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Morphology and genetics of Lythrum salicaria from latitudinal gradients of the Northern Hemisphere grown in cold and hot common gardens

机译:寒热共同花园中北半球纬向梯度上的千屈菜的形态和遗传

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摘要

The aim of this project was to compare the phenotypic responses of global populations of Lythrum salicaria in cold/dry and hot/humid environments to determine if phenotypic plasticity varied between the native and invasive ranges, and secondarily if this variation was linked to genetic diversity. Common garden studies were conducted in Třeboň, Czech Republic, and Lafayette, Louisiana, USA (cold/dry vs. hot/humid garden, respectively), using populations from latitudinal gradients in Eurasia and North America. Lythrum salicaria seeds collected from the same maternal plants across these latitudinal gradients were germinated and grown in Třeboň and Lafayette. Tissue masses (above-, below-ground, inflorescence and total) of these individuals were assessed at the end of each growing season (2006–2008). Worldwide field measurements of L. salicaria height were made by volunteers from 2004–2016. Biomass and height data were analyzed using the General Linear Model framework and multivariate techniques. Molecular markers (amplified fragment length polymorphisms) of individuals used in the common garden study were analyzed using traditional genetic diversity metrics and Bayesian clustering algorithms in STRUCTURE. Reaction norms were developed from differences in maternal plant responses in Třeboň versus Lafayette. In the common garden studies, stem/leaf, root and total biomass generally were highest for individuals grown from seeds collected in the southern part of the range in the cold garden, particularly by the third year of the study. In contrast, inflorescence biomass in the cold garden was higher by the third year in individuals from mid-latitude populations. As measured by volunteers, plants were taller in Eurasia than in North America moving from north to south with the pattern switching southward of 40°N latitude. Genetic diversity was similar between native and non-native invasive populations regardless of geographical origin of the seed and was not significantly different in the GLM Select model (p > 0.05). Reaction norm slopes showed that Eurasia had larger values than North America for reaction norms for above-ground and total biomass. Plants from the seeds of mother plants from Turkey had wide variation in total biomass when grown in Třeboň versus Lafayette; this variation in response within certain populations may have contributed to the lack of population-level differences in plasticity. These results indicate no loss of genetic diversity for L. salicaria during its North American invasion, nor reduction in plastic tissue allocation responses to a varying environment, which may help explain some of its invasive qualities and which could be of adaptive value under changing future environments.
机译:该项目的目的是比较在寒冷/干燥和炎热/潮湿的环境中全球千屈菜的表型反应,以确定表型可塑性在自然和侵入范围之间是否变化,其次,这种变化是否与遗传多样性有关。使用来自欧亚大陆和北美纬度梯度的种群,在捷克共和国的特雷博ň和美国路易斯安那州的拉斐特进行了常见的花园研究(分别为冷/干与热/湿的花园)。从相同的母本植物中跨越这些纬度梯度收集的千屈菜种子在Třeboň和Lafayette发芽并生长。在每个生长季节结束时(2006-2008年)评估这些个体的组织质量(地上,地下,花序和总数)。 2004年至2016年,志愿者在全球范围内对唾液乳杆菌高度进行了现场测量。使用通用线性模型框架和多元技术分析生物量和高度数据。使用传统的遗传多样性指标和贝叶斯聚类算法在STRUCTURE中分析了在普通花园研究中使用的个体的分子标记(扩增的片段长度多态性)。反应规范是根据特雷伯与拉斐特的母本植物反应差异而制定的。在普通的花园研究中,从寒冷的花园中南部收集的种子中生长的个体,茎/叶,根和总生物量通常最高,特别是在研究的第三年。相比之下,来自中纬度人群的个人在寒冷花园中的花序生物量到第三年更高。根据志愿者的测量,欧亚大陆上的植物比北美从北向南移动的植物要高,其模式向南移至北纬40°。无论种子的地理来源如何,本地和非本地入侵种群之间的遗传多样性相似,并且在GLM Select模型中无显着差异(p> 0.05)。反应规范斜率表明,欧亚大陆的地上和总生物量反应规范值均高于北美。在特雷博埃(Třeboň)与拉斐特(Lafayette)种植时,来自土耳其母植物种子的植物的总生物量差异很大;某些人群中反应的这种差异可能导致缺乏可塑性的人群水平差异。这些结果表明,唾液乳杆菌在北美入侵期间没有遗传多样性的损失,也没有减少对不同环境的塑性组织分配反应,这可能有助于解释其入侵特性,并且在未来环境变化中具有适应性价值。 。

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