首页> 美国卫生研究院文献>PLoS Genetics >PEP1 of Arabis alpina Is Encoded by Two Overlapping Genes That Contribute to Natural Genetic Variation in Perennial Flowering
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PEP1 of Arabis alpina Is Encoded by Two Overlapping Genes That Contribute to Natural Genetic Variation in Perennial Flowering

机译:拟南芥的PEP1由两个重叠的基因编码这些基因有助于多年生开花的自然遗传变异。

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摘要

Higher plants exhibit a variety of different life histories. Annual plants live for less than a year and after flowering produce seeds and senesce. By contrast perennials live for many years, dividing their life cycle into episodes of vegetative growth and flowering. Environmental cues control key check points in both life histories. Genes controlling responses to these cues exhibit natural genetic variation that has been studied most in short-lived annuals. We characterize natural genetic variation conferring differences in the perennial life cycle of Arabis alpina. Previously the accession Pajares was shown to flower after prolonged exposure to cold (vernalization) and only for a limited period before returning to vegetative growth. We describe five accessions of A. alpina that do not require vernalization to flower and flower continuously. Genetic complementation showed that these accessions carry mutant alleles at PERPETUAL FLOWERING 1 (PEP1), which encodes a MADS box transcription factor orthologous to FLOWERING LOCUS C in the annual Arabidopsis thaliana. Each accession carries a different mutation at PEP1, suggesting that such variation has arisen independently many times. Characterization of these alleles demonstrated that in most accessions, including Pajares, the PEP1 locus contains a tandem arrangement of a full length and a partial PEP1 copy, which give rise to two full-length transcripts that are differentially expressed. This complexity contrasts with the single gene present in A. thaliana and might contribute to the more complex expression pattern of PEP1 that is associated with the perennial life-cycle. Our work demonstrates that natural accessions of A. alpina exhibit distinct life histories conferred by differences in PEP1 activity, and that continuous flowering forms have arisen multiple times by inactivation of the floral repressor PEP1. Similar phenotypic variation is found in other herbaceous perennial species, and our results provide a paradigm for how characteristic perennial phenotypes might arise.
机译:高等植物表现出各种不同的生活史。一年生植物的生命不到一年,开花后会产生种子和衰老。相比之下,多年生植物可生存多年,将其生命周期分为无性生长和开花期。环境提示控制着两个生活史中的关键检查点。控制对这些线索的反应的基因表现出自然遗传变异,这在短命的年度研究中得到了最多的研究。我们表征天然遗传变异,赋予了拟南芥多年生生命周期差异。以前,Pajares品种在长时间暴露于寒冷(春化处理)后仅在有限的一段时间后恢复营养生长才开花。我们描述了A. alpina的五个种,不需要春化即可连续开花。遗传互补显示,这些种质在PERPETUAL FLOWERING 1(PEP1)处携带突变等位基因,其编码一年生拟南芥FLOWERING LOCUS C同源的MADS盒转录因子。每个登录号在PEP1处携带一个不同的突变,表明这种变异已经独立出现了许多次。这些等位基因的表征表明,在包括Pajares在内的大多数种属中,PEP1基因座均包含一个全长的串联排列和一部分PEP1拷贝,从而产生了两个差异表达的全长转录本。这种复杂性与拟南芥中存在的单个基因形成对比,并且可能导致与多年生生命周期相关的PEP1更复杂的表达模式。我们的工作表明,高山被孢霉的自然种质表现出不同的生活史,这是由于PEP1活性的差异所致,并且由于阻花剂PEP1的失活,连续的开花形式已经多次出现。在其他多年生草本物种中也发现了类似的表型变异,我们的结果为典型的多年生表型可能如何出现提供了范例。

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