首页> 外文期刊>The American Naturalist: Devoted to the Conceptual Unification of the Biological Sciences >Mutation accumulation in real branches: fitness assays for genomic deleterious mutation rate and effect in large-statured plants.
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Mutation accumulation in real branches: fitness assays for genomic deleterious mutation rate and effect in large-statured plants.

机译:真实分支中的突变积累:适用于大型植物的基因组有害突变率和效应的适合性测定。

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The genomic deleterious mutation rate and mean effect are central to the biology and evolution of all species. Large-statured plants, such as trees, are predicted to have high mutation rates due to mitotic mutation and the absence of a sheltered germ line, but their size and generation time has hindered genetic study. We develop and test approaches for estimating deleterious mutation rates and effects from viability comparisons within the canopy of large-statured plants. Our methods, inspired by E. J. Klekowski, are a modification of the classic Bateman-Mukai mutation-accumulation experiment. Within a canopy, cell lineages accumulate mitotic mutations independently. Gametes or zygotes produced at more distal points by these cell lineages contain more mitotic mutations than those at basal locations, and within-flower selfs contain more homozygous mutations than between-flower selfs. The resulting viability differences allow demonstration of lethal mutation with experiments similar in size to assays of genetic load and allow estimates of the rate and effect of new mutations with moderate precision and bias similar to that of classic mutation-accumulation experiments in small-statured organisms. These methods open up new possibilities with the potential to provide valuable new insights into the evolutionary genetics of plants.
机译:基因组有害突变率和平均效应对于所有物种的生物学和进化至关重要。预计大型植物(例如树木)由于有丝分裂突变和缺乏庇护的种系而具有较高的突变率,但其大小和世代时间阻碍了遗传研究。我们开发和测试方法来估计有害突变率和大型植物冠层内部的生存力比较产生的影响。我们的方法受E. J. Klekowski的启发,是对经典Bateman-Mukai突变积累实验的改进。在树冠内,细胞谱系独立地积累有丝分裂突变。这些细胞谱系在更远端产生的配子或合子比在基部位置的配子或合子包含更多的有丝分裂突变,并且与花间的自交相比,花内的自交包含更多的纯合突变。所产生的生存力差异可通过与基因负荷分析类似的实验证明致命突变,并能够以中等精确度和偏倚来估计新突变的速率和效果,其准确性与偏态小生物中的经典突变积累实验相似。这些方法开辟了新的可能性,有可能为植物的进化遗传学提供有价值的新见解。

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