Inheritance of Acquired Characters
Assimilation, Conditioning, Imprinting, Epigenetics and Canalization
- Amzallag, G.N. (1994) Influence of parental NaCl treatment on
salinity tolerance of offspring in Sorghum bicolor (L.)
Moench. New Phytologist, 128(4): 715-723.
- Amzallag, G.N. (1996) Transmissible reproductive changes following
physiological adaptation to salinity in Sorghum bicolor. New Phytologist, 132(2):
317-325.
- Amzallag,
G.N. (2000) Maternal transmission of adaptive
modifications in salt-treated Sorghum bicolor: A first stage in ecotypic
differentiation? New Phytologist,
146(3): 483-492.
- Amzallag, G.N. (2000) Canalization as a non-genetic source of
adaptiveness during morphogenesis: experimental evidence from analysis of
reproductive development in Sorghum bicolor. Biosystems 57(2):
95-107.
- Amzallag, G.N. (2000) Connectance in Sorghum development: beyond
the genotype-phenotype duality. Biosystems. 56 (1): 1-11.
- Amzallag,
G.N. 2004. Adaptive changes in bacteria: a
consequence of nonlinear transitions in chromosome topology? J Theor Biol. 229 (3): 361-9.
- Amzallag,
G.N. (2005) Perturbed reproductive development in
salt-treated Sorghum bicolor: a
consequence of modifications in regulation networks? Journal of Experimental
Botany. 56(421):2821-2829.
- Amzallag, G.N., O. Larkov, Hur M. Ben, N. Dudai. (2005) Soil
microvariations as a source of variability in the wild: the case of secondary
metabolism in Origanum dayi post. J Chem Ecol. 31(6):
1235-54.
- Amzallag, G.N., H. Seligmann and H. R. Lerner (1995) Induced
variability during the process of adaptation in Sorghum bicolor.
- Bennet, M.D. (1972) Nuclear DNA Content and Minimum Generation Time in Herbaceous Plants. Proc. Roy. Soc. Lond., B, 181(1063): 109-135.
- Bussey, H and M.A. Fieldes (1974) A model for stably inherited environmentally induced changes in plants. Nature 251: 708-710.
- Carboni, E. et al. In vitro selection of Actinidia deliciosa clones tolerant to NaCl and their molecular and in vivo ecophysiological characterization. Acta Hort. (ISHS) 618:77-83.
- Chen, Y., R.G. Schneeberger and C.A. Cullis, (2005) A site-specific insertion sequence in flax genotrophs induced by environment. New Phytol. 167: 171–180.
- Charest, C. and C. Potvin (1993) Maternally-induced modification of progeny phenotypes in the C4 weed Echinochloa crus-galli: An analysis of seed constituents and performance. Oecologia 93(3): 383-388.
- Cullis, C.A. (1973) DNA Differences between Flax Genotrophs. Nature 243:
515-516.
- Cullis, C.A. (1986) Phenotypic consequences of
environmentally induced changes in plant DNA. Trends in Genetics, 2: 307-309.
- Cullis,
C.A. (1987) The Generation of Somatic and Heritable Variation in Response to
Stress. The American Naturalist, Vol. 130, Supplement: Plant Molecular
Evolution (Jul., 1987), pp. S62-S73.
- Cullis,
C.A. (1999) The Environment as an Active Generator of
Adaptive Genomic Variation. In "Plant Adaptations to Stress Environments"
ed. H.R. Lerner. Marcel Dekker, New York pp 149-160.
- Cullis, C.A. (2005) Mechanisms
and Control of Rapid Genomic Changes in Flax. Annals of Botany 95(1): 201-206.
- Dendy: Environmentally induced variation in beetles (1918)
- Dole, J., H. Wilkins (1988) A Graft-Transmissible Factor in Euphorbia pulcherrima causing permanent changes in branching and other morphological characteristics. Acta Horticulturae (ISHS) 226:283-292
- Durrant,
A. (1958) Environmental Conditioning of Flax. Nature 181: 928-929.
- Durrant, A. (1962) The environmental induction
of heritable change in Linum. Heredity, 17: 27-61.
- Durrant,
A. (1962) Induction, Reversion and Epitrophism of
Flax Genotrophs. Nature 196: 1302-1304.
