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Fitness Costs and Variation in Transmission Distortion Associated with the Abnormal Chromosome 10 Meiotic Drive System in Maize

机译:玉米10号染色体减数分裂异常驱动系统的适应性成本和传播畸变的变化

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摘要

Meiotic drive describes a process whereby selfish genetic elements are transmitted at levels greater than Mendelian expectations. Maize abnormal chromosome 10 (Ab10) encodes a meiotic drive system that exhibits strong preferential segregation through female gametes. We performed transmission assays on nine Ab10 chromosomes from landraces and teosinte lines and found a transmission advantage of 62–79% in heterozygotes. Despite this transmission advantage, Ab10 is present at low frequencies in natural populations, suggesting that it carries large negative fitness consequences. We measured pollen transmission, the percentage of live pollen, seed production, and seed size to estimate several of the possible fitness effects of Ab10. We found no evidence that Ab10 affects pollen transmission, i.e., Ab10 and N10 pollen are transmitted equally from heterozygous fathers. However, at the diploid (sporophyte) level, both heterozygous and homozygous Ab10-I-MMR individuals show decreased pollen viability, decreased seed set, and decreased seed weight. The observed fitness costs can nearly but not entirely account for the observed frequencies of Ab10. Sequence analysis shows a surprising amount of molecular variation among Ab10 haplotypes, suggesting that there may be other phenotypic variables that contribute to the low but stable equilibrium frequencies.
机译:减数分裂驱动力描述了自私的遗传元素以高于孟德尔预期的水平传播的过程。玉米异常染色体10(Ab10)编码减数分裂驱动系统,该系统通过雌配子表现出强烈的优先隔离。我们对来自地方品种和端粒系的9条Ab10染色体进行了传递分析,发现杂合子的传递优势为62–79%。尽管具有这种传播优势,但Ab10在自然种群中的出现频率较低,表明它具有很大的负面适应性后果。我们测量了花粉传播,活花粉的百分比,种子产量和种子大小,以估算Ab10的几种可能的适应性影响。我们没有发现任何证据表明Ab10影响花粉的传播,即Ab10和N10花粉是从杂合子父亲中平等传播的。但是,在二倍体(孢子体)水平上,杂合和纯合的Ab10-I-MMR个体均显示出花粉活力降低,种子结实降低和种子重量降低。观察到的健身成本可以几乎但不完全解释观察到的Ab10频率。序列分析显示,Ab10单倍型之间的分子变化量令人惊讶,表明可能存在其他表型变量,导致平衡频率较低但稳定。

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