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Boechera 属中的有性生殖、杂交、无融合生殖和多倍体化(Brassicaceae)。

Sexual reproduction, hybridization, apomixis, and polyploidization in the genus Boechera (Brassicaceae).

机构信息

Department of Genetics and Evolution, Max Planck Institute for Chemical Ecology, Hans Knöll Strasse 6, D-07745 Jena, Germany;

出版信息

Am J Bot. 2005 Nov;92(11):1797-810. doi: 10.3732/ajb.92.11.1797.

Abstract

Of the 340 genera in the Brassicaceae, apomictic reproduction is found only in the North American genus Boechera. We investigated phylogenetic relationships, ability to hybridize, mating system, and ploidy levels of 92 lines sampled from 85 populations and representing 19 Boechera species. Phylogenetic analyses based on chloroplast DNA sequences identified three lineages in the genus. Reciprocal crosses of each line were made to a common sexual diploid B. stricta tester. The resulting F(1) progeny were analyzed for the inheritance of polymorphic microsatellite loci, genome size, and seed production. Intraspecific B. stricta crosses confirmed that this species is mostly diploid and sexual. Interspecific crosses revealed many other species were diploid and sexual and could be successfully hybridized with the tester. We also found obligate and facultative apomictic diploid and triploid lines. De novo F(1) polyploids (either triploids or tetraploids) were derived from the union of nonreduced (from an apomictic parent) and reduced (from the tester) gametes. However, seed production of these F(1) plants was generally low, suggesting a failure in the transmission of apomixis. The creation of a wide array of segregating genetic populations will facilitate future research on the evolution and inheritance of quantitative variation in Boechera.

摘要

在十字花科的 340 个属中,仅在北美属 Boechera 中发现了无融合生殖。我们调查了 85 个种群的 92 个样本的系统发育关系、杂交能力、交配系统和倍性水平,这些样本代表了 19 个 Boechera 种。基于叶绿体 DNA 序列的系统发育分析确定了该属中的三个谱系。将每个谱系的回交进行到一个共同的有性二倍体 Boechera stricta 测试者中。对产生的 F1 后代进行了多态微卫星位点、基因组大小和种子产量的遗传分析。种内 Boechera stricta 杂交证实该物种主要是二倍体和有性的。种间杂交揭示了许多其他物种也是二倍体和有性的,可以与测试者成功杂交。我们还发现了强制性和兼性无融合生殖的二倍体和三倍体系。从头开始的 F1 多倍体(三倍体或四倍体)是由未减数(来自无融合生殖亲本)和减数(来自测试者)配子的结合而产生的。然而,这些 F1 植物的种子产量通常较低,表明无融合生殖的传递失败。创造广泛的分离遗传群体将有助于未来研究 Boechera 中数量变异的进化和遗传。

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