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首页> 外文期刊>Physiologia plantarum >Flowering response of the uniflora:blind:self-pruning and jointless:uniflora:self-pruning tomato (Solanum lycopersicum) triple mutants
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Flowering response of the uniflora:blind:self-pruning and jointless:uniflora:self-pruning tomato (Solanum lycopersicum) triple mutants

机译:单花:盲:自修剪和无接缝:单花:自修剪番茄(Solanum lycopersicum)三元突变体的开花反应

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摘要

Tomato (Solanum lycopersicum) is a day-neutral plant with a sympodial growth habit. Triple mutants were produced in order to investigate the genetic interactions in the flowering regulation of this species in the initial and sympodial segments. The jointless:uniflora:self-pruning and uniflora:blind:self-pruning triple mutants were produced by crossing the jointless:uniflora and uniflora:blind double mutants with the uniflora:self-pruning double mutant. The phenotype of the triple mutants was characterized and the expression of the affected genes was studied in the uniflora (uf) mutant through semi-quantitative reverse transcriptase polymerase chain reaction (PCR). The triple mutants produced solitary flowers, as their uf parent, instead of inflorescences. They were both late flowering in the initial segment with a flowering time intermediate between their parental double mutants. The flowering time of the sympodial segments was delayed in the jointless:uniflora:self-pruning triple mutant while the uniflora:blind:self-pruning triple mutant did not initiate sympodial segments. The expression of the studied genes was not markedly affected by the uf mutation. These results suggest that floral transition of the primary shoot and of sympodial segments is regulated differently in tomato. The UNIFLORA (UF) gene acts upstream of the other investigated genes in controlling reproductive structure and flowering time of the initial segment although their expression does not seem to be affected by the uf mutation. In the sympodial segments, the self-pruning determinate phenotype is strengthened by the blind mutation and suppressed by the jointless mutation.
机译:番茄(Solanum lycopersicum)是一种具有中天生长习性的中性植物。产生了三个突变体,以研究该物种在初始和交感节段的开花调控中的遗传相互作用。通过将无节:单花和单花:盲双突变体与单花:自修剪双突变体杂交,产生了无节:单花:自修剪和单花:盲:自修剪三重突变体。表征了三重突变体的表型,并通过半定量逆转录酶聚合酶链反应(PCR)研究了单基因(uf)突变体中受影响基因的表达。三重突变体作为其uf亲本产生单花,而不是花序。他们都在开始阶段开花较晚,而其亲本双突变体的开花时间介于中间。在无关节:单花:自修剪的三重突变体中,节肢节的开花时间被延迟,而在单花:盲:自修剪的三重突变体中,没有启动节肢节。 uf突变不会显着影响所研究基因的表达。这些结果表明,番茄的初生茎和花茎节的花期过渡受到不同的调节。尽管其表达似乎不受uf突变影响,但UNIFLORA(UF)基因在控制其他部位的生殖结构和开花时间方面在其他研究基因的上游起作用。在症状节段中,自我修剪的决定表型被盲突变增强,而被无关节突变抑制。

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