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Microbial enrichment of blackcurrant press residue with conjugated linoleic and linolenic acids

机译:用共轭亚油和亚麻酸的黑醋栗压残渣的微生物富集

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Aims The aim of the study was to investigate the isomerization of linoleic (LA) and linolenic acids (LNAs) into their conjugated isomers byPropionibacterium freudenreichiiDSM 20270 and utilize this feature for microbial enrichment of blackcurrant press residue (BCPR) with health-beneficial conjugated fatty acids. Methods and Results First, the ability ofP. freudenreichiito isomerize 0 center dot 4 mg ml(-1)of LA and LNA was studied in lactate growth medium. Free LA and alpha-LNA were efficiently converted into conjugated linoleic (CLA) and alpha-linolenic acid (alpha-CLNA), being the predominant isomersc9,t11-CLA andc9,t11,c15-CLNA, respectively. The bioconversion of alpha-LNA byP. freudenreichiiwas more efficient in terms of formation rate, yield and isomer-specificity. Thereafter, free LA and LNAs obtained from hydrolysed BCPR neutral lipids, by lipolytically active oat flour, were subjected to microbial isomerization in BCPR slurries. In 10% (w/v) slurries, a simultaneous enrichment inc9,t11-CLA andc9,t11,c15-CLNA of up to 0 center dot 51 and 0 center dot 29 mg ml(-1)was observed from starting levels of 0 center dot 96 mg LA ml(-1)and 0 center dot 37 mg alpha-LNA ml(-1)respectively. Conclusions This study shows that growing cultures ofP. freudenreichiiDSM 20270 are able to simultaneously enrich BCPR with health-beneficial conjugated isomers of LA and alpha-LNA. Significance and Impact of the Study This study demonstrates that microbial isomerization technique can be utilized to enrich lipid-containing plant materials with bioactive compounds and thereby enable valorization of low value plant-based side streams from food industry into value-added food ingredients.
机译:目的本研究的目的是研究佛洛登酸丙酸杆菌20270将亚油酸(LA)和亚麻酸(LNA)异构化为其共轭异构体的过程,并利用这一特性,利用有益健康的共轭脂肪酸对黑醋栗压榨残渣(BCPR)进行微生物富集。方法和结果:第一,P的能力。在乳酸生长培养基中研究了0中心点4mg-ml(-1)LA和LNA的Freudenreichito异构化。游离LA和α-LNA被有效地转化为共轭亚油酸(CLA)和α-亚麻酸(α-CLNA),分别是主要的异构体SC9、t11-CLA和C9、t11、c15-CLNA。alpha-LNA-byP的生物转化。就形成速率、产率和异构体特异性而言,Freudenreichiwiw更有效。此后,通过脂溶活性燕麦粉从水解BCPR中性脂质中获得的游离LA和LNA在BCPR泥浆中进行微生物异构化。在10%(w/v)的泥浆中,从0中心点96 mg LA-ml(-1)和0中心点37 mgαLNA-ml(-1)的起始浓度分别观察到同时富集inc9、t11-CLA和C9、t11、c15-CLNA,最高可达0中心点51和0中心点29 mg-ml(-1)。结论本研究表明,生长培养的P。freudenreichiiDSM 20270能够同时用有益于健康的LA和αLNA共轭异构体富集BCPR。这项研究的意义和影响这项研究表明,微生物异构化技术可以利用生物活性化合物来丰富含油脂的植物材料,从而使食品工业中的低价值植物基侧流能够转化为高附加值的食品配料。

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