Genome. 1996 Oct;39(5):846-53. doi: 10.1139/g96-107.
An analysis of the effect of changing physiological conditions on genome evolution in tomato cell populations has been carried out on long-term in vitro cultured clones grown on different auxin-cytokinin equilibria or selected for low-high competence for active defense against Fusarium oxysporum f.sp. lycopersici. RAPD analysis, confirmed through pattern rehybridization, was used as a random tool to measure the genetic variability. Through the use of a modified ANOVA, variation was shown to depend on both the initial genotype and the physiological conditions. Pattern correlation analysis through a mutual information algorithm suggested the fixation of RAPD patterns specific to physiological equilibria. The results are discussed in view of the possible relevance for evolution at hierarchical levels higher than cell populations. Key words : tomato clones, somaclonal variation, RAPD, coadaptation.
对长期体外培养的番茄细胞群体进行了生理条件变化对基因组进化影响的分析,这些细胞群体在不同的生长素-细胞分裂素平衡或对活性防御尖孢镰刀菌番茄专化型有高低不同的适应能力方面进行了选择。RAPD 分析(通过图谱再杂交得到证实)被用作随机工具来衡量遗传变异性。通过使用改进的方差分析,表明变异既取决于初始基因型,也取决于生理条件。通过互信息算法的图谱相关性分析表明,RAPD 图谱与生理平衡的特异性固定。这些结果从可能与高于细胞群体层次的进化相关的角度进行了讨论。关键词:番茄克隆体,体细胞变异,RAPD,协同适应。