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Genetic interactions of the unfinished flower development (ufd) mutant support a significant role of the tomato UFD gene in regulating floral organogenesis

机译:未完成的花发育(ufd)突变体的遗传相互作用支持番茄UFD基因在调控花器官发生中的重要作用

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摘要

Tomato (Solanum lycopersicum L.) is a major vegetable crop that also constitutes a model species for the study of plant developmental processes. To gain insight into the control of flowering and floral development, a novel tomato mutant, unfinished flower development (ufd), whose inflorescence and flowers were unable to complete their normal development was characterized using double mutant and gene expression analyses. Genetic interactions of ufd with mutations affecting inflorescence fate (uniflora, jointless and single flower truss) were additive and resulted in double mutants displaying the inflorescence structure of the non-ufd parental mutant and the flower phenotype of the ufd mutant. In addition, ufd mutation promotes an earlier inflorescence meristem termination. Taken together, both results indicated that UFD is not involved in the maintenance of inflorescence meristem identity, although it could participate in the regulatory system that modulates the rate of meristem maturation. Regarding the floral meristem identity, the falsiflora mutation was epistatic to the ufd mutation even though FALSIFLORA was upregulated in ufd inflorescences. In terms of floral organ identity, the ufd mutation was epistatic to macrocalyx, and MACROCALYX expression was differently regulated depending on the inflorescence developmental stage. These results suggest that the UFD gene may play a pivotal role between the genes required for flowering initiation and inflorescence development (such as UNIFLORA, FALSIFLORA, JOINTLESS and SINGLE FLOWER TRUSS) and those required for further floral organ development such as the floral organ identity genes.
机译:番茄(Solanum lycopersicum L.)是一种主要的蔬菜作物,也构成了研究植物发育过程的典型物种。为了深入了解开花和花卉发育的控制,使用双重突变和基因表达分析来表征一种新型番茄突变体,即未完成的花卉发育(ufd),其花序和花朵无法完成其正常发育。 ufd与影响花序命运的突变(单花,无节和单花桁架)的遗传相互作用是加和的,并导致双重突变体显示出非ufd亲本突变体的花序结构和ufd突变体的花表型。此外,ufd突变可促进更早的花序分生组织终止。两者合计,这两个结果表明UFD不参与维持花序分生组织的身份,尽管它可以参与调节分生组织成熟速率的调节系统。关于花分生组织特性,即使在ufd花序中FALSIFLORA上调,falsiflora突变也比ufd突变上位。就花器官的身份而言,ufd突变对大花萼而言是上位的,而MACROCALYX的表达则根据花序发育阶段而受到不同的调节。这些结果表明,UFD基因可能在开花启动和花序发育所需的基因(如UNIFLORA,FALSIFLORA,JOINTLESS和SINGLE FLOWER TRUSS)与进一步的花器官发育所需的基因(如花器官同一性基因)之间起关键作用。 。

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