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The role of inter-ploidy block for reproductive isolation of the diploid Leucanthemum pluriflorum Pau (Compositae, Anthemideae) and its tetra- and hexaploid relatives

机译:二倍体间阻滞在二倍体白花菊(菊科,Anthemideae)及其四倍体和六倍体亲缘植物生殖分离中的作用

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摘要

Theory suggests that post-zygotic reproductive isolation of polyploids from their diploid progenitors is often caused by developmental disorder in the endosperm of hybrid seeds. Yet, this so-called triploid block is increasingly recognized to be less strong than initially assumed, indicating that other isolation mechanisms are needed to explain reproductive isolation of polyploids and diploids. In the present study, the extent of inter-ploidy block was quantified based on crossing experiments between closely related diploid, tetraploid, and hexaploid species from the genus Leucanthemum Mill. (Compositae, Anthemideae). Seed set and viability of seeds obtained from inter-cytotype crosses were measured and compared to fertilities of intra-cytotype crosses. Although inter-ploidy block was observed when diploids acted as pollen donors, the main observation was that all inter-ploidy crosses were capable of producing viable offspring. By contrast, flow cytometrical analysis of 233 individuals from natural populations did not reveal the presence of any unambiguous cross-ploidy offspring in the field. Hence, the results of the present study demonstrate that inter-cytotype mating may be rare even though inter-ploidy block is weak. Consequently, it can be assumed that pre-zygotic barriers and reduced fitness of inter-cytotype hybrids play a decisive role in the reproductive isolation of polyploid Leucanthemum species.
机译:理论表明,多倍体从其二倍体祖先的合子后生殖分离通常是由杂种种子的胚乳中的发育障碍引起的。然而,人们越来越多地认识到这种所谓的三倍体阻滞性不如最初设想的那么强,表明需要其他隔离机制来解释多倍体和二倍体的生殖隔离。在本研究中,基于Leucanthemum Mill属的密切相关的二倍体,四倍体和六倍体物种之间的杂交实验,定量了倍性间阻断的程度。 (菊科,菊科)。测量从细胞间杂交获得的种子的结实和种子的活力,并将其与细胞内杂交的受精能力进行比较。尽管当二倍体作为花粉供体时观察到了倍性间的阻断,但主要观察结果是所有倍性间的杂交都能够产生活的后代。相比之下,对来自自然种群的233个个体的流式细胞术分析并未发现该领域中存在任何明确的跨倍性后代。因此,本研究的结果表明,即使倍性间的阻断较弱,细胞间的交配也很少见。因此,可以认为,合子前的障碍和细胞间杂种适应性的降低在多倍体白花菊属植物的生殖分离中起着决定性的作用。

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