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Engineering Neurospora crassa for Improved Cellobiose and Cellobionate Production

机译:工程性神经孢霉可改善纤维二糖和纤维二酸的产生

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We report engineering Neurospora crassa to improve the yield of cellobiose and cellobionate from cellulose. A previously engineered strain of N. crassa (F5) with six of seven β-glucosidase ( bgl ) genes knocked out was shown to produce cellobiose and cellobionate directly from cellulose without the addition of exogenous cellulases. In this study, the F5 strain was further modified to improve the yield of cellobiose and cellobionate from cellulose by increasing cellulase production and decreasing product consumption. The effects of two catabolite repression genes, cre-1 and ace-1 , on cellulase production were investigated. The F5 Δ ace-1 mutant showed no improvement over the wild type. The F5 Δ cre-1 and F5 Δ ace-1 Δ cre-1 strains showed improved cellobiose dehydrogenase and exoglucanase expression. However, this improvement in cellulase expression did not lead to an improvement in cellobiose or cellobionate production. The cellobionate phosphorylase gene ( ndvB ) was deleted from the genome of F5 Δ ace-1 Δ cre-1 to prevent the consumption of cellobiose and cellobionate. Despite a slightly reduced hydrolysis rate, the F5 Δ ace-1 Δ cre-1 Δ ndvB strain converted 75% of the cellulose consumed to the desired products, cellobiose and cellobionate, compared to 18% converted by the strain F5 Δ ace-1 Δ cre-1 .
机译:我们报告了工程神经孢霉,以提高纤维素的纤维二糖和纤维二酸酯的产量。敲除了七个基因中的六个β-葡萄糖苷酶(bgl)基因的先前工程菌株N. crassa(F5)被证明可以直接从纤维素中产生纤维二糖和纤维蛋白酸盐,而无需添加外源纤维素酶。在这项研究中,通过增加纤维素酶的产量和减少产品的消耗量,对F5菌株进行了进一步修饰,以提高纤维素纤维二糖和纤维素的产率。研究了两个分解代谢阻抑基因cre-1和ace-1对纤维素酶生产的影响。 F5Δace-1突变体没有显示出超过野生型的改善。 F5Δcre-1和F5Δace-1Δcre-1菌株显示出改善的纤维二糖脱氢酶和外切葡聚糖酶表达。但是,纤维素酶表达的这种改善并未导致纤维二糖或纤维二酸产生的改善。从F5Δace-1Δcre-1的基因组中删除了纤维二糖磷酸化酶基因(ndvB),以防止纤维二糖和纤维二糖的消耗。尽管水解速率略有降低,但F5Δace-1Δcre-1ΔndvB菌株将消耗的纤维素的75%转化为所需的产品纤维二糖和纤维棉酸酯,而F5Δace-1Δ转化为18% cre-1。

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