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Population genetic variation characterization of the boreal tree Acer ginnala in Northern China

机译:北方北方北方树宏碁甘纳群的人口遗传变异特征

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摘要

Genetic diversity and differentiation are revealed particularly through spatio-temporal environmental heterogeneity. Acer ginnala, as a deciduous shrub/small tree, is a foundation species in many terrestrial ecosystems of Northern China. Owing to its increased use as an economic resource, this species has been in the vulnerability. Therefore, the elucidations of the genetic differentiation and influence of environmental factors on A. ginnala are very critical for its management and future utilization strategies. In this study, high genetic diversity and differentiation occurred in A. ginnala, which might be resulted from its pollination mechanism and species characteristics. Compared with the species level, relatively low genetic diversity was detected at the population level that might be the cause for its vulnerability. There was no significant relationship between genetic and geographical distances, while a significant correlation existed between genetic and environmental distances. Among nineteen climate variables, Annual Mean Temperature (bio1), Mean Diurnal Range (bio2), Isothermality (bio3), Temperature Seasonality (bio4), Precipitation of Wettest Month (bio13), Precipitation Seasonality (bio15), and Precipitation of Warmest Quarter (bio18) could explain the substantial levels of genetic variation (?40%) in this species. The A. ginnala populations were isolated into multi-subpopulations by the heterogeneous climate conditions, which subsequently promoted the genetic divergence. Climatic heterogeneity played an important role in the pattern of genetic differentiation and population distribution of A. ginnala across a relatively wide range in Northern China. These would provide some clues for the conservation and management of this vulnerable species.
机译:特别是通过时空环境异质性揭示了遗传多样性和分化。宏碁吉诺纳,作为落叶灌木/小树,是中国北方许多陆地生态系统的基础。由于其随着经济资源的增加,这种物种已经存在脆弱性。因此,遗传分化的阐明和环境因素对A.Ginnala对其管理和未来利用策略的影响非常关键。在这项研究中,高遗传多样性和分化发生在甘油中,这可能是由授粉机制和物种特征导致的。与物种级别相比,在人口水平检测到相对低的遗传多样性,可能是其脆弱性的原因。遗传和地理距离之间没有显着的关系,而遗传和环境距离之间存在显着相关性。在19世纪气候变量中,年平均温度(Bio1),平均昼夜范围(Bio2),等温(Bio3),温度季节性(Bio4),最潮湿的月份降水(Bio13),降水季节性(Bio15)和最温暖的季度降水( Bio18)可以解释本种遗传变异(> 40%)的大量遗传变异水平。通过异质气候条件将A.Ginnala种群分离成多群。随后促进了遗传分歧。气候异质性在中国北方相对广泛的范围内遗传分化和A.Ginnala人口分布的模式中起着重要作用。这些将为这种脆弱物种的保护和管理提供一些线索。

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