首页> 外文期刊>Frontiers in Plant Science >Identification, Characterization, and Expression Analysis of Cell Wall Related Genes in Sorghum bicolor (L.) Moench, a Food, Fodder, and Biofuel Crop
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Identification, Characterization, and Expression Analysis of Cell Wall Related Genes in Sorghum bicolor (L.) Moench, a Food, Fodder, and Biofuel Crop

机译:食物,饲料和生物燃料作物双色(L.)Moench中细胞壁相关基因的鉴定,表征和表达分析

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Biomass based alternative fuels offer a solution to the world's ever-increasing energy demand. With the ability to produce high biomass in marginal lands with low inputs, sorghum has a great potential to meet second-generation biofuel needs. Despite the sorghum crop importance in biofuel and fodder industry, there is no comprehensive information available on the cell wall related genes and gene families (biosynthetic and modification). It is important to identify the cell wall related genes to understand the cell wall biosynthetic process as well as to facilitate biomass manipulation. Genome-wide analysis using gene family specific Hidden Markov Model of conserved domains identified 520 genes distributed among 20 gene families related to biosynthesis/modification of various cell wall polymers such as cellulose, hemicellulose, pectin, and lignin. Chromosomal localization analysis of these genes revealed that about 65% of cell wall related genes were confined to four chromosomes (Chr. 1–4). Further, 56 tandem duplication events involving 169 genes were identified in these gene families which could be associated with expansion of genes within families in sorghum. Additionally, we also identified 137 Simple Sequence Repeats related to 112 genes and target sites for 10 miRNAs in some important families such as cellulose synthase, cellulose synthase-like, and laccases, etc. To gain further insight into potential functional roles, expression analysis of these gene families was performed using publically available data sets in various tissues and under abiotic stress conditions. Expression analysis showed tissue specificity as well as differential expression under abiotic stress conditions. Overall, our study provides a comprehensive information on cell wall related genes families in sorghum which offers a valuable resource to develop strategies for altering biomass composition by plant breeding and genetic engineering approaches.
机译:基于生物质的替代燃料为世界不断增长的能源需求提供了解决方案。高粱具有在低投入的边缘土地上生产高生物量的能力,因此具有满足第二代生物燃料需求的巨大潜力。尽管高粱作物在生物燃料和饲料工业中很重要,但尚无有关细胞壁相关基因和基因家族(生物合成和修饰)的全面信息。识别细胞壁相关基因对于理解细胞壁的生物合成过程以及促进生物量操纵非常重要。使用保守域的基因家族特有的隐马尔可夫模型进行全基因组分析,确定了520个基因分布在20个基因家族中,这些家族与各种细胞壁聚合物(如纤维素,半纤维素,果胶和木质素)的生物合成/修饰有关。这些基因的染色体定位分析表明,约有65%的细胞壁相关基因被限制在四个染色体上(第1-4条)。此外,在这些基因家族中鉴定出56个涉及169个基因的串联重复事件,这可能与高粱家族中的基因扩增有关。此外,我们还鉴定了137个简单序列重复序列,涉及一些重要家族(如纤维素合酶,类纤维素合酶和漆酶等)中10个miRNA的112个基因和靶位点。为了进一步了解潜在的功能作用,对它们进行了表达分析这些基因家族是在各种组织中以及在非生物胁迫条件下使用公开可用的数据集进行的。表达分析显示了在非生物胁迫条件下的组织特异性以及差异表达。总体而言,我们的研究提供了有关高粱细胞壁相关基因家族的全面信息,这为开发通过植物育种和基因工程方法改变生物量组成的策略提供了宝贵的资源。

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