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Two Loci Contribute Epistastically to Heterospecific Pollen Rejection a Postmating Isolating Barrier Between Species

机译:两个基因座在异源花粉排斥物种之间的隔离隔离屏障上贡献很大。

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摘要

Recognition and rejection of heterospecific male gametes occurs in a broad range of taxa, although the complexity of mechanisms underlying these components of postmating cryptic female choice is poorly understood. In plants, the arena for postmating interactions is the female reproductive tract (pistil), within which heterospecific pollen tube growth can be arrested via active molecular recognition and rejection. Unilateral incompatibility (UI) is one such postmating barrier in which pollen arrest occurs in only one direction of an interspecific cross. We investigated the genetic basis of pistil-side UI between Solanum species, with the specific goal of understanding the role and magnitude of epistasis between UI QTL. Using heterospecific introgression lines (ILs) between Solanum pennellii and S. lycopersicum, we assessed the individual and pairwise effects of three chromosomal regions (ui1.1, ui3.1, and ui12.1) previously associated with interspecific UI among Solanum species. Specifically, we generated double introgression (‘pyramided’) genotypes that combined ui12.1 with each of ui1.1 and ui3.1, and assessed the strength of UI pollen rejection in the pyramided lines, compared to single introgression genotypes. We found that none of the three QTL individually showed UI rejection phenotypes, but lines combining ui3.1 and ui12.1 showed significant pistil-side pollen rejection. Furthermore, double ILs (DILs) that combined different chromosomal regions overlapping ui3.1 differed significantly in their rate of UI, consistent with at least two genetic factors on chromosome three contributing quantitatively to interspecific pollen rejection. Together, our data indicate that loci on both chromosomes 3 and 12 are jointly required for the expression of UI between S. pennellii and S. lycopersicum, suggesting that coordinated molecular interactions among a relatively few loci underlie the expression of this postmating prezygotic barrier. In addition, in conjunction with previous data, at least one of these loci appears to also contribute to conspecific self-incompatibility (SI), consistent with a partially shared genetic basis between inter- and intraspecific mechanisms of postmating prezygotic female choice.
机译:异种雄性配子的识别和排斥发生在广泛的分类单元中,尽管对隐性雌性选择后交这些成分的机制的复杂性了解甚少。在植物中,推迟相互作用的场所是雌性生殖道(雌蕊),其中异种花粉管的生长可以通过主动分子识别和排斥来阻止。单方面不相容性(UI)是一种这样的后期障碍,其中花粉阻滞仅发生在种间杂交的一个方向上。我们调查了茄属物种之间雌蕊侧UI的遗传基础,其具体目标是了解UI QTL之间上皮作用和程度。使用茄属植物和番茄之间的异质性基因渗入系(ILs),我们评估了以前与茄属物种之间的种间UI相关的三个染色体区域(ui1.1,ui3.1和ui12.1)的个体效应和成对效应。具体来说,我们生成了双重渗入(“吡酰胺化”)基因型,将ui12.1与ui1.1和ui3.1中的每一个结合在一起,并评估了与单渗入基因型相比,金字塔线中UI花粉排斥的强度。我们发现,三个QTL均未单独显示UI排斥表型,但结合ui3.1和ui12.1的线显示出明显的雌蕊侧花粉排斥。此外,结合了ui3.1的不同染色体区域组成的双重IL(DIL)的UI率差异显着,这与第3号染色体上的至少两个遗传因子在数量上对种间花粉排斥的贡献一致。在一起,我们的数据表明在3号和12号染色体上的基因座是S. pennellii和S. lycopersicum之间UI的表达共同需要的,这表明相对较少的基因座之间的协调分子相互作用是这种后合子前合子屏障表达的基础。此外,结合以前的数据,这些基因座中至少有一个似乎也有助于同种型自我不相容性(SI),这与合子后雌性选择后种间和种内机制之间部分共享的遗传基础一致。

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