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会议综述:美国遗传学协会物种形成遗传学研讨会

Meeting review: American Genetics Association Symposium on the genetics of speciation.

作者信息

Ortiz-Barrientos Daniel, Kane Nolan C

机构信息

Department of Botany, University of British Columbia, 6804 SW Marine Drive, Vancouver, British Columbia, Canada, V6T 1Z4.

出版信息

Mol Ecol. 2007 Jul;16(14):2852-4. doi: 10.1111/j.1365-294X.2007.03358.x.

Abstract

Yeast can be engineered to carry human chromosomes; highly diverged ducks can produce viable, fertile offspring; and mitochondrial genes can move between widely divergent groups of plants. Some sunflower or oak species have porous genomes; mice, crickets, birds, and butterflies form hybrid zones; and bacterial lineages have been exchanging genes for several billion years. Even so, nature is discrete and full of species. Here, we discuss some of the ingredients that make nature discrete and can lead to clustering even in the presence of gene flow. Many of these results have been recently published, in this issue and elsewhere, and were discussed at the Genetics of Speciation Symposium held at the annual meeting of the American Genetics Association, Vancouver, Canada, in 2006.

摘要

酵母可经改造携带人类染色体;亲缘关系高度疏远的鸭子能够产生可存活、可育的后代;线粒体基因可在差异极大的植物类群间转移。一些向日葵或橡树物种拥有可渗透的基因组;小鼠、蟋蟀、鸟类和蝴蝶形成了杂交带;细菌谱系数十亿年来一直在交换基因。即便如此,自然界是离散的且物种繁多。在此,我们探讨一些致使自然界离散并即使在存在基因流动的情况下也能导致聚类的因素。其中许多结果近期已在本期及其他地方发表,并在2006年于加拿大温哥华举行的美国遗传学会年会上召开的物种形成遗传学研讨会上进行了讨论。

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