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首页> 外文期刊>Current Plant Biology >Exploring genomic databases for in silico discovery of Pht1 genes in high syntenic close related grass species with focus in sugarcane ( Saccharum spp.) ☆
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Exploring genomic databases for in silico discovery of Pht1 genes in high syntenic close related grass species with focus in sugarcane ( Saccharum spp.) ☆

机译:探索基因组数据库,以计算机方式发现高同系关系密切的近缘草种中的Pht1基因,重点是甘蔗(Saccharum spp。)☆

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Abstract The genomic sequences available at several public databases and the local alignments allow a fast and accurate search for nucleotide homology among different species, revealing the structure, composition and function of nucleotides and amino acids. The Phosphate Transporter 1 gene family (Pht1) has crucial role in several metabolic processes from plants and has been identified in different crops. Here, the {CDS} sequence of 28 Pht1 genes described for Oryza sativa, Zea mays and Arabidopsis thaliana were used to identify nine homologous sequences in Sorghum bicolor and Setaria italica and the S. bicolor sequences were used as reference to guide the identification of those homologous sequences in Saccharum spp. Using five different libraries of paired-end Illumina reads, nine sugarcane genes (ScPht1) were assembled and the rate of gene recover, the average of gene length, the sequencing depth and the {GC} content were estimated in 93.72%, 2053 bp, 16.08X and 58.70%, respectively. Putative {SNPs} and microsatellites loci were found for those ScPht1 genes and three of them seem to be under positive selection pressure. A phylogenetic tree corroborates with orthology relationship among Saccharum spp., O. sativa and Z. mays genes, emphasizing the levels of synteny described for grass species. This study discuss the potential use of homology in genomic studies as one of the most useful tools for gene discovery and annotation, illustrating how useful is the exploitation of public databases for gene identification and characterization, allowing further gene manipulation in crop improvements.
机译:摘要在多个公共数据库中可获得的基因组序列和局部比对,可以快速准确地搜索不同物种之间的核苷酸同源性,从而揭示核苷酸和氨基酸的结构,组成和功能。磷酸盐转运蛋白1基因家族(Pht1)在植物的几种代谢过程中起着至关重要的作用,并且已在不同的农作物中得到鉴定。在此,针对稻,玉米和拟南芥描述的28个Pht1基因的{CDS}序列用于鉴定高粱双色和Setaria italica中的9个同源序列,而双色S.序列用作参考来指导对那些序列的鉴定。糖酵母属同源序列。使用五个不同的配对末端Illumina读物文库,组装了9个甘蔗基因(ScPht1),估计基因恢复率,平均基因长度,测序深度和{GC}含量为93.72%,2053 bp, 16.08倍和58.70%。发现这些ScPht1基因的推定{SNPs}和微卫星基因座,其中三个似乎处于正选择压力下。系统发育树证实了蔗糖,稻和玉米基因之间的正交关系,强调了对草种的共鸣水平。这项研究讨论了在基因组研究中同源性作为基因发现和注释最有用工具之一的潜在用途,说明了利用公共数据库进行基因鉴定和表征的有用性,从而可以进一步改良作物的基因。

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