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Genomic Proteomic and Biochemical Analyses of Oleaginous Mucor circinelloides: Evaluating Its Capability in Utilizing Cellulolytic Substrates for Lipid Production

机译:基因组蛋白质组学和生化分析的含油性Mucor circinelloides:评价其在利用纤维素分解底物生产脂质的能力。

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摘要

Lipid production by oleaginous microorganisms is a promising route to produce raw material for the production of biodiesel. However, most of these organisms must be grown on sugars and agro-industrial wastes because they cannot directly utilize lignocellulosic substrates. We report the first comprehensive investigation of Mucor circinelloides, one of a few oleaginous fungi for which genome sequences are available, for its potential to assimilate cellulose and produce lipids. Our genomic analysis revealed the existence of genes encoding 13 endoglucanases (7 of them secretory), 3 β-D-glucosidases (2 of them secretory) and 243 other glycoside hydrolase (GH) proteins, but not genes for exoglucanases such as cellobiohydrolases (CBH) that are required for breakdown of cellulose to cellobiose. Analysis of the major PAGE gel bands of secretome proteins confirmed expression of two secretory endoglucanases and one β-D-glucosidase, along with a set of accessory cell wall-degrading enzymes and 11 proteins of unknown function. We found that M. circinelloides can grow on CMC (carboxymethyl cellulose) and cellobiose, confirming the enzymatic activities of endoglucanases and β-D-glucosidases, respectively. The data suggested that M. circinelloides could be made usable as a consolidated bioprocessing (CBP) strain by introducing a CBH (e.g. CBHI) into the microorganism. This proposal was validated by our demonstration that M. circinelloides growing on Avicel supplemented with CBHI produced about 33% of the lipid that was generated in glucose medium. Furthermore, fatty acid methyl ester (FAME) analysis showed that when growing on pre-saccharified Avicel substrates, it produced a higher proportion of C14 fatty acids, which has an interesting implication in that shorter fatty acid chains have characteristics that are ideal for use in jet fuel. This substrate-specific shift in FAME profile warrants further investigation.
机译:油脂性微生物产生的脂质是生产生物柴油原料的有前途的途径。但是,大多数这些生物必须在糖和农业工业废料上生长,因为它们不能直接利用木质纤维素底物。我们报告了对Mucor circinelloides的首次全面研究,Mucor circinelloides是为数不多的含油真菌之一,其基因组序列可用于其吸收纤维素并产生脂质的潜力。我们的基因组分析表明,存在编码13种内切葡聚糖酶(其中7种为分泌型),3种β-D-葡萄糖苷酶(其中2种为分泌型)和243种其他糖苷水解酶(GH)蛋白的基因,但不存在外切葡聚糖酶的基因,例如纤维二糖水解酶(CBH) )是将纤维素分解为纤维二糖所必需的。对分泌蛋白的主要PAGE凝胶条带的分析证实了两种分泌型内切葡聚糖酶和一种β-D-葡萄糖苷酶的表达,以及一组辅助细胞壁降解酶和11种功能未知的蛋白的表达。我们发现circinelloides可以在CMC(羧甲基纤维素)和纤维二糖上生长,分别证实了内切葡聚糖酶和β-D-葡糖苷酶的酶活性。数据表明,通过将CBH(例如CBHI)引入微生物中,可以将Circelloelloides作为合并的生物加工(CBP)菌株使用。我们的论证证实了该提议的有效性,即在补充了CBHI的Avicel上生长的Circinelloides产生了约33%的脂质,这些脂质在葡萄糖培养基中产生。此外,脂肪酸甲酯(FAME)分析表明,当在预先糖化的Avicel底物上生长时,它会产生较高比例的C14脂肪酸,这具有有趣的意义,因为较短的脂肪酸链具有非常适合用于脂肪酸的特性。喷气燃料。 FAME配置文件中这种特定于底物的变化值得进一步研究。

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