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天然菌株揭示了淀粉制生物乙醇生产的独特基因组特征:一种淀粉分解整合生物加工酵母的设计

Natural Strain Reveals Peculiar Genomic Traits for Starch-to-Bioethanol Production: the Design of an Amylolytic Consolidated Bioprocessing Yeast.

作者信息

Gronchi Nicoletta, De Bernardini Nicola, Cripwell Rosemary A, Treu Laura, Campanaro Stefano, Basaglia Marina, Foulquié-Moreno Maria R, Thevelein Johan M, Van Zyl Willem H, Favaro Lorenzo, Casella Sergio

机构信息

Department of Agronomy, Food, Natural Resources, Animals and Environment (DAFNAE), University of Padua, Legnaro, Italy.

Department of Biology, University of Padua, Padua, Italy.

出版信息

Front Microbiol. 2022 Jan 20;12:768562. doi: 10.3389/fmicb.2021.768562. eCollection 2021.

Abstract

Natural yeast with superior fermentative traits can serve as a platform for the development of recombinant strains that can be used to improve the sustainability of bioethanol production from starch. This process will benefit from a consolidated bioprocessing (CBP) approach where an engineered strain producing amylases directly converts starch into ethanol. The yeast L20, previously selected as outperforming the benchmark yeast Ethanol Red, was here subjected to a comparative genomic investigation using a dataset of industrial strains. Along with Ethanol Red, strain L20 was then engineered for the expression of α-amylase and glucoamylase genes from by employing two different approaches (delta integration and CRISPR/Cas9). A correlation between the number of integrated copies and the hydrolytic abilities of the recombinants was investigated. L20 demonstrated important traits for the construction of a proficient CBP yeast. Despite showing a close relatedness to commercial wine yeast and the benchmark Ethanol Red, a unique profile of gene copy number variations (CNVs) was found in L20, mainly encoding membrane transporters and secretion pathway proteins but also the fermentative metabolism. Moreover, the genome annotation disclosed seven open reading frames (ORFs) in L20 that are absent in the reference S288C genome. Genome engineering was successfully implemented for amylase production. However, with equal amylase gene copies, L20 proved its proficiency as a good enzyme secretor by exhibiting a markedly higher amylolytic activity than Ethanol Red, in compliance to the findings of the genomic exploration. The recombinant L20 dT8 exhibited the highest amylolytic activity and produced more than 4 g/L of ethanol from 2% starch in a CBP setting without the addition of supplementary enzymes. Based on the performance of this strain, an amylase/glucoamylase ratio of 1:2.5 was suggested as baseline for further improvement of the CBP ability. Overall, L20 showed important traits for the future construction of a proficient CBP yeast. As such, this work shows that natural strains can be used for the expression of foreign secreted enzymes, paving the way to strain improvement for the starch-to-bioethanol route.

摘要

具有优良发酵特性的天然酵母可作为开发重组菌株的平台,这些重组菌株可用于提高淀粉生物乙醇生产的可持续性。该过程将受益于整合生物加工(CBP)方法,即一种工程改造的产生淀粉酶的菌株直接将淀粉转化为乙醇。酵母L20先前被选作性能优于基准酵母乙醇红的菌株,在此使用工业菌株数据集对其进行了比较基因组研究。然后,与乙醇红一起,通过采用两种不同方法(δ整合和CRISPR/Cas9)对L20菌株进行工程改造,使其表达来自的α淀粉酶和糖化酶基因。研究了整合拷贝数与重组体水解能力之间的相关性。L20展示了构建高效CBP酵母的重要特性。尽管L20与商业葡萄酒酵母和基准乙醇红显示出密切的亲缘关系,但在L20中发现了独特的基因拷贝数变异(CNV)谱,主要编码膜转运蛋白和分泌途径蛋白,以及发酵代谢相关蛋白。此外,基因组注释揭示了L20中7个开放阅读框(ORF)在参考S288C基因组中不存在。成功实施了用于淀粉酶生产的基因组工程。然而,在淀粉酶基因拷贝数相同的情况下,L20通过表现出比乙醇红明显更高的淀粉分解活性,证明了其作为良好酶分泌体的能力,这与基因组探索的结果一致。重组L20 dT8表现出最高的淀粉分解活性,并且在不添加补充酶的CBP环境中,从2%淀粉中产生了超过4 g/L的乙醇。基于该菌株的性能,建议将1:2.5的淀粉酶/糖化酶比例作为进一步提高CBP能力的基线。总体而言,L20展示了未来构建高效CBP酵母的重要特性。因此,这项工作表明天然菌株可用于外源分泌酶的表达,为淀粉到生物乙醇途径的菌株改良铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f85/8815085/1634251b61d5/fmicb-12-768562-g001.jpg

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