^Beeman, R.W., Friesen, K.S., Denell, R.E. & USDA, A. Maternal-effect selfish genes in flour beetles. Science256, 89-92 (1992).
^Lorenzen, M.D. et al. The maternal-effect, selfish genetic element Medea is associated with a composite Tc1 transposon. Proceedings of the National Academy of Sciences105, 10085-10089 (2008).
^Chen, C. et al. A Synthetic Maternal-Effect Selfish Genetic Element Drives Population Replacement in Drosophila. Science316, 597-600 (2007).
^Wade, M.J. & Beeman, R.W. The population dynamics of maternal-effect selfish genes. Genetics138, 1309 (1994).
^ 6.06.16.26.36.4Burt, A. & Koufopanou, V. Homing endonuclease genes: the rise and fall and rise again of a selfish element. Current Opinion in Genetics & Development14, 609-615 (2004).
^Jones, N. & Houben, A. B chromosomes in plants: escapees from the A chromosome genome? Trends in Plant Science8, 417-423 (2003).
^O'Dea, J.D. Did Conflict Between Chromosomes Drive the Evolution of Sex? Calodema8, 33-34 (2006).
延伸閱讀
Sinkins, S.P. & Gould, F. Gene drive systems for insect disease vectors. Nat Rev Genet7, 427-435 (2006).
Cosmides, L.M. & Tooby, J. Cytoplasmic inheritance and intragenomic conflict. Journal of Theoretical Biology89, 83–129 (1981).
Eberhard, W.G. Evolutionