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百脉根中参与豆科植物特有的5-脱氧异黄酮生物合成的结构基因家族的全基因组分析。

Genome-wide analyses of the structural gene families involved in the legume-specific 5-deoxyisoflavonoid biosynthesis of Lotus japonicus.

作者信息

Shimada Norimoto, Sato Shusei, Akashi Tomoyoshi, Nakamura Yasukazu, Tabata Satoshi, Ayabe Shin-Ichi, Aoki Toshio

机构信息

Department of Applied Biological Sciences, Nihon University, 1866 Kameino, Fujisawa, Kanagawa 252-8510, Japan.

出版信息

DNA Res. 2007 Feb 28;14(1):25-36. doi: 10.1093/dnares/dsm004. Epub 2007 Apr 23.

Abstract

A model legume Lotus japonicus (Regel) K. Larsen is one of the subjects of genome sequencing and functional genomics programs. In the course of targeted approaches to the legume genomics, we analyzed the genes encoding enzymes involved in the biosynthesis of the legume-specific 5-deoxyisoflavonoid of L. japonicus, which produces isoflavan phytoalexins on elicitor treatment. The paralogous biosynthetic genes were assigned as comprehensively as possible by biochemical experiments, similarity searches, comparison of the gene structures, and phylogenetic analyses. Among the 10 biosynthetic genes investigated, six comprise multigene families, and in many cases they form gene clusters in the chromosomes. Semi-quantitative reverse transcriptase-PCR analyses showed coordinate up-regulation of most of the genes during phytoalexin induction and complex accumulation patterns of the transcripts in different organs. Some paralogous genes exhibited similar expression specificities, suggesting their genetic redundancy. The molecular evolution of the biosynthetic genes is discussed. The results presented here provide reliable annotations of the genes and genetic markers for comparative and functional genomics of leguminous plants.

摘要

模式豆科植物百脉根(Lotus japonicus (Regel) K. Larsen)是基因组测序和功能基因组学计划的研究对象之一。在豆科植物基因组学的靶向研究过程中,我们分析了百脉根中参与豆科植物特有的5-脱氧异黄酮生物合成的酶的编码基因,百脉根在诱导子处理下会产生异黄烷植保素。通过生化实验、相似性搜索、基因结构比较和系统发育分析,尽可能全面地确定了同源生物合成基因。在所研究的10个生物合成基因中,有6个属于多基因家族,并且在许多情况下它们在染色体上形成基因簇。半定量逆转录酶-PCR分析表明,在植保素诱导过程中,大多数基因协同上调,且转录本在不同器官中的积累模式复杂。一些同源基因表现出相似的表达特异性,表明它们存在遗传冗余。本文讨论了生物合成基因的分子进化。本文给出的结果为豆科植物的比较基因组学和功能基因组学提供了可靠的基因注释和遗传标记。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f5a4/2779890/b4a668f66c79/dnares-14-025-g01.jpg

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