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- W2017671574 abstract "HereditasVolume 56, Issue 2-3 p. 255-276 Open Access YIELD AND VARIABILITY OF CHLOROPHYLL-MUTANT HETEROZYGOTES IN BARLEY HANS DOLL, HANS DOLL AGRICULTURAL RESEARCH DEPARTMENT, DANISH ATOMIC ENERGY COMMISSION, RESEARCH ESTARLISHMENT RISØ, ROSKILDE, DENMARK DEPARTMENT OF GENETICS, ROYAL VETERINARY AND AGRICULTURAL COLLEGE, COPENHAGEN, DENMARKSearch for more papers by this author HANS DOLL, HANS DOLL AGRICULTURAL RESEARCH DEPARTMENT, DANISH ATOMIC ENERGY COMMISSION, RESEARCH ESTARLISHMENT RISØ, ROSKILDE, DENMARK DEPARTMENT OF GENETICS, ROYAL VETERINARY AND AGRICULTURAL COLLEGE, COPENHAGEN, DENMARKSearch for more papers by this author First published: December 1966 https://doi.org/10.1111/j.1601-5223.1966.tb02080.xCitations: 2AboutPDF ToolsExport citationAdd to favoritesTrack citation ShareShare Give accessShare full text accessShare full-text accessPlease review our Terms and Conditions of Use and check box below to share full-text version of article.I have read and accept the Wiley Online Library Terms and Conditions of UseShareable LinkUse the link below to share a full-text version of this article with your friends and colleagues. Learn more.Copy URL Share a linkShare onFacebookTwitterLinkedInRedditWechat Literature cited Allard, R. W. and Workman, P. L. 1963. Population studies in predominantly self-pollinated species. IV. Seasonal fluctuations in estimated values of genetic parameters in lima bean populations. - Evolution 17: 470– 480. Dobzhansky, Th. and Levene, H. 1955. Genetics of natural populations. XXIV. Developmental homeostasis in natural populations of Drosophila pseudoobscura. - Genetics 40: 797– 808. Falk, R. Rahat, A. and Ben-Zeev, N. 1965. Viability of heterozygotes for induced mutations in Drosophila melanogaster. I. Irradiated X-chromosome. - Mutat. Res. 2: 438– 451. Frydenberg, O. and SandfÆr, J. 1964. The vitality, productivity and radiosensitivity of recurrently irradiated barley populations. - FAO/IAEA Tech. Meet. Use Induced Mutat. Plant Breed., Rome, 25 May-1 June, 1964. Griffing, B. and Langridge, J. 1963. Phenotypic stability of growth in the self-fertilized species. Arabidopsis thaliana. - Statistical Genetics and Plant Breeding. Nat. Acad. Sci. Nat. Res. Council, Washington , D.C. , Publ. 982: 368– 394. Gustafsson, Å. 1940. The mutation system of the chlorophyll apparatus. - Lunds Univ. Årsskr. N.F. Avd. 2. 36: 1– 40. Gustafsson, Å. 1946. The effect of heterozygosity on variability and vigour. - Hereditas 32: 263– 286. Gustafsson, Å. 1947. The advantageous effect of deleterious mutations. - Hereditas 33: 573– 575. Gustafsson, Å. 1952. Mutations, environment and evolution. - Cold Spring Harbor Symp. Quant. Biol. 16: 263– 281. Gustafsson, Å. 1953. The cooperation of genotypes in barley. - Hereditas 39: 1– 18. Gustafsson, Å., Nybom, N. and von Wettstein, U. 1950. Chlorophyll factors and heterosis in barley. - Hereditas 36: 383– 392. Hagberg, A. 1953. Heterozygosity in erectoides mutations in barley. - Hereditas 39: 161– 178. Hald, A. 1952a. Statistical Theory with Engineering Applications. - John Wiley and Sons, N.Y. . Hald, A. 1952b. Statistical Tables and Formulas. - John Wiley and Sons, N.Y. . Hiraizumi, Y. and Crow, J. F. 1960. Heterozygous effects on viability, fertility, rate of development, and longevity of Drosophila chromosomes that are lethal when homozygous. - Genetics 45: 1071– 1083. James, A. P. 1960. The spectrum of severity of mutant effects. II. Heterozygous effects in yeast. - Genetics 45: 1627– 1648. Karper, R. E. 1930. The effect of a single gene upon development in the heterozygote in sorghum. - J. Heredity 21: 187– 192. Lerner, I. M. 1954. Genetic Homeostasis. Oliver and Boyd, London . Mangelsdorf, P. C. 1928. The effects of a lethal on the heterozygote in maize. - J. Heredity 19: 123– 131. Müntzing, A. 1945. On the causes of inbreeding degeneration. - Arch. J. Klaus Stift. (Ergänzungsb.) 20: 153– 163. Nilsson, E. 1963. Two chlorophyll mutants in tomato. - Hereditas 49: 345– 352. Robertson, D. W. 1932. The effect of a lethal in the heterozygous condition on barley development. - Colorado Agric. Exp. St. Techn. Bull. 1. Robertson, D. W. and Austin, W. W. 1935. The effect of one and of two seedling lethals in the heterozygous condition on barley development. - J. Agric. Res. 51: 435– 440. Shank, D. B. and Adams, M. W. 1960. Environmental variability within inbred lines and single crosses of maize. - J. Genet. 57: 119– 126. Stern, C., Carson, G., Kinst, M., Novitski, E. and Uphoff, D. 1952. The viability of heterozygotes for lethals. - Genetics 37: 413– 449. Stubbe, H. 1953. Über mono- und digen bedingte heterosis bei Antirrhinum majus L. - Z. Ind. Abst. Vererbgslehre 85: 450– 478. Stubbe, H. and Pirschle, K. 1940. Über einen monogen bedingten Fall von Heterosis bei Antirrhinum majus. - Ber. Deutsch. Bot. Ges. 58: 546– 558. Wallace, B. 1958. The average effect of radiation-induced mutations on viability in Drosophila melanogaster. - Evolution 12: 532– 556. Wallace, B. 1965. The viability effects of spontaneous mutations in Drosophila melanogaster. - Am. Natur. 99: 335– 348. Citing Literature Volume56, Issue2-3December 1966Pages 255-276 ReferencesRelatedInformation" @default.
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