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首页> 外文期刊>Journal of Biogeography >Novel insights into the genetic diversity and clonal structure of natural trembling aspen (Populus tremuloides Michx.) populations: A transcontinental study
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Novel insights into the genetic diversity and clonal structure of natural trembling aspen (Populus tremuloides Michx.) populations: A transcontinental study

机译:新颖的识别自然颤抖的亚斯本遗传多样性和克隆结构(Populus Trowuloides Michx。)人群:跨无道管研究

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Aim Distribution-wide trends in climate variability significantly influence the genetic diversity, differentiation and population structure of tree species. This study investigates the effects of disturbances such as fire, fragmentation and climate on modern-day genetic patterns and clonal structures of trembling aspen at the transcontinental scale. Location North American boreal zone. Taxon Trembling aspen (Populus tremuloides Michx.). Methods One thousand two hundred individuals in a 30-site network (40 trees per location) were genotyped with neutral genetic markers and studied in relation to regional differences in climate and surrounding site conditions (aridity, fire cycle, fragmentation). Multiple linear regression models and variance analysis were used to test relationships between genetic indices, structural parameters and the surrounding site factors. Results Overall, a high percentage of single ramet clones (SRC) and clonal diversity was detected and assumed to be the consequence of multiple sexual reproduction events that took place at all sites, together with suckering, which shapes the clonal structure of populations. Neutral genetic diversity and clonal structure suggested no substantial differences among sites, which were categorized into climate moisture index (CMI) classes; aspen stands across Canada were highly similar from a genetic point of view. Allelic richness (AR) and the average number of alleles (N-a) varied significantly among clonal organization groups, and landscape fragmentation and a higher frequency of fires showed a negative influence on the levels of genetic diversity. Main conclusions Our results are inconsistent with the idea that the genotypic diversity of trembling aspen is related to the intensity of disturbance within the boreal forest. It appears that species-specific disturbance responses and post-fire recruitment mechanisms are more important than dominant ecological factors, such as climate and fire regimes, in shaping distribution-wide patterns of neutral genetic variation and clonal structure.
机译:气候变异性的分布趋势显着影响树种遗传多样性,分化和人口结构。本研究调查了扰动,碎片和气候等干扰对跨十二型巨大突出的颤动的现代遗传模式和克隆结构的影响。位置北美北方区域。分类克烈颤抖的白杨(populus trowuloides michx。)。方法使用中性遗传标志物(每个位置40棵树40棵树40棵树40棵树(40棵树40棵树),并研究了气候和周围地点条件(干燥,火循环,碎片)的区域差异研究。多元线性回归模型和方差分析用于测试遗传指数,结构参数和周围地点因素之间的关系。结果总体而言,检测到高百分比的单个ramet克隆(SRC)和克隆多样性,并认为是在所有地点发生的多种性繁殖事件以及诽谤的后果,这些事件塑造了群体的克隆结构。中性遗传多样性和克隆结构表明位点之间没有大量差异,分为气候湿度指数(CMI)课程;从加拿大的阿斯彭站立与遗传观点高度相似。等位基因丰富(AR)和克隆组织组中的平均等位基因(N-A)在显着变化,景观碎片和较高频率的射击率对遗传多样性的水平产生了负面影响。主要结论我们的结果与颤抖的Aspen的基因型多样性与北方森林内的干扰强度有关。似乎种类特定的扰动响应和火灾后招聘机制比主要的生态因素(如气候和消防制度)更重要,以塑造中性遗传变异和克隆结构的分布范围。

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