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TALEN mediated targeted mutagenesis of the caffeic acid O-methyltransferase in highly polyploid sugarcane improves cell wall composition for production of bioethanol

机译:TALEN介导的高度多倍体甘蔗中咖啡酸O-甲基转移酶的定向诱变改善了用于生产生物乙醇的细胞壁组成

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摘要

Sugarcane (Saccharum spp. hybrids) is a prime crop for commercial biofuel production. Advanced conversion technology utilizes both, sucrose accumulating in sugarcane stems as well as cell wall bound sugars for commercial ethanol production. Reduction of lignin content significantly improves the conversion of lignocellulosic biomass into ethanol. Conventional mutagenesis is not expected to confer reduction in lignin content in sugarcane due to its high polyploidy (x = 10–13) and functional redundancy among homo(eo)logs. Here we deploy transcription activator-like effector nuclease (TALEN) to induce mutations in a highly conserved region of the caffeic acid O-methyltransferase (COMT) of sugarcane. Capillary electrophoresis (CE) was validated by pyrosequencing as reliable and inexpensive high throughput method for identification and quantitative characterization of TALEN mediated mutations. Targeted COMT mutations were identified by CE in up to 74 % of the lines. In different events 8–99 % of the wild type COMT were converted to mutant COMT as revealed by pyrosequencing. Mutation frequencies among mutant lines were positively correlated to lignin reduction. Events with a mutation frequency of 99 % displayed a 29–32 % reduction of the lignin content compared to non-transgenic controls along with significantly reduced S subunit content and elevated hemicellulose content. CE analysis displayed similar peak patterns between primary COMT mutants and their vegetative progenies suggesting that TALEN mediated mutations were faithfully transmitted to vegetative progenies. This is the first report on genome editing in sugarcane. The findings demonstrate that targeted mutagenesis can improve cell wall characteristics for production of lignocellulosic ethanol in crops with highly complex genomes.Electronic supplementary materialThe online version of this article (doi:10.1007/s11103-016-0499-y) contains supplementary material, which is available to authorized users.
机译:甘蔗(Saccharum spp。hybrids)是商业化生物燃料生产的主要作物。先进的转化技术既利用蔗糖堆积在蔗茎中的蔗糖,又利用结合细胞壁的糖来生产商业乙醇。木质素含量的减少显着改善了木质纤维素生物质向乙醇的转化。常规诱变由于甘蓝多倍体(x = 10-13)和高同源性之间的功能冗余,因此不会降低甘蔗中木质素的含量。在这里,我们部署转录激活因子样效应核酸酶(TALEN)来诱导甘蔗中咖啡酸O-甲基转移酶(COMT)高度保守的区域中的突变。通过焦磷酸测序验证毛细管电泳(CE)是可靠且廉价的高通量方法,可用于鉴定和定量表征TALEN介导的突变。 CE可在多达74%的品系中鉴定出靶向COMT突变。如焦磷酸测序所示,在不同的事件中,野生型COMT中有8–99%转化为突变型COMT。突变株之间的突变频率与木质素的减少呈正相关。与非转基因对照相比,突变频率为99%的事件显示木质素含量降低了29%至32%,同时S亚基含量明显降低,半纤维素含量升高。 CE分析显示主要COMT突变体及其营养后代之间存在相似的峰型,这表明TALEN介导的突变已如实地传递给营养后代。这是关于甘蔗中基因组编辑的第一份报告。研究结果表明,定向诱变可以改善基因组高度复杂的农作物中木质纤维素乙醇生产的细胞壁特性。电子补充材料本文的在线版本(doi:10.1007 / s11103-016-0499-y)包含补充材料,该材料是可供授权用户使用。

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