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番茄 SUN、OFP 和 YABBY 基因家族的全基因组鉴定、系统发育和表达分析。

Genome-wide identification, phylogeny and expression analysis of SUN, OFP and YABBY gene family in tomato.

机构信息

Department of Horticulture and Crop Science, The Ohio State University/OARDC, 217A Williams Hall, 1680 Madison Avenue, Wooster, OH 44691, USA.

出版信息

Mol Genet Genomics. 2013 Apr;288(3-4):111-29. doi: 10.1007/s00438-013-0733-0. Epub 2013 Jan 31.

Abstract

Members of the plant-specific gene families IQD/SUN, OFP and YABBY are thought to play important roles in plant growth and development. YABBY family members are involved in lateral organ polarity and growth; OFP members encode transcriptional repressors, whereas the role of IQD/SUN members is less clear. The tomato fruit shape genes SUN, OVATE, and FASCIATED belong to IQD/SUN, OFP and the YABBY gene family, respectively. A gene duplication resulting in high expression of SUN leads to elongated fruit, whereas a premature stop codon in OVATE and a large inversion within FASCIATED control fruit elongation and a flat fruit shape, respectively. In this study, we identified 34 SlSUN, 31 SlOFP and 9 SlYABBY genes in tomato and identified their position on 12 chromosomes. Genome mapping analysis showed that the SlSUN, SlOFP, and SlYABBY genes were enriched on the top and bottom segments of several chromosomes. In particular, on chromosome 10, a cluster of SlOFPs were found to originate from tandem duplication events. We also constructed three phylogenetic trees based on the protein sequences of the IQ67, OVATE and YABBY domains, respectively, from members of these families in Arabidopsis and tomato. The closest putative orthologs of the Arabidopsis and tomato genes were determined by the position on the phylogenetic tree and sequence similarity. Furthermore, expression analysis showed that some family members exhibited tissue-specific expression, whereas others were more ubiquitously expressed. Also, certain family members overlapped with known QTLs controlling fruit shape in Solanaceous plants. Combined, these results may help elucidate the roles of SUN, OFP and YABBY family members in plant growth and development.

摘要

植物特异性基因家族 IQD/SUN、OFP 和 YABBY 的成员被认为在植物生长和发育中发挥重要作用。YABBY 家族成员参与侧生器官极性和生长;OFP 成员编码转录抑制剂,而 IQD/SUN 成员的作用则不太清楚。番茄果实形状基因 SUN、OVATE 和 FASCIATED 分别属于 IQD/SUN、OFP 和 YABBY 基因家族。基因重复导致 SUN 高表达会导致果实伸长,而 OVATE 中的提前终止密码子和 FASCIATED 中的大片段倒位分别控制果实伸长和扁平果实形状。在这项研究中,我们在番茄中鉴定了 34 个 SlSUN、31 个 SlOFP 和 9 个 SlYABBY 基因,并确定了它们在 12 条染色体上的位置。基因组图谱分析表明,SlSUN、SlOFP 和 SlYABBY 基因在几条染色体的顶部和底部片段上富集。特别是在染色体 10 上,发现一组 SlOFPs 起源于串联重复事件。我们还基于拟南芥和番茄中这些家族成员的 IQ67、OVATE 和 YABBY 结构域的蛋白质序列构建了三个系统发育树。通过在系统发育树上的位置和序列相似性确定了拟南芥和番茄基因的最接近的假定直系同源物。此外,表达分析表明,一些家族成员表现出组织特异性表达,而另一些则更为广泛表达。此外,某些家族成员与控制茄科植物果实形状的已知 QTL 重叠。综合这些结果可能有助于阐明 SUN、OFP 和 YABBY 家族成员在植物生长和发育中的作用。

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