Seribiotech Research Laboratory, CSB-Kodathi-Campus, Bangalore, Karnataka, India.
J Appl Genet. 2011 Aug;52(3):345-53. doi: 10.1007/s13353-011-0044-2. Epub 2011 May 11.
Genetic structure of populations is under constant pressure from varying geographical conditions that induce phenotypic plasticity in insects. Spatial distribution of 15 populations of Indian eri silkworm, Samia cynthia ricini originated at various altitudes of sub Himalayas based on Euclidean distance realized from yield attributes showed two population clusters irrespective of their place of origin and altitude. However, DNA amplification profile by inter SSR (ISSR) markers showed genetic variations among the populations depend on low and high altitudes. One ISSR locus each specific to high and low altitude population was identified. The locus from high altitude showed deviation from Hardy-Weinberg equilibrium but that from low altitude was in neutrality suggests that the high altitude loci could be under pressure from the altitudinal variations. In association with different yield traits, 18 loci were identified. Of which, three markers showed association with more than one trait indicative of pleiotropic influence. Stepwise addition of markers enhanced the correlation between markers and the associated trait pointed to polygenic influence. Association of markers with altitude and yield traits suggests an imperative relation of rare genetic loci with gene-environment interaction and phenotypic variability in S. c. ricini.
种群的遗传结构不断受到地理条件变化的压力,这些地理条件会诱导昆虫表现出表型可塑性。基于从产量属性得出的欧几里得距离,对源自喜马拉雅山脉不同海拔高度的 15 个印度野蚕种群进行了空间分布分析,结果表明,无论其起源地和海拔高度如何,都存在两个种群聚类。然而,通过内部简单重复序列(ISSR)标记进行的 DNA 扩增图谱显示,种群之间存在遗传变异,这取决于海拔的高低。确定了一个特定于高海拔和低海拔种群的每个 ISSR 基因座。高海拔的基因座偏离了哈迪-温伯格平衡,但低海拔的基因座处于中性状态,这表明高海拔基因座可能受到海拔变化的压力。与不同的产量性状相关联,鉴定出了 18 个基因座。其中,有三个标记与一个以上的性状相关联,表明存在多效性影响。逐步添加标记增强了标记与相关性状之间的相关性,表明存在多基因影响。标记与海拔和产量性状的关联表明,稀有遗传基因座与基因-环境相互作用和 S. c. ricini 的表型变异性之间存在必然关系。