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Polygenic variation following irradiation in inter-specific crosses of cotton

Jawaid Ahmed Siddiqui

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Abstract

The possibility of widening the spectrum of recombination through F/sub 1/ seed irradiation was studied. F/sub 1/ seeds of the crosses between Gossypium arboreum and G. herbaceum and between G. hirsutum and G. barbadense were exposed to an acute dose of /sup 60/Co gamma rays. A comparative assessment was made of the variability occurring in thc regular F/sub 2/ progenies and in the progenies derived from irradiated F/sub 1/ plants. The range of the distribution of plot means was invariably wider in the treated population for almost all the characters in comparison to their respective controls. The analysis of variance showed higher values for all the characters in the treated populations as compared to control. However, the precise effect of radiation in inducing variability varied from character to character. Data on the coefficient of genetic variability showed in general increased values in the irradiated diploid and tetraploid crosses, but the magnitude of variability was considerably higher in the former than in the latter. Scope for selection thus exists. The increased variability has mainiy been attributed to micro-mutations. However, the occurrence of rare types of segregants for several important characters supports the possible role played by recombinations at meiotic and somaticmore » levels. (auth)« less

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The possibility of widening the spectrum of recombination through F/sub 1/ seed irradiation was studied. F/sub 1/ seeds of the crosses between Gossypium arboreum and G. herbaceum and between G. hirsutum and G. barbadense were exposed to an acute dose of /sup 60/Co gamma rays. A comparative assessment was made of the variability occurring in thc regular F/sub 2/ progenies and in the progenies derived from irradiated F/sub 1/ plants. The range of the distribution of plot means was invariably wider in the treated population for almost all the characters in comparison to their respective controls. The analysis of variance showed higher values for all the characters in the treated populations as compared to control. However, the precise effect of radiation in inducing variability varied from character to character. Data on the coefficient of genetic variability showed in general increased values in the irradiated diploid and tetraploid crosses, but the magnitude of variability was considerably higher in the former than in the latter. Scope for selection thus exists. The increased variability has mainiy been attributed to micro-mutations. However, the occurrence of rare types of segregants for several important characters supports the possible role played by recombinations at meiotic and somaticmore » levels. (auth)« less

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Available abstract

The possibility of widening the spectrum of recombination through F/sub 1/ seed irradiation was studied. F/sub 1/ seeds of the crosses between Gossypium arboreum and G. herbaceum and between G. hirsutum and G. barbadense were exposed to an acute dose of /sup 60/Co gamma rays. A comparative assessment was made of the variability occurring in thc regular F/sub 2/ progenies and in the progenies derived from irradiated F/sub 1/ plants. The range of the distribution of plot means was invariably wider in the treated population for almost all the characters in comparison to their respective controls. The analysis of variance showed higher values for all the characters in the treated populations as compared to control. However, the precise effect of radiation in inducing variability varied from character to character. Data on the coefficient of genetic variability showed in general increased values in the irradiated diploid and tetraploid crosses, but the magnitude of variability was considerably higher in the former than in the latter. Scope for selection thus exists. The increased variability has mainiy been attributed to micro-mutations. However, the occurrence of rare types of segregants for several important characters supports the possible role played by recombinations at meiotic and somaticmore » levels. (auth)« less

Key concepts: Biology, Genetic variability, Irradiation, Horticulture, Population, Gossypium, Genetic variation, Veterinary medicine

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