- Durrant, A. (1971) Induction and growth of flax
genotrophs. Heredity, 27: 277-298.
- Durrant, A. and O.I. Joarder, (1978) Regulation of hairless septa in flax genotrophs. Genetica, 48(3): 171-183.
- Durrant, A. and T.W.A. Jones, (1972)
Reversion of induced changes in amount of nuclear DNA in Linum. Heredity 27: 1-431.
- Durrant, A. and D.B. Nicholas, (1970) An unstable gene in flax. Heredity 25:513-527.
- Durrant,
A. and H. Tyson, (1960) Conditioned Lines of Flax. Nature 185:
60.
- Durrant, A., H. Rees, C.A. Cullis. (1981) Unstable
Genotypes [and Discussion]. Phil. Trans. R. Soc. Lond. B 292: 467-474.
- Dworkin, I. (2005) Towards a genetic architecture of cryptic genetic variation and
genetic assimilation. Journal of Genetics 84: 223-226.
- Eglington, E. G., and Moore, C A. 1973. The nature of the inheritance of permanently induced changes in Nicotiana rustica. II. Analysis of segregation in the F4 and F5 generations or selected crosses. Heredity, 31:387-395.
- Evans, G M. (1968) Nuclear changes in flax. Heredity, 23: 25-38.
- Evans, G.M., D.A. Durrant and H. Rees,
(1966) Associated Nuclear Changes in the Induction of
Flax Genotrophs. Nature, 212: 697-699.
- Flatt, T. (2005) The Evolutionary Genetics of Canalization.
The Quarterly Review of Biology, 80: 287–316.
- Henikoff, S. (2005) Rapid Changes in Plant Genomes. The Plant Cell 17: 2852-2855.
- Henslow, G. (1904-5) The Heredity of Acquired Characters in Plants. Journal of the Royal Horticultural Society. 29: 77-81.
- Highkin, H.R., (1958) Temperature-Induced Variability in Peas. American Journal of Botany 45: 626-631.
- Hill,
J. (1965) Environmental Induction of Heritable Changes in Nicotiana rustica.
Nature 207: 732-734.
- Hill,
J. (1967) The Environmental Induction of Heritable Changes in Nicotiana
rustica Parental and Selection Lines. Genetics. 55(4): 735-754.
- Hill, J. and J.M. Perkins. (1969) The
Environmental Induction of Heritable Changes in Nicotiana rustica. Effects of
Genotype-Environment Interactions. Genetics. 61(3): 661-675.
- Jablonka, E. and G. Raz (2009) Transgenerational Epigenetic Inheritance: Prevalence, Mechanisms, and Implications for the Study of Heredity and Evolution. Quarterly Review of Biology, 84(2): 131-176.
- Masel, J. (2004) Genetic assimilation can occur in the absence of selection for the assimilating phenotype, suggesting a role for the canalization heuristic. J Evol Biol. 17(5):1106-10.
- Mazer, S.J. and D.L. Gorchov. (1996) Parental Effects on Progeny Phenotype in Plants: Distinguishing Genetic and Environmental Causes. Evolution, 50(1): 44-53.
- Mikula, B.C. (1992) Is paramutation coupled to developmental processes which determine tassel induction? Maize Newsletter 66:43.
- Mikula, B.C. (1992) Paramutation: a system for temperature programmable transgenerational genetic change coupled to tassel determination. Maize Newsletter 66:41-43.
- Miyashita, C, Y. Hirata and N. Takahashi (1999)
Environmentally-induced genetic changes of anthocyanin pigmentation in Mitsuba (Cryptotaenia japonica Hassk).
Eucarpia Leafy Vegetables '99: 287-292
- Moore, C. A. and E. G. Eglington (1973) The nature of the inheritance of permanently induced changes in Nicotiana rustica III: F5 generation for five characters. Heredity 31: 112-118.
- Pavelka, J. and J. Koudelová (2001) Inheritance of a Temperature-Modified Phenotype of the short antennae (sa) Mutation in a Moth, Ephestia kuehniella (Lepidoptera: Pyralidae). Journal of Heredity 92(3): 234-242.
