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BAHD superfamily of acyl-CoA dependent acyltransferases in Populus and Arabidopsis: bioinformatics and gene expression

机译:杨树和拟南芥中酰基辅酶A依赖性酰基转移酶的BAHD超家族:生物信息学和基因表达

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摘要

Plant acyl-CoA dependent acyltransferases constitute a large specific protein superfamily, named BAHD. Using the conserved sequence motifs of BAHD members, we searched the genome sequences of Populus and Arabidopsis, and identified, respectively, 94- and 61-putative genes. Subsequently, we analyzed the phylogeny, gene structure, and chromosomal distribution of BAHD members of both species; then, we profiled expression patterns of BAHD genes by "in silico" northern- and microarray-analyses based on public databases, and by RT-PCR. While our genomic- and bioinformatic- analyses provided full sets of BAHD superfamily genes, and cleaned up a few existing annotation errors, importantly it led to our recognizing several unique Arabidopsis BAHD genes that inversely overlapped with their neighboring genes on the genome, and disclosing a potential natural anti-sense regulation for gene expressions. Systemic gene-expression profiling of BAHD members revealed distinct tissue-specific/preferential expression patterns, indicating their diverse biological functions. Our study affords a strong knowledge base for understanding BAHD members' evolutionary relationships and gene functions implicated in plant growth, development and metabolism.
机译:植物酰基辅酶A依赖性酰基转移酶构成了一个大的特定蛋白质超家族,称为BAHD。使用BAHD成员的保守序列基序,我们搜索了胡杨和拟南芥的基因组序列,并分别鉴定了94-和61-推定基因。随后,我们分析了两个物种的BAHD成员的系统发育,基因结构和染色体分布。然后,我们通过基于公共数据库的“ in silico”北部和微阵列分析以及RT-PCR,分析了BAHD基因的表达模式。尽管我们的基因组和生物信息学分析提供了全套BAHD超家族基因,并清除了一些现有的注释错误,但重要的是,这使我们认识到了几个独特的拟南芥BAHD基因,它们与基因组中的邻近基因反向重叠,并公开了一个基因表达的潜在自然反义调控。 BAHD成员的系统性基因表达谱分析揭示了不同的组织特异性/优先表达模式,表明它们具有多种生物学功能。我们的研究为理解BAHD成员与植物生长,发育和代谢相关的进化关系和基因功能提供了强大的知识基础。

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