对蛋白水解动力学、蛋白酶活性和代谢组的影响

Effects of intrinsic tannins on proteolysis dynamics, protease activity, and metabolome during sainfoin ensiling.

作者信息

Huang Rong Zheng, Wang Xuzhe, Ma Chunhui, Zhang Fanfan

机构信息

Grassland Science, School of Animal Technology, Shihezi University, Shihezi, China.

出版信息

Front Microbiol. 2022 Aug 18;13:976118. doi: 10.3389/fmicb.2022.976118. eCollection 2022.

Abstract

Condensed tannins (CT) from sainfoin have a high capacity to inhibit proteolysis. A previous study reported that CT from sainfoin can inhibit lactic acid bacteria activity and decrease ammonium-nitrogen (N) content during sainfoin ensiling; however, no study has focused on the metabolome of ensiled sainfoin. The objective of the present study was to investigate the effects of CT [following supplementation of deactivated CT with polyethylene glycol (PEG)] on protease activity, keystone bacteria, and metabolome during sainfoin ensiling. According to the results, PEG amendment increased non-protein N, amino acid, and soluble protein contents significantly (in the 49.08-59.41, 116.01-64.22, and 23.5-41.94% ranges, respectively, < 0.05) during ensiling, whereas neutral detergent-insoluble protein and acid detergent-insoluble protein were decreased significantly (in the 55.98-64.71 and 36.58-57.55% ranges, respectively, < 0.05). PEG supplementation increased aminopeptidase and acid protease activity after 3 days of ensiling ( < 0.05) and increased carboxypeptidase activity during the entire ensiling process ( < 0.05). The keystone bacteria changed following PEG addition (s, , and in the control vs. , and in the PEG-treated group). In total, 510 metabolites were identified after 60 days of sainfoin ensiling, with 33 metabolites annotated in the Kyoto Encyclopedia of Genes and Genomes database. Among the metabolites, phospholipids were the most abundant (72.7% of 33 metabolites). In addition, 10 upregulated and 23 downregulated metabolites were identified in the PEG-treated group when compared with the control group, after 60 days of ensiling ( < 0.05). (correlated with 20 metabolites, > 0.88, < 0.05) and (correlated with 16 metabolites, > 0.88, < 0.05) were the bacteria most correlated with metabolites. The results suggested antagonistic effects between and during ensiling. The decreased proteolysis during sainfoin ensiling was mainly attributed to the inhibition of protease activity by CT, particularly carboxypeptidase activity. In addition, proteolysis decreased partly due to CT inhibiting activity during ensiling, with being significantly and positively correlated with dopamine after 60 days of ensiling ( = 0.8857, < 0.05).

摘要

红豆草中的缩合单宁(CT)具有较高的抑制蛋白水解能力。先前的一项研究报道,红豆草中的CT可抑制乳酸菌活性,并降低红豆草青贮过程中的铵态氮(N)含量;然而,尚无研究关注青贮红豆草的代谢组。本研究的目的是探讨CT[用聚乙二醇(PEG)补充失活CT后]对红豆草青贮过程中蛋白酶活性、关键细菌和代谢组的影响。结果表明,添加PEG显著增加了青贮过程中的非蛋白氮、氨基酸和可溶性蛋白含量(分别在49.08 - 59.41%、116.01 - 64.22%和23.5 - 41.94%范围内,P < 0.05),而中性洗涤不溶性蛋白和酸性洗涤不溶性蛋白显著降低(分别在55.98 - 64.71%和36.58 - 57.55%范围内,P < 0.05)。添加PEG使青贮3天后的氨肽酶和酸性蛋白酶活性增加(P < 0.05),并在整个青贮过程中增加了羧肽酶活性(P < 0.05)。添加PEG后关键细菌发生了变化(对照组中的s、 和 与PEG处理组中的 、 和 不同)。红豆草青贮60天后共鉴定出510种代谢物,其中33种代谢物在京都基因与基因组百科全书数据库中得到注释。在这些代谢物中,磷脂最为丰富(占33种代谢物的72.7%)。此外,青贮60天后,与对照组相比,PEG处理组中有10种代谢物上调,23种代谢物下调(P < 0.05)。 (与20种代谢物相关,r > 0.88,P < 0.05)和 (与16种代谢物相关,r > 0.88,P < 0.05)是与代谢物相关性最高的细菌。结果表明青贮过程中 和 之间存在拮抗作用。红豆草青贮过程中蛋白水解减少主要归因于CT对蛋白酶活性的抑制,尤其是羧肽酶活性。此外,蛋白水解部分减少是由于CT在青贮过程中抑制了 活性,青贮60天后 与多巴胺显著正相关(r = 0.8857,P < 0.05)。

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