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Functional diversification of AGAMOUS lineage genes in regulating tomato flower and fruit development

机译:AGAMOUS谱系基因在调控番茄花果发育中的功能多样化

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摘要

AGAMOUS clade genes encode MADS box transcription factors that have been shown to play critical roles in many aspects of flower and fruit development in angiosperms. Tomato possesses two representatives of this lineage, TOMATO AGAMOUS (TAG1) and TOMATO AGAMOUS-LIKE1 (TAGL1), allowing for an analysis of diversification of function after gene duplication. Using RNAi (RNA interference) silencing, transgenic tomato lines that specifically down-regulate either TAGL1 or TAG1 transcript accumulation have been produced. TAGL1 RNAi lines show no defects in stamen or carpel identity, but show defects in fruit ripening. In contrast TAG1 RNAi lines show defects in stamen and carpel development. In addition TAG1 RNAi lines produce red ripe fruit, although they are defective in determinacy and produce ectopic internal fruit structures. e2814, an EMS- (ethyl methane sulphonate) induced mutation that is temperature sensitive and produces fruit phenotypes similar to that of TAG1 RNAi lines, was also characterized. Neither TAG1 nor TAGL1 expression is disrupted in the e2814 mutant, suggesting that the gene corresponding to the e2814 mutant represents a distinct locus that is likely to be functionally downstream of TAG1 and TAGL1. Based on these analyses, possible modes by which these gene duplicates have diversified in terms of their functions and regulatory roles are discussed.
机译:巨大的进化枝基因编码MADS盒转录因子,已被证明在被子植物的花和果实发育的许多方面起着至关重要的作用。番茄具有该谱系的两个代表,TOMATO AGAMOUS(TAG1)和TOMATO AGAMOUS-LIKE1(TAGL1),可以分析基因复制后的功能多样性。使用RNAi(RNA干扰)沉默,已生产出特异性下调TAGL1或TAG1转录本积累的转基因番茄品系。 TAGL1 RNAi品系没有雄蕊或心皮同一性缺陷,但显示了果实成熟缺陷。相反,TAG1 RNAi系显示出雄蕊和心皮发育缺陷。另外,TAG1 RNAi系产生红色成熟果实,尽管它们在确定性方面存在缺陷并产生异位内部果实结构。 e2814是EMS-(甲烷磺酸乙酯)诱导的突变,该突变对温度敏感,并产生与TAG1 RNAi系相似的果实表型。 TAG1和TAGL1的表达均未在e2814突变体中被破坏,这表明与e2814突变体相对应的基因代表了一个可能位于TAG1和TAGL1功能下游的独特基因座。基于这些分析,讨论了这些基因重复体在其功能和调控作用方面多样化的可能方式。

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