首页> 外文期刊>Journal of applied microbiology >Biosynthesis of a novel C30 carotenoid in Bacillus firmus isolates.
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Biosynthesis of a novel C30 carotenoid in Bacillus firmus isolates.

机译:新型芽孢杆菌分离物中C 30 类胡萝卜素的生物合成。

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Aims. Pigmented Bacillus spp. with probiotic properties have been isolated. In the yellow-/orange-coloured strains, the carotenoid pigments present have been characterized. In contrast, the carotenoids present in the Bacillus isolates coloured red await identification. The present article reports progress on the elucidation of the pigment biosynthetic pathway in these red-pigmented Bacillus firmus strains. Methods and Results. A combination of UV/Vis, chromatographic and mass spectrometry (MS) has revealed the properties of the predominant pigment and the end-point carotenoid of the pathway to be methyl 4,4'-diapolycopene-dioate after transmethylation. The diglycosyl ester of 4,4'-diapolycopene-dioate persists in vivo prior to chemical treatment. Different mutants and inhibitor treatment were employed to establish the C30 biosynthesis pathway with all precursors and intermediates to 4,4'-diapolycopene-dioate detected, which include 4,4'-diapophytene and all desaturation intermediates to 4,4'-diapolycopene and 4,4'-diapolycopene-dialdehyde. To cultures synthesizing the 4,4'-diapolycopene-dioate derivative and those in which its formation was inhibited, oxidative stress was induced by peroxide treatment. Conditions that decreased the growth rate of the pigmented cells by only 30% caused a complete growth inhibition of the culture devoid of the 4,4'-diapolycopene-dioate derivative. Conclusion. This finding demonstrates the diversity of C30 carotenoid biosynthesis in Bacillus species and the antioxidative function of the 4,4'-diapolycopene-dioate derivative in B. firmus cells. Significance and Impact of the Study. It could be shown that the C30 4,4'-diapolycopene-dioate derivatives protect pigmented B. firmus from peroxidative reactions. Under oxidative conditions, this can be an ecological advantage over nonpigmented (= noncarotenogenic) strains that are equally abundant
机译:目的色素芽孢杆菌属。具有益生菌性质的已被分离。在黄色/橙色菌株中,已鉴定出存在的类胡萝卜素色素。相反,芽孢杆菌分离物中存在的类胡萝卜素呈红色,等待鉴定。本文报道了阐明这些红色色素芽孢杆菌菌株中色素生物合成途径的进展。方法和结果。 UV / Vis,色谱和质谱(MS)的组合显示了甲基转移后,主要色素和该路径终点类胡萝卜素的特性为4,4'-双聚庚二烯酸二甲酯。 4,4'-双聚庚二烯-二酸酯的二糖基酯在化学处理之前会在体内持续存在。采用不同的突变体和抑制剂处理来建立C30生物合成途径,检测到所有4,4'-双聚番茄红素的前体和中间体,包括4,4'-双番茄红素和所有4,4'-双聚番茄红素的去饱和中间体,4′-双聚番茄红素-二醛。对于合成4,4'-双聚庚二烯-二酸酯衍生物的培养物及其形成受到抑制的培养物,通过过氧化物处理诱导了氧化应激。使色素沉着细胞的生长速率仅降低30%的条件会导致完全缺乏4,4'-双聚番茄红素-二酸酯衍生物的培养物的生长抑制。结论。该发现证明了芽孢杆菌属物种中C30类胡萝卜素生物合成的多样性以及牢固的芽孢杆菌细胞中4,4'-二聚番茄红素二酸酯衍生物的抗氧化功能。研究的意义和影响。可以证明,C30的4,4'-二聚番茄红素-二酸酯衍生物可以保护色素沉着的双歧杆菌免受过氧化反应的影响。在氧化条件下,这比同等丰富的无色素(=非类胡萝卜素)菌株具有生态优势。

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