首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >POLYMORPHIC SIMPLE SEQUENCE REPEAT REGIONS IN CHLOROPLAST GENOMES - APPLICATIONS TO THE POPULATION GENETICS OF PINES
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POLYMORPHIC SIMPLE SEQUENCE REPEAT REGIONS IN CHLOROPLAST GENOMES - APPLICATIONS TO THE POPULATION GENETICS OF PINES

机译:叶绿体基因组中的多态简单序列重复区-在松树种群遗传学中​​的应用

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Simple sequence repeats (SSRs), consisting of tandemly repeated multiple copies of mono-, di-, tri-, or tetranucleotide motifs, are ubiquitous in eukaryotic genomes and are frequently used as genetic markers, taking advantage of their length polymorphism, We have examined the polymorphism of such sequences in the chloroplast genomes of plants, by using a PCR-based assay, GenBank searches identified the presence of several (dA)(n) .(dT)(n) mononucleotide stretches in chloroplast genomes, A chloroplast (cp) SSR was identified in three pine species (Pinus contorta, Pinus sylvestris, and Finns thunbergii) 312 bp upstream of the psbA gene, DNA amplification of this repeated region from 11 pine species identified nine length variants, The polymorphic amplified fragments were isolated and the DNA sequence was determined, confirming that the length polymorphism was caused by variation in the length of the repeated region, In the pines, the chloroplast genome is transmitted through pollen and this PCR assay may be used to monitor gene flow in this genus. Analysis of 305 individuals from seven populations of Pinus leucodermis Ant. revealed the presence of four variants with intrapopulational diversities ranging from 0.000 to 0.629 and an average of 0.320. Restriction fragment length polymorphism analysis of cpDNA on the same populations previously failed to detect any variation, Population subdivision based on cpSSR was higher (G(st) = 0.22, where G(st) is coefficient of gene differentiation) than that revealed in a previous isozyme study (G(st) = 0.05) We anticipate that SSR loci within the chloroplast genome should provide a highly informative assay for the analysis of the genetic structure of plant populations. [References: 38]
机译:由单核苷酸,双核苷酸,三核苷酸或四核苷酸基序串联重复的多个拷贝组成的简单序列重复(SSR)在真核基因组中无处不在,并且由于其长度多态性而经常被用作遗传标记,我们已经研究了GenBank搜索发现植物叶绿体基因组中此类序列的多态性,GenBank搜索确定了叶绿体基因组中存在几个(dA)(n)。(dT)(n)单核苷酸序列,叶绿体(cp )在psbA基因上游312 bp的3个松树物种中(Sinus contorta,樟子松和Finns thunbergii)鉴定出SSR,从11个松树物种的该重复区域进行DNA扩增,鉴定出9个长度变异体,分离出多态性扩增片段,确定了DNA序列,确认了长度多态性是由重复区域长度的变化引起的。在松树中,叶绿体基因组通过花粉和花粉传递。他的PCR分析可用于监测该属的基因流。分析了七个松松种群的305个个体。揭示存在四种变异,种群内多样性范围为0.000至0.629,平均变异度为0.320。以前对相同人群进行的cpDNA限制性片段长度多态性分析未能检测到任何变异,基于cpSSR的人群细分更高(G(st)= 0.22,其中G(st)是基因分化系数)比以前的揭示的要高。同工酶研究(G(st)= 0.05)我们预期叶绿体基因组内的SSR基因座应为植物种群的遗传结构分析提供高信息量的分析方法。 [参考:38]

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