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婆罗门参属(菊科)二倍体和异源四倍体种群的交配系统。II. 人工种群。

Mating systems of diploid and allotetraploid populations of Tragopogon (Asteraceae). II. Artificial populations.

作者信息

Cook L M, Soltis P S

机构信息

Department of Botany, PO Box 64238, Washington State University, Pullman, WA 99164-4238, USA.

出版信息

Heredity (Edinb). 2000 Apr;84 ( Pt 4):410-5. doi: 10.1046/j.1365-2540.2000.00654.x.

Abstract

Polyploidization has long been recognized as an important force in the diversification of plants. Theoretical models predict that polyploids may be expected to exhibit higher rates of self-fertilization than do closely related diploid species. Wild populations of the neopolyploid Tragopogon mirus (4n) exhibited slightly higher rates of outcrossing than did populations of one of its progenitors, T. dubius (2n). In the current study, outcrossing rates in populations of T. dubius and T. mirus were estimated using artificial arrays constructed to maximize the chances of detecting outcrossing events. The artificial diploid population is more highly outcrossing (t=0.727; family-level estimates range from 0.00 to 1. 32) than the tetraploid population (t=0.591; family-level estimates range from 0.00 to 1.14), although the difference between them is not statistically significant. The results of this study, combined with those of the previous work on wild populations, suggest that mating systems in these species vary more among populations than between ploidal levels. This could be because of the relatively recent origins of the tetraploid species; there may have been insufficient time since the formations of the tetraploids for shifts in mating systems to occur.

摘要

长期以来,多倍体化一直被认为是植物多样化的重要驱动力。理论模型预测,与亲缘关系相近的二倍体物种相比,多倍体可能具有更高的自交率。新多倍体小花婆罗门参(4n)的野生种群比其亲本之一的 dubius 婆罗门参(2n)种群表现出略高的异交率。在本研究中,使用人工阵列估计 dubius 婆罗门参和小花婆罗门参种群的异交率,该人工阵列的构建旨在最大限度地提高检测异交事件的机会。人工二倍体种群的异交率(t = 0.727;家族水平估计范围为 0.00 至 1.32)高于四倍体种群(t = 0.591;家族水平估计范围为 0.00 至 1.14),尽管它们之间的差异没有统计学意义。本研究结果与先前对野生种群的研究结果相结合,表明这些物种的交配系统在种群间的差异大于倍性水平间的差异。这可能是由于四倍体物种起源相对较近;自四倍体形成以来,可能没有足够的时间发生交配系统的转变。

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