Department of Plant Genetics, Moldavian Academy of Sciences, Kishinev, USSR.
Theor Appl Genet. 1983 Jan;64(2):177-85. doi: 10.1007/BF00272731.
Some consequences of the effect of environmental factors on the recombination system are dealt with in this paper. There are two components involved - the system of individual adaptation (F-system) and the genetic system of population adaptation (R-system). Their interaction offers an optimum interrelation of immediate adaptivity and genetic flexibility within the population. Familiar data on the evolution of recombination control systems are considered in connection with the problems of induced broadening of genotypic variation spectrum with a view to selection.A notion of combined recombination rate and spectrum control is introduced here: disturbance control-due to direct influence of environmental factors on R-system (including meiotic processes), negative feedback control - due to dominance-recessiveness relationship between rec-loci alleles of the "fine" control system, and to the dependence of the R-system on the F-system norms of reaction to environment variation. The problem of dependence of the recombination spectrum on environmental factors has been considered and the hypothesis of a possible mechanism of such a dependence suggested.
本文探讨了环境因素对重组系统影响的一些后果。涉及两个组成部分——个体适应系统(F 系统)和种群适应的遗传系统(R 系统)。它们的相互作用提供了种群内即时适应和遗传灵活性的最佳关系。本文考虑了与诱导遗传变异谱拓宽相关的重组控制系统进化的相关数据,以期进行选择。这里引入了一个综合重组率和谱控制的概念:由于环境因素对 R 系统(包括减数分裂过程)的直接影响导致的干扰控制、由于“精细”控制系统的 rec 基因座等位基因的显性-隐性关系以及 R 系统对 F 系统对环境变化的反应规范的依赖导致的负反馈控制。本文还考虑了重组谱对环境因素的依赖性问题,并提出了这种依赖性的可能机制假说。