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Enhanced production of xylanase by Fusarium sp. BVKT R2 and evaluation of its biomass saccharification efficiency

机译:镰刀菌提高了木聚糖酶的产量。 BVKT R2及其生物质糖化效率评估

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摘要

Growth of Fusarium sp. BVKT R2, a potential isolate of forest soils of Eastern Ghats on birchwood xylan in mineral salts medium (MSM) under un-optimized conditions of 30 °C, pH of 5.0, 150 rpm and inoculum size of 5 agar plugs for 7 days, yielded titer of 1290 U/mL of xylanase (EC 3.2.1.8). The effect of various operating parameters such as different substrates and their concentration, additional carbon and nitrogen sources, incubation temperature, initial pH, agitation and inoculum size on the production of xylanase by Fusarium sp. BVKT R2 was studied in shake flask culture by one factor at a time approach. The same culture exhibited higher production of xylanase (4200 U/mL) when grown on birch wood xylan in MSM under optimized conditions with an additional carbon source—sorbitol (1.5%) nitrogen source—yeast extract (1.5%) temperature of 30 °C, pH of 5.0, agitation of 200 rpm and inoculum of 6 agar plugs for only 5 days. There was enhancement in xylanase production under optimized conditions by 3.2 folds over yields under un-optimized conditions. Growth of BVKT R2 culture on locally available lignocelluloses—sawdust, rice straw and cotton stalk—in MSM for 5 days released soluble sugars to the maximum extent of 52.76% with respect to sawdust indicating its greater importance in saccharification essential for biotechnological applications.Electronic supplementary materialThe online version of this article (doi:10.1007/s13205-017-0977-1) contains supplementary material, which is available to authorized users.
机译:镰刀菌的生长BVKT R2是在未经优化的温度30°C,pH 5.0、150 rpm和5种琼脂塞接种量7天的条件下,在矿物盐培养基(MSM)中桦木木聚糖上的东高止山脉森林土壤的潜在分离物木聚糖酶的滴度为1290U / mL(EC 3.2.1.8)。各种操作参数(例如不同的底物及其浓度,额外的碳和氮源,孵育温度,初始pH,搅拌和接种量)对镰刀菌产生木聚糖酶的影响。在摇瓶培养中对BVKT R2进行了一次因子研究。当在优化条件下,MSM桦木木聚糖上生长温度为30°C的其他碳源-山梨糖醇(1.5%)氮源-酵母提取物(1.5%)时,同一培养物显示出更高的木聚糖酶产量(4200 U / mL) ,pH 5.0,搅拌200 rpm和接种6个琼脂塞仅需5天。在优化条件下,木聚糖酶的产量比未优化条件下的产量提高了3.2倍。 BVKT R2培养物在MSM中在木屑,稻草和棉秆等当地可用的木质纤维素上生长5天,释放出的可溶性糖相对于木屑的最大比例为52.76%,表明其在糖化中对生物技术应用必不可少的重要性更大。材料本文的在线版本(doi:10.1007 / s13205-017-0977-1)包含补充材料,授权用户可以使用。

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