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A Genomewide Study of Reproductive Barriers Between Allopatric Populations of a Homosporous Fern Ceratopteris richardii

机译:全基因组研究全同种蕨Ceratopteris richardii的异源种群之间的生殖屏障。

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摘要

Biological factors involved in reproductive barriers between two divergent races of Ceratopteris richardii were investigated. We used a combination of spore germination rates, QTL analysis of spore germination rates, and transmission ratio distortion (TRD) of 729 RFLPs, AFLPs, and isozyme markers distributed across the genome on the basis of hybrid populations of 488 doubled haploid lines (DHLs) and 168 F2's. Substantial reproductive barriers were found between the parental races, predominantly in the form of spore inviability (23.7% F1 spore viability). Intrinsic genetic factors such as Bateson–Dobzhansky–Muller (BDM) incompatibilities involving both nuclear–nuclear and nuclear–cytoplasmic factors and chromosomal rearrangements appear to contribute to intrinsic postzygotic isolation. The genomewide distribution patterns of TRD loci support the hypothesis that reproductive barriers are a byproduct of divergence in allopatry and that the strong reproductive barriers are attributable to a small number of genetic elements scattered throughout the genome.
机译:研究了Richardii的两个不同种族之间生殖障碍中涉及的生物学因素。我们在488个双单倍体系(DHL)的杂交种群基础上,结合使用了孢子萌发率,孢子萌发率的QTL分析以及729个RFLP,AFLP和同工酶标记物在基因组中分布的传输比畸变(TRD)。和168 F2在亲代之间发现大量生殖障碍,主要是孢子存活率(F1孢子存活率23.7%)的形式。内在遗传因素(如Bateson–Dobzhansky–Muller(BDM)不兼容)涉及核-核和核质质因素以及染色体重排似乎有助于内在的合子后分离。 TRD基因座的全基因组分布模式支持这样的假设:生殖障碍是异色症发散的副产品,而强大的生殖障碍可归因于散布在整个基因组中的少数遗传元件。

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