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×中木质素生物合成途径的遗传、转录和调控图谱。

Genetic, transcriptional, and regulatory landscape of monolignol biosynthesis pathway in  × .

作者信息

Zeng Xiaofei, Sheng Jiajing, Zhu Fenglin, Wei Tianzi, Zhao Lingling, Hu Xiaohu, Zheng Xingfei, Zhou Fasong, Hu Zhongli, Diao Ying, Jin Surong

机构信息

School of Biology and Pharmaceutical Engineering, Wuhan Polytechnic University, Wuhan, 430023 People's Republic of China.

School of Medicine, Southern University of Science and Technology, Shenzhen, 518055 People's Republic of China.

出版信息

Biotechnol Biofuels. 2020 Oct 27;13:179. doi: 10.1186/s13068-020-01819-4. eCollection 2020.

Abstract

BACKGROUND

×  is widely recognized as a promising lignocellulosic biomass crop due to its advantages of high biomass production, low environmental impacts, and the potential to be cultivated on marginal land. However, the high costs of bioethanol production still limit the current commercialization of lignocellulosic bioethanol. The lignin in the cell wall and its by-products released in the pretreatment step is the main component inhibiting the enzymatic reactions in the saccharification and fermentation processes. Hence, genetic modification of the genes involved in lignin biosynthesis could be a feasible strategy to overcome this barrier by manipulating the lignin content and composition of . × . For this purpose, the essential knowledge of these genes and understanding the underlying regulatory mechanisms in . ×  is required.

RESULTS

In this study, , , , , , , , , , , , , , and were identified as the major monolignol biosynthetic genes in . ×  based on genetic and transcriptional evidence. Among them, 12 genes were cloned and sequenced. By combining transcription factor binding site prediction and expression correlation analysis, MYB46, MYB61, MYB63, WRKY24, WRKY35, WRKY12, ERF021, ERF058, and ERF017 were inferred to regulate the expression of these genes directly. On the basis of these results, an integrated model was summarized to depict the monolignol biosynthesis pathway and the underlying regulatory mechanism in . × .

CONCLUSIONS

This study provides a list of potential gene targets for genetic improvement of lignocellulosic biomass quality of . × , and reveals the genetic, transcriptional, and regulatory landscape of the monolignol biosynthesis pathway in . × .

摘要

背景

×由于其生物质产量高、对环境影响小且有在边际土地上种植的潜力,被广泛认为是一种很有前景的木质纤维素生物质作物。然而,生物乙醇生产的高成本仍然限制了木质纤维素生物乙醇目前的商业化。细胞壁中的木质素及其在预处理步骤中释放的副产物是抑制糖化和发酵过程中酶促反应的主要成分。因此,对参与木质素生物合成的基因进行基因改造可能是一种可行的策略,通过控制×的木质素含量和组成来克服这一障碍。为此,需要了解这些基因的基本知识并理解×中的潜在调控机制。

结果

在本研究中,基于遗传和转录证据,、、、、、、、、、、、和被确定为×中主要的单木质醇生物合成基因。其中,12个基因被克隆和测序。通过结合转录因子结合位点预测和表达相关性分析,推断MYB46、MYB61、MYB63、WRKY24、WRKY35、WRKY12、ERF021、ERF058和ERF017直接调控这些基因的表达。基于这些结果,总结了一个综合模型来描述×中单木质醇生物合成途径及其潜在调控机制。

结论

本研究提供了一份潜在基因靶点清单,用于对×的木质纤维素生物质质量进行遗传改良,并揭示了×中单木质醇生物合成途径的遗传、转录和调控概况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc15/7590476/0a3919697d8a/13068_2020_1819_Fig1_HTML.jpg

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