Schoen Daniel J, Baldwin Sarah J
Department of Biology, McGill University, Montreal, QC, H3A 1B1, Canada.
New Phytol. 2023 Feb;237(3):1040-1049. doi: 10.1111/nph.18550. Epub 2022 Nov 22.
Inbreeding depression plays a fundamental role in evolution. To help detect and characterize the loci that underlie inbreeding depression, we used bud pollination and salt treatments to circumvent self-incompatibility (SI) in plants from populations of Leavenworthia alabamica and produced families of progeny that were then genotyped at genetically mapped single-nucleotide polymorphism (SNP) loci. Using Bayesian inference, the segregation patterns for each SNP were used to explore support for different dominance and selection coefficients at linked viability loci in different genomic regions. There was support for several partially recessive viability loci in one of the populations, and one such locus mapped to the genomic region of the novel SI locus in L. alabamica. These results are consistent with earlier findings that showed purging of inbreeding depression for germination rate in L. alabamica. They are also consistent with expectations from evolutionary genetic theory that recessive, deleterious alleles linked to loci under balancing selection can be sheltered from selection.
近亲繁殖衰退在进化中起着根本性作用。为了帮助检测和表征导致近亲繁殖衰退的基因座,我们采用花蕾授粉和盐处理来规避阿拉巴马州莱文沃思草种群中植物的自交不亲和性(SI),并产生了子代家族,然后在经遗传定位的单核苷酸多态性(SNP)基因座上对其进行基因分型。利用贝叶斯推断,每个SNP的分离模式被用于探究不同基因组区域中连锁生存力基因座上不同显性和选择系数的支持情况。在其中一个种群中,有几个部分隐性的生存力基因座得到了支持,其中一个这样的基因座映射到了阿拉巴马州莱文沃思草新的SI基因座的基因组区域。这些结果与早期的研究结果一致,早期研究表明阿拉巴马州莱文沃思草的发芽率近亲繁殖衰退得到了清除。它们也与进化遗传学理论的预期一致,即与处于平衡选择下的基因座连锁的隐性有害等位基因可以免受选择。