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Cloning and Functional Analysis of Lignin Biosynthesis Genes Cf4CL and CfCCoAOMT in Cryptomeria fortunei

机译:柳杉木质素生物合成基因Cf4CL和CfCCoAOMT的克隆及功能分析

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摘要

Cryptomeria fortunei, also known as the Chinese cedar, is an important timber species in southern China. The primary component of its woody tissues is lignin, mainly present in secondary cell walls. Therefore, continuous lignin synthesis is crucial for wood formation. In this study, we aimed to discover key genes involved in lignin synthesis expressed in the vascular cambium of C. fortunei. Through transcriptome sequencing, we detected expression of two genes, 4CL and CCoAOMT, known to be homologous to enzymes involved in the lignin synthesis pathway. We studied the function of these genes through bioinformatics analysis, cloning, vascular cambium expression analysis, and transgenic cross-species functional validation studies. Our results show that Cf4CL and CfCCoAOMT do indeed function in the pathway of lignin synthesis and likely perform this function in C. fortunei. They are prime candidates for future (gene-editing) studies aimed at optimizing C. fortunei wood production.
机译:柳杉(Cryptomeria fortunei),又称中国雪松,是中国南方重要的木材种类。其木质组织的主要成分是木质素,主要存在于次级细胞壁中。因此,连续的木质素合成对于木材的形成至关重要。在这项研究中,我们旨在发现参与木霉C. fortunei血管形成层表达的木质素合成的关键基因。通过转录组测序,我们检测到两个基因4CL和CCoAOMT的表达,这两个基因与木质素合成途径中涉及的酶同源。我们通过生物信息学分析,克隆,血管形成层表达分析和转基因跨物种功能验证研究来研究这些基因的功能。我们的结果表明,Cf4CL和CfCCoAOMT确实在木质素合成途径中起作用,并且可能在福寿螺中执行此功能。它们是未来(基因编辑)研究的主要候选者,旨在优化福寿螺的木材生产。

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