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水稻BAHD酰基转移酶AT10的过表达增加了高粱中与木聚糖结合的对香豆酸含量并降低了木质素含量。

Overexpression of the rice BAHD acyltransferase AT10 increases xylan-bound p-coumarate and reduces lignin in Sorghum bicolor.

作者信息

Tian Yang, Lin Chien-Yuan, Park Joon-Hyun, Wu Chuan-Yin, Kakumanu Ramu, Pidatala Venkataramana R, Vuu Khanh M, Rodriguez Alberto, Shih Patrick M, Baidoo Edward E K, Temple Stephen, Simmons Blake A, Gladden John M, Scheller Henrik V, Eudes Aymerick

机构信息

Joint BioEnergy Institute, Emeryville, CA, 94608, USA.

Environmental Genomics and Systems Biology Division, Lawrence Berkeley National Laboratory, Berkeley, CA, 94720, USA.

出版信息

Biotechnol Biofuels. 2021 Nov 20;14(1):217. doi: 10.1186/s13068-021-02068-9.

Abstract

BACKGROUND

The development of bioenergy crops with reduced recalcitrance to enzymatic degradation represents an important challenge to enable the sustainable production of advanced biofuels and bioproducts. Biomass recalcitrance is partly attributed to the complex structure of plant cell walls inside which cellulose microfibrils are protected by a network of hemicellulosic xylan chains that crosslink with each other or with lignin via ferulate (FA) bridges. Overexpression of the rice acyltransferase OsAT10 is an effective bioengineering strategy to lower the amount of FA involved in the formation of cell wall crosslinks and thereby reduce cell wall recalcitrance. The annual crop sorghum represents an attractive feedstock for bioenergy purposes considering its high biomass yields and low input requirements. Although we previously validated the OsAT10 engineering approach in the perennial bioenergy crop switchgrass, the effect of OsAT10 expression on biomass composition and digestibility in sorghum remains to be explored.

RESULTS

We obtained eight independent sorghum (Sorghum bicolor (L.) Moench) transgenic lines with a single copy of a construct designed for OsAT10 expression. Consistent with the proposed role of OsAT10 in acylating arabinosyl residues on xylan with p-coumarate (pCA), a higher amount of p-coumaroyl-arabinose was released from the cell walls of these lines upon hydrolysis with trifluoroacetic acid. However, no major changes were observed regarding the total amount of pCA or FA esters released from cell walls upon mild alkaline hydrolysis. Certain diferulate (diFA) isomers identified in alkaline hydrolysates were increased in some transgenic lines. The amount of the main cell wall monosaccharides glucose, xylose, and arabinose was unaffected. The transgenic lines showed reduced lignin content and their biomass released higher yields of sugars after ionic liquid pretreatment followed by enzymatic saccharification.

CONCLUSIONS

Expression of OsAT10 in sorghum leads to an increase of xylan-bound pCA without reducing the overall content of cell wall FA esters. Nevertheless, the amount of total cell wall pCA remains unchanged indicating that most pCA is ester-linked to lignin. Unlike other engineered plants overexpressing OsAT10 or a phylogenetically related acyltransferase with similar putative function, the improvements of biomass saccharification efficiency in sorghum OsAT10 lines are likely the result of lignin reductions rather than reductions of cell wall-bound FA. These results also suggest a relationship between xylan-bound pCA and lignification in cell walls.

摘要

背景

开发对酶解降解抗性降低的生物能源作物是实现先进生物燃料和生物产品可持续生产的一项重大挑战。生物质抗性部分归因于植物细胞壁的复杂结构,其中纤维素微纤丝被半纤维素木聚糖链网络保护,这些木聚糖链通过阿魏酸(FA)桥相互交联或与木质素交联。水稻酰基转移酶OsAT10的过表达是一种有效的生物工程策略,可降低参与细胞壁交联形成的FA含量,从而降低细胞壁抗性。考虑到其高生物量产量和低投入需求,一年生作物高粱是一种有吸引力的生物能源原料。尽管我们之前在多年生生物能源作物柳枝稷中验证了OsAT10工程方法,但OsAT10表达对高粱生物质组成和消化率的影响仍有待探索。

结果

我们获得了八个独立的高粱(Sorghum bicolor (L.) Moench)转基因株系,这些株系含有一个设计用于表达OsAT10的单拷贝构建体。与OsAT10在用对香豆酸(pCA)酰化木聚糖上阿拉伯糖基残基中的拟议作用一致,在用三氟乙酸水解后,这些株系的细胞壁释放出了更多的对香豆酰阿拉伯糖。然而,在用温和碱性水解后从细胞壁释放的pCA或FA酯总量方面未观察到重大变化。在碱性水解产物中鉴定出的某些二阿魏酸(diFA)异构体在一些转基因株系中有所增加。主要细胞壁单糖葡萄糖、木糖和阿拉伯糖的含量未受影响。转基因株系的木质素含量降低,并且在离子液体预处理后再进行酶糖化,其生物质释放出更高产量的糖。

结论

在高粱中表达OsAT10会导致木聚糖结合的pCA增加,而不会降低细胞壁FA酯的总体含量。然而,细胞壁总pCA的量保持不变,这表明大多数pCA是与木质素酯连接的。与其他过表达OsAT10或具有相似推定功能的系统发育相关酰基转移酶的工程植物不同,高粱OsAT10株系中生物质糖化效率的提高可能是木质素减少而非细胞壁结合FA减少的结果。这些结果还表明了木聚糖结合的pCA与细胞壁木质化之间的关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4544/8606057/892c988586c6/13068_2021_2068_Fig1_HTML.jpg

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