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首页> 外文期刊>American Journal of Botany >Allozyme diversity in Pinus virginiana (Pinaceae): intraspecific and interspecific comparisons
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Allozyme diversity in Pinus virginiana (Pinaceae): intraspecific and interspecific comparisons

机译:樟子松(Pinaceae)的同工酶多样性:种内和种间比较

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摘要

Two of the four members of subsection Contortae of the genus Pinus occur in the southeastern United States: Pinus virginiana, which ranges throughout the southern and central Appalachian Mountains, and P. clausa, which is restricted to Florida and southern Alabama. We examined allozyme variation within P. virginiana and genetic relationships between this species and the two varieties of P. clausa (var. clausa and var. immuginata). P. virginiana maintains more genetic diversity at both the species (Hes = 0.139) and population (Hep = 0.128) levels than the other three species in the subsection, which may reflect the combination of its widespread distribution and the absence of cone serotiny. Genetic differentiation among populations in P. virginiana was relatively low (GST = 0.053), but significant contrasts in allozyme frequencies and genetic diversity were apparent between populations to the northwest vs. outheast of the Appalachian Mountains. These regional differences likely resulted initially from historical processes that occurred during the Pleistocene and early Holocene, and have been reinforced by modern selective pressures and barriers to gene flow. The mean genetic distance between populations of P. virginiana and P. clausa (D = 0.071) was greater than that between populations of the two varieties of P. clausa (D = 0.012), which suggests that the two varieties diverged at some point after the separation of the two species.
机译:Pinus属的Contortae子节的四个成员中的两个出现在美国东南部的 :弗吉尼亚州的松属,分布在南部和中部的阿巴拉契亚山脉以及P. clausa , 仅限于佛罗里达州和阿拉巴马州南部。我们研究了弗吉尼亚假单胞菌内的同工酶变异 以及该物种与克劳萨氏菌的两个品种(克劳萨氏菌和免疫球菌变种)之间的遗传关系。在 物种中,维吉尼亚对虾(Hes = 0.139)和 种群(Hep = 0.128)的遗传多样性高于其他三个物种。 sup>小节,这可能反映了其广泛的 分布和不存在圆锥体的特征。弗吉尼亚对虾种群之间的遗传分化 相对较低(GST = 0.053),但 的同工酶频率和遗传多样性之间的显着差异 人口与 阿巴拉契亚山脉的西北部和东南部。这些区域差异可能最初是由更新世和全新世早期发生的历史过程造成的,并由于现代的选择压力和对世俗的障碍而得到加强。基因流。弗吉尼亚假单胞菌和克劳斯假单胞菌种群之间的平均遗传距离(D = 0.071)大于两个物种的克劳斯假单胞菌(D = 0.012),这表明 这两个变种在 两种物种分离后的某个时候发散了。

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