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Analyses between Reproductive Behavior Genetic Diversity and Pythium Responsiveness in Zingiber spp. Reveal an Adaptive Significance for Hemiclonality

机译:姜属植物的生殖行为遗传多样性和腐霉菌反应性之间的关系分析。揭示适应性对半殖民地意义

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摘要

Mode of reproduction is generally considered to have long-range evolutionary implications on population survival. Because sexual reproduction produces genetically diverse genotypes, this mode of reproduction is predicted to positively influence the success potential of offspring in evolutionary arms race with parasites (Red queen) whereas, without segregation and recombination, the obligate asexual multiplication may push a species into extinction due to the steady accumulation of deleterious mutations (Muller’s ratchet). However, the extent of linearity between reproductive strategies, genetic diversity and population fitness, and the contributions of different breeding strategies to population fitness are yet to be understood clearly. Genus Zingiber belonging to the pan-tropic family Zingiberaceae represents a good system to study contributions of different breeding behavior on genetic diversity and population fitness, as this genus comprises species with contrasting breeding systems. In this study, we analyzed breeding behavior, amplified fragment length polymorphism diversity and response to the soft-rot pathogen Pythium aphanidermatum in 18 natural populations of three wild Zingiber spp.: Z. neesanum, Z. nimmonii, and Z. zerumbet, together with the obligately asexual cultivated congener, ginger (Z. officinale). Ginger showed an exceptionally narrow genetic base, and adding to this, all the tested cultivars were uniformly susceptible to soft-rot. Concordant with the postulates of Muller’s ratchet, the background selection may be continuously pushing ginger into the ancestral state, rendering it inefficient in host-pathogen coevolution. Z. neesanum and Z. nimmonii populations were sexual and genetically diverse; however, contrary to Red Queen expectations, the populations were highly susceptible to soft-rot. Z. zerumbet showed a hemiclonal breeding behavior. The populations inhabiting forest understory were large and continuous, sexual and genetically diverse, but were susceptible, whereas populations inhabiting the revenue land were fragmented and monoclonal, but were resistant. It may be possible that, when genetic recombination becomes at a premium due to the genetic constraints imparted by habitat fragmentation or pathogen pressure, Z. zerumbet
机译:一般认为繁殖方式对种群生存具有长期的进化影响。由于有性生殖产生遗传上不同的基因型,因此这种生殖方式预计会积极影响后代在具有寄生虫(红皇后)的进化军备竞赛中的成功潜力,而在没有隔离和重组的情况下,专性无性繁殖可能会导致物种灭绝。不断累积有害突变(穆勒棘轮)。但是,生殖策略,遗传多样性和种群适应性之间的线性程度以及不同育种策略对种群适应性的贡献尚不清楚。属于泛热带植物姜科的姜属属是研究不同育种行为对遗传多样性和种群适应性贡献的良好系统,因为该属包括具有相反育种系统的物种。在这项研究中,我们分析了三个野生Zingiber物种:Z。neesanum,Z。nimmonii和Z. zerumbet的18个自然种群的繁殖行为,扩增的片段长度多态性多样性以及对软腐病原体腐霉腐霉的响应。专为无性栽培的同类植物姜(Z. officinale)。生姜显示出异常狭窄的遗传基础,此外,所有测试的品种均对软腐病敏感。与穆勒(Muller)棘轮的假设相一致,背景选择可能会不断将姜推入祖先状态,使其在宿主-病原体协同进化中效率低下。 neesan neesanum和Z. nimmonii种群有性和遗传多样性。但是,与红女王的期望相反,这些人群极易遭受软腐病的影响。 Z. zerumbet表现出半殖民地繁殖行为。居住在森林林下的种群数量庞大且连续,有性和遗传多样性,但易感,而居住在经济用地的种群则零散且单一,但具有抗性。当由于栖息地破碎或病原体压力所赋予的遗传限制而导致遗传重组变得异常重要时,Z。zerumbet

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