油松自然居群针叶形态和解剖性状的遗传分析

Meiyan Zhang, Jingxiang Meng, Zijie Zhang, Song Zhu, Yue Li
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引用次数: 5

摘要

针叶的形态和解剖特征是评价针叶物种地理变异和种群动态的重要依据。针叶植物针叶形态和解剖性状的变异被认为是遗传进化的结果,可用于地理变异和生态学研究等。油松(Pinus tabulformis)是中国北部和中部特有的本土针叶林树种。为了了解其针叶性状的适应进化,在30年的省属普通花园小径上采集了10个地理种群的针叶样本,消除了现场环境的影响,显示了种群间的遗传变异,涉及20个针叶形态和解剖性状。结果表明,所有测定性状的种群间和种群内变异均存在显著差异,多数测定的针叶性状的种群内变异分量普遍大于种群间变异分量。普通园林取样各性状的群体遗传力均大于0.7。针叶性状与经度的相关性显著高于其他因子。特征值大于1的前5个主成分占变异量的81.6%;种群间的差异主要取决于针叶宽度、气孔密度、维管束截面积、总树脂管和叶肉以及面积比性状。根据欧几里得距离将10个种群分为两类。不同种群间针叶性状的变异在地理影响方面显示出系统的微进化。本研究为油油树的适应和遗传变异提供了经验数据,可用于生态学研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Genetic Analysis of Needle Morphological and Anatomical Traits among Nature Populations of Pinus Tabuliformis
The morphological and anatomical traits of needles are important to evaluate geographic variation and population dynamics of conifer species. Variations of morphological and anatomical needle traits in coniferous species are considered to be the consequence of genetic evolution, and be used in geographic variation and ecological studies, etc. Pinus tabuliformis is a particular native coniferous species in northern and central China. For understanding its adaptive evolution in needle traits, the needle samplings of 10 geographic populations were collected from a 30yr provenience common garden trail that might eliminate site environment effect and show genetic variation among populations and 20 needle morphological and anatomical traits were involved. The results showed that variations among and within populations were significantly different over all the measured traits and the variance components within population were generally higher than that among populations in the most measured needle traits. Population heritabilities in all measured traits were higher than 0.7 in common garden sampling among populations. Needle traits were more significantly correlated with longitude than other factors. First five principal components accounted for 81.6% of the variation with eigenvalues greater than 1; the differences among populations were mainly dependent on needle width, stomatal density, section areas of vascular bundle, total resin canals, and mesophyll, as well as area ratio traits. Ten populations were divided into two categories by Euclidean distance. Variations in needle traits among the populations have shown systematic microevolution in terms of geographic impact on P. tabuliformis. This study would provide empirical data to characterize adaptation and genetic variation of P. tabuliformis, which should be more available for ecological studies.
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