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首页> 外文期刊>The Journal of Heredity >Genetic control of floral morph in tristylous Pickerelweed (Pontederia cordata L.).
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Genetic control of floral morph in tristylous Pickerelweed (Pontederia cordata L.).

机译:三齿叉菜(Pontederia cordata L.)中花体形态的遗传控制。

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摘要

Pickerelweed (Pontederia cordata L.) is a diploid (2n = 2x = 16) tristylous aquatic perennial. Populations usually contain 3 floral morphs that differ reciprocally in style length and anther height (referred to as the long-, mid-, and short-styled morphs, hereafter L-, M-, and S-morphs). The floral polymorphism promotes disassortative mating among the 3 floral morphs and is maintained in populations by negative frequency-dependent selection. The objective of this study was to determine the number of loci, number of alleles, and gene action controlling floral morph in pickerelweed. Three parental lines (one each of the L-, M-, and S-morph) were used to create S1 and F1 populations. F2 populations were produced through self-pollination of F1 plants. Progeny ratios of S1, F1, and F2 generations revealed that tristyly is controlled by 2 diallelic loci (S and M) with dominant gene action. The S locus is epistatic to the M locus, with the S-morph produced by plants with the dominant S allele (genotype S _ _ _). Plants with recessive alleles at the S locus were either L-morph (ssmm) or M-morph (ssM_). The results of this experiment demonstrate that the inheritance of tristyly in pickerelweed is the same as previously reported for several tristylous species in the Lythraceae and Oxalidaceae.
机译:er草(Pontederia cordata L.)是二倍体(2n = 2x = 16)三生水生多年生植物。种群通常包含3个花型,其花型长度和花药高度互不相同(称为长型,中型和短型型,以下称为L型,M型和S型)。花型多态性促进了3种花型之间的分离交配,并通过负频率依赖性选择在种群中得以维持。这项研究的目的是确定pick草中的基因座数量,等位基因数量和控制花卉形态的基因作用。三个亲本系(L,M和S形态各一个)用于创建S1和F1种群。 F2种群是通过F1植物的自花授粉产生的。 S1,F1和F2世代的子代比率显示,三脚位受两个具有显性基因作用的拨号基因座(S和M)控制。 S基因位点对M基因位点是上位的,S基因是由具有优势S等位基因(基因型S _ _)的植物产生的。在S位点具有隐性等位基因的植物是L-morph(ssmm)或M-morph(ssM_)。该实验的结果表明,在香菜中的三叶草的遗传与以前报道的千屈菜科和草皮科中的三毛科物种相同。

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