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Analysis of Natural and Induced Variation in Tomato Glandular Trichome Flavonoids Identifies a Gene Not Present in the Reference Genome

机译:番茄腺体Trichome黄酮类化合物的自然和诱导变异分析确定了参考基因组中不存在的基因

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Flavonoids are ubiquitous plant aromatic specialized metabolites found in a variety of cell types and organs. Methylated flavonoids are detected in secreting glandular trichomes of various Solanum species, including the cultivated tomato (Solanum lycopersicum). Inspection of the sequenced S. lycopersicum Heinz 1706 reference genome revealed a close homolog of Solanum habrochaites MOMT1 3'/5' myricetin O-methyltransferase gene, but this gene (Solyc06g083450) is missing the first exon, raising the question of whether cultivated tomato has a distinct 3' or 3'/5' O-methyltransferase. A combination of mining genome and cDNA sequences from wild tomato species and S. lycopersicum cultivar M82 led to the identification of SI-MOMT4 as a 3' O-methyltransferase. In parallel, three independent ethyl methanesulfonate mutants in the S. lycopersicum cultivar M82 background were identified as having reduced amounts of di-and trimethylated myricetins and increased monomethylated myricetin. Consistent with the hypothesis that SI-MOMT4 is a 3' O-methyltransferase gene, all three myricetin methylation defective mutants were found to have defects in MOMT4 sequence, transcript accumulation, or 3'-O-methyltransferase enzyme activity. Surprisingly, no MOMT4 sequence is found in the Heinz 1706 reference genome sequence, and this cultivar accumulates 3-methyl myricetin and is deficient in 3'-methyl myricetins, demonstrating variation in this gene among cultivated tomato varieties.
机译:黄酮类化合物是在各种细胞类型和器官中发现的普遍存在的植物芳香族专门代谢产物。在各种茄科植物的分泌腺毛中都检测到甲基化的类黄酮,包括栽培的番茄(茄属番茄)。对已测序的S. lycopersicum Heinz 1706参考基因组进行检查后发现,茄属茄子MOMT1 3'/ 5'杨桃素O-甲基转移酶基因与之同源,但该基因(Solyc06g083450)缺少第一个外显子,这引发了栽培番茄是否具有独特的3'或3'/ 5'O-甲基转移酶。来自野生番茄物种和S. lycopersicum栽培品种M82的挖掘基因组和cDNA序列的组合导致SI-MOMT4被鉴定为3'O-甲基转移酶。平行地,在S.lycopersicum栽培品种M82背景中的三个独立的甲磺酸乙酯突变体被鉴定为具有减少的二甲基化和三甲基化的杨梅素量和增加的单甲基化的杨梅素。与SI-MOMT4是一个3'O-甲基转移酶基因的假设相一致,发现所有三个杨桃素甲基化缺陷型突变体在MOMT4序列,转录物积累或3'-O-甲基转移酶活性方面均存在缺陷。出乎意料的是,在亨氏1706参考基因组序列中未发现MOMT4序列,该品种积累了3-甲基杨梅素,而3'-甲基杨梅素缺乏,证明了该基因在栽培番茄品种中的变异。

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