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The Genomic Landscape of Crossover Interference in the Desert Tree Populus euphratica

机译:胡杨胡杨交叉干扰的基因组景观

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摘要

Crossover (CO) interference is a universal phenomenon by which the occurrence of one CO event inhibits the simultaneous occurrence of other COs along a chromosome. Because of its critical role in the evolution of genome structure and organization, the cytological and molecular mechanisms underlying CO interference have been extensively investigated. However, the genome-wide distribution of CO interference and its interplay with sex-, stress-, and age-induced differentiation remain poorly understood. Multi-point linkage analysis has proven to be a powerful tool for landscaping CO interference, especially within species for which CO mutants are rarely available. We implemented four-point linkage analysis to landscape a detailed picture of how CO interference is distributed through the entire genome of Populus euphratica, the only forest tree that can survive and grow in saline desert. We identified an extensive occurrence of CO interference, and found that its strength depends on the length of chromosomes and the genomic locations within the chromosome. We detected high-order CO interference, possibly suggesting a highly complex mechanism crucial for P. euphratica to grow, reproduce, and evolve in its harsh environment.
机译:交叉(CO)干扰是一种普遍现象,通过这种现象,一个CO事件的发生会抑制沿染色体同时发生其他CO。由于其在基因组结构和组织进化中的关键作用,对CO干扰的细胞学和分子机制进行了广泛研究。但是,对CO干扰的全基因组分布及其与性别,压力和年龄诱导的分化之间的相互作用的了解仍然很少。多点连锁分析已被证明是美化CO干扰的强大工具,尤其是在很少有CO突变体的物种内。我们实施了四点链接分析,以详细了解CO干扰如何通过胡杨的整个基因组分布,胡杨是唯一可以在盐碱沙漠中生存和生长的林木。我们确定了广泛发生的CO干扰,并发现其强度取决于染色体的长度和染色体内的基因组位置。我们检测到高水平的CO干扰,可能暗示着一种非常复杂的机制,对于胡杨假单胞菌在其恶劣的环境中生长,繁殖和进化至关重要。

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