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Somatic mutations substantially increase the per‐generation mutation rate in the conifer Picea sitchensis

机译:体细胞突变显着提高了针叶树Picea sitchensis的每代突变率

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摘要

The rates and biological significance of somatic mutations have long been a subject of debate. Somatic mutations in plants are expected to accumulate with vegetative growth and time, yet rates of somatic mutations are unknown for conifers, which can reach exceptional sizes and ages. We investigated somatic mutation rates in the conifer Sitka spruce (Picea sitchensis (Bong.) Carr.) by analyzing a total of 276 Gb of nuclear DNA from the tops and bottoms of 20 old‐growth trees averaging 76 m in height. We estimate a somatic base substitution rate of 2.7 × 10−8 per base pair within a generation. To date, this is one of the highest estimated per‐generation rates of mutation among eukaryotes, indicating that somatic mutations contribute substantially to the total per‐generation mutation rate in conifers. Nevertheless, as the sampled trees are centuries old, the per‐year rate is low in comparison with nontree taxa. We argue that although somatic mutations raise genetic load in conifers, they generate important genetic variation and enable selection both among cell lineages within individual trees and among offspring.
机译:体细胞突变的发生率和生物学意义长期以来一直是争论的话题。预计植物中的体细胞突变会随着营养的生长和时间而积累,但针叶树的体细胞突变发生率尚不清楚,针叶树可能达到异常的大小和年龄。我们分析了针叶树Sitka云杉(Picea sitchensis(Bong。)Carr。)中的体细胞突变率,方法是分析20棵平均树高76 m的老树顶部和底部的总276 Gb核DNA。我们估计一代内每个碱基对的体细胞碱基替代率为2.7×10 -8 。迄今为止,这是真核生物中估计的每代突变率最高的突变之一,表明体细胞突变对针叶树总的每代突变率有很大贡献。但是,由于采样的树木已有数百年的历史,因此与非树木分类单元相比,每年的比率较低。我们认为,尽管体细胞突变会增加针叶树的遗传负荷,但它们会产生重要的遗传变异,并能够在单个树木内的细胞谱系和后代之间进行选择。

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