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首页> 外文期刊>Evolutionary Ecology >Complex sex determination in the stinging nettle Urtica dioica
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Complex sex determination in the stinging nettle Urtica dioica

机译:荨麻荨麻的复杂性别确定

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摘要

The dioecious species Urtica dioica harbours wide variation in sex ratio of seeds. We conducted a series of crosses to analyse the genetic basis of sex determination in this species. Dutch populations of U. dioica contain low proportions of monoecious individuals beside male and female plants. Self-pollination of monoecious plants always yielded female, male and monoecious plants, generally in a ratio of one female to three male/monoecious individuals. This motivated us to write down a simple model in which gender is determined by one major sex-determination locus with four alleles. In the model males and monoecious plants have distinct genotypes but are both heterozygous at the sex-determination locus. We first made crosses among progeny obtained after self-pollination of monoecious plants. These crosses showed that the monoecious trait generally showed Mendelian inheritance and was passed on to the next generation via both pollen and seeds. Further crosses between monoecious plants and plants from dioecious system indicated that alleles from the dioecious system are often dominant. However, many exceptions to our genetic model are observed which suggest that dominance is incomplete and/or that more genes are involved in sex determination. We discuss to what extent sex determination genes explain the strongly biased seed sex ratios and argue that additional genes, for instance genes for female choice, must also be involved.
机译:雌雄异株Urtica dioica的种子性别比差异很大。我们进行了一系列杂交以分析该物种性别决定的遗传基础。荷兰的U. dioica种群中,雄性和雌性植物中雌雄同体的比例较低。雌雄同株的自花授粉总是产生雌,雄和雌雄同株的植物,通常比例为一雌三雄/雌雄个体。这促使我们写下一个简单的模型,在该模型中,性别由一个主要的性别决定基因座和四个等位基因决定。在该模型中,雄性和雌雄同株的植物具有不同的基因型,但在性别决定基因座上都是杂合的。我们首先在雌花植物自花授粉后的子代中进行杂交。这些杂交表明,雌雄异株的性状通常表现出孟德尔遗传,并通过花粉和种子传给了下一代。雌雄异株植物与雌雄异体系统的植物之间的进一步杂交表明,雌雄异体系统的等位基因通常占优势。但是,我们的遗传模型有许多例外,这表明支配地位不完整和/或性别决定涉及更多基因。我们讨论了性别决定基因在多大程度上解释了种子性别比的严重偏差,并指出还必须涉及其他基因,例如女性选择的基因。

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