- Perkins,
J.M., E. Eglington and J.C. Jinks (1971) The nature of the inheritance of
permanently induced changes in Nicotiana rustica. Heredity, 27: 441.
- Phillips, M.L. (2006) Plants Inherit Parents' Stress. The Scientist.com.
- Pigliucci, M. (2006). Evolutionary biology: puzzle solving or paradigm shifting? Quarterly Review of Biology 81(4): 377-379.
- Pigliucci, M. and C.J. Murren (2003). Genetic assimilation as a possible evolutionary paradox: can macroevolution sometimes be so fast as to pass us by? Evolution 57: 1455-1464.
- Pigliucci, M., C.J. Murren, C.D. Schlichting (2006) Phenotypic plasticity and evolution by genetic assimilation. Journal of Experimental Biology 209: 2362-2367.
- Potvin, C. and C. Charest (1991) Maternal Effects of Temperature on Metabolism in the C4 Weed Echinochloa Crus-Galli.
Ecology 72(6): 1973-1979.
- Proulx, S.R. and P.C. Phillips, (2005) The Opportunity for Canalization and the Evolution of Genetic Networks. The American Naturalist, 165: 147–162.
- Rivin, C. (1984) Quantitative genomic change in maize. Maize Newsletter 58:190-191.
- Rivin, C and C.A. Cullis (1983) Copy number variation of repeated DNA in inbred lines of maize. Maize Newsletter 57:138.
- Roemer, I., W. Reik, W. Dean and J. Klose (1997) Epigenetic inheritance in the mouse. Current Biology 7(4): 1-4.
- Rossiter,
M.C. (1996) Incidence and Consequences of Inherited
Environmental Effects. Annual Review of Ecology and Systematics. 27: 451-476.
- Schneeberger, R.G. and C.A. Cullis, (1991) Specific DNA
Alterations Associated With the Environmental Induction of Heritable Changes in
Flax. Genetics, 128(3):
619-630.
- Segal, M.L. and Aviv Bergman. (2002) Waddington’s canalization revisited: Developmental stability and evolution. PNAS Early Edition.
- Seligmann, H. and G.N. Amzallag. (1995) Adaptive determinism during
salt-adaptation in Sorghum bicolor. Biosystems. 36(1):
71-7.
- Sha, K. and A. Fire (2005) Imprinting capacity of gamete lineages in Caenorhabditis elegans. Genetics. 170(4):1633-52.
- Stearns, S.C. (2002) Progress on canalization. PNAS. 99(16): 10229-10230.
- Suzuki, Y. (2006) The evolution of a polyphenism by genetic accommodation. Duke University dissertation.
- Suzuki, Y, Nijhout, HF (2006) Evolution of a polyphenism by genetic accommodation. Science 311(5761): 650-652.
- Timmis, J.N. and J. Ingle (1973) Environmentally
induced changes in RNA gene redundancy. Nature, New Biol. 244: 235-236.
- Waddington, C.H. (1952) Genetic Assimilation of an Acquired Character. Evolution 7: 118-126.
- Waddington, C.H. (1953) The Evolution of Adaptations. Endeavour 134-139.
- Waddington, C.H. (1953) Experiments in Acquired Characteristics. Scientific American 189(6): 92f.
- Wagner, G. and G. Gibson. (2000) Canalization in evolutionary genetics: a stabilizing theory? BioEssays 22(4): 372-380.
- Walbot, V, and C.A. Cullis (1983) The plasticity of the plant genome—is it a requirement for success? Plant Mol Biol Rep 1(4):3-11.
- Walbot, V. and C.A. Cullis (1985) Rapid Genomic
Change in Higher Plants. Annual Review of Plant Physiology. 36: 367-396.
- West-Eberhard, M.J. (2005) Developmental plasticity and the origin of species differences. PNAS 102(Suppl. 1): 6543-6549.
- Wilkins, A.S. (2005) Canalization: A molecular genetic perspective. BioEssays 19(3): 257-262.
- Wilkins, J.F. (2005) Genomic imprinting and methylation: epigenetic canalization and conflict. Trends Genet. 21(6):356-65.
- Zeven, A. C. (1975) A possible contribution of environmentally induced changes to the domestication of plants. Euphytica 24(2): 369-370.
See also Vegetative Selection