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首页> 外文期刊>The Journal of Heredity >Genetic diversity and stress of Ricotia lunaria in 'Evolution Canyon,' Israel.
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Genetic diversity and stress of Ricotia lunaria in 'Evolution Canyon,' Israel.

机译:以色列“进化峡谷”中金龟子的遗传多样性和胁迫。

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We examined the genetic diversity and divergence of Ricotia lunaria, a family relative species of Arabidopsis thaliana, sampled from 6 stations on 2 opposing slopes, the south-facing slope ("African" or AS) and north-facing slope ("European" or ES), separated on average by 200 m, at "Evolution Canyon," Lower Nahal Oren, Mount Carmel, Israel, along a transect presenting sharply differing microclimates. The density of R. lunaria populations was slope specific: a higher density and smaller plants were observed on the AS. In addition, the density was positively correlated with annual plant cover. The interslope and intraslope genetic diversities of R. lunaria populations were examined using the amplified fragment length polymorphism (AFLP) technique with 5 primer pairs. Ricotia lunaria populations inhabiting the ES and AS differed, and among the 468 scored loci, 304 (65%) were polymorphic (at P >or= 0.05 level). Polymorphism values obtained for AS and ES populations were similar (52% vs. 56%), but different loci were polymorphic in different populations; 40% of polymorphic loci were identical on both the ES and AS, 16% were polymorphic for the ES only, and 12% were polymorphic only for the AS. The AFLP results grouped the analyzed genotypes into 2 distinct clusters: one cluster included the plants belonging to the AS and the other included ES plants. The unbiased estimate of Nei genetic distances (D) indicated significantly higher interslope (D = 0.124 +/- 0.011) than intraslope (D = 0.076 +/- 0.015) differences (P < 0.001 in t-test). Correspondingly, mean intraslope gene flow was significantly higher than the interslope gene flow (2.9 +/- 0.6 vs. 1.9 +/- 0.2). Natural selection appears to adaptively diverge the plant ecotypes on the opposite slope, both phenotypically and genotypically. This includes significant divergence in flowering time likely to initiate incipient sympatric speciation.
机译:我们检查了Riccotia lunaria(拟南芥的家庭亲缘物种)的遗传多样性和多样性,该物种从2个相对的斜坡(朝南的斜坡(“非洲”或“ AS”)和朝北的斜坡(“ European”或“ ES),沿着呈现出明显不同的微气候的样带,在以色列的卡梅尔山下纳哈勒奥伦的“进化峡谷”平均间隔200 m。月球菌种群的密度是特定于斜坡的:在AS上观察到较高的密度和较小的植物。此外,密度与植物年覆盖量呈正相关。使用扩增的片段长度多态性(AFLP)技术和5对引物,对R. lunaria种群的坡间和坡内遗传多样性进行了研究。居住在ES和AS上的金龟子种群有所不同,在468个得分位点中,有304个(65%)是多态性的(P≥0.05)。 AS和ES群体获得的多态性值相似(52%对56%),但是不同的基因座在不同群体中具有多态性。 ES和AS上40%的多态性基因座相同,仅ES的16%是多态性的,仅AS的12%是多态性的。 AFLP结果将分析的基因型分为2个不同的簇:一个簇包括属于AS的植物,另一个簇包括ES植物。 Nei遗传距离(D)的无偏估计表明,坡间差异(D = 0.124 +/- 0.011)明显高于坡内差异(D = 0.076 +/- 0.015)(t检验中P <0.001)。相应地,平均斜坡内基因流量明显高于斜坡间基因流量(2.9 +/- 0.6对1.9 +/- 0.2)。自然选择似乎在表型和基因型上对立的坡度上适应性地使植物生态型多样化。这包括开花时间的显着差异,可能导致初期同胞物种形成。

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