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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >The Effects of Pollen and Seed Migration on Nuclear-Dicytoplasmic Systems. I. Nonrandom Associations and Equilibrium Structure With Both Maternal and Paternal Cytoplasmic Inheritance
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The Effects of Pollen and Seed Migration on Nuclear-Dicytoplasmic Systems. I. Nonrandom Associations and Equilibrium Structure With Both Maternal and Paternal Cytoplasmic Inheritance

机译:花粉和种子迁移对核双胞质系统的影响。一,具有母体和父体细胞质遗传的非随机关联和平衡结构

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We determine the nuclear-dicytoplasmic effects of unidirectional gene flow via pollen and seeds upon a mixed-mating plant population, focusing on nuclear-mitochondrial-chloroplast systems where mitochondria are inherited maternally and chloroplasts paternally, as in many conifers. After first delineating the general effects of admixture (via seeds or individuals) on the nonrandom associations in such systems, we derive the full dicytonuclear equilibrium structure, including when disequilibria may be indicators of gene flow. Substantial levels of permanent two- and three-locus disequilibria can be generated in adults by (i) nonzero disequilibria in the migrant pools or (ii) intermigrant admixture effects via different chloroplast frequencies in migrant pollen and seeds. Additionally, three-locus disequilibria can be generated by higher-order intermigrant effects such as different chloroplast frequencies in migrant pollen and seeds coupled with nuclear-mitochondrial disequilibria in migrant seeds, or different nuclear frequencies in migrant pollen and seeds coupled with mitochondrial-chloroplast disequilibria in migrant seeds. Further insight is provided by considering special cases with seed or pollen migration alone, complete random mating or selfing, or migrant pollen and seeds lacking disequilibria or intermigrant admixture effects. The results complete the theoretical foundation for a new method for estimating pollen and seed migration using joint cytonuclear or dicytonuclear data.
机译:我们确定单向基因流通过花粉和种子对混合交配植物种群的核双胞质效应,集中在核线粒体-叶绿体系统上,线粒体是母体遗传的,叶绿体是父本遗传的,就像许多针叶树一样。首先描述了混合物(通过种子或个体)对此类系统中非随机关联的一般影响之后,我们得出了完整的双核平衡结构,包括不平衡可能是基因流量的指标。在成年人中,通过(i)迁移池中的非零失衡或(ii)迁移花粉和种子中不同叶绿体频率的迁移混合效应,可在成年人体内产生大量的永久性两元和三元不平衡。此外,三元位点失衡可能由更高阶的移民效应产生,例如移民花粉和种子中的叶绿体频率不同,再加上移民种子中的核线粒体不平衡,或者移民花粉和种子中的不同核频率,再加上线粒体-叶绿体失衡在移民种子中。通过考虑特殊情况,例如仅种子或花粉迁移,完全随机交配或自交,或迁移花粉和种子缺乏失衡或移民间混合效应的种子,可以提供进一步的见解。结果为使用联合细胞核或双细胞核数据估算花粉和种子迁移的新方法奠定了理论基础。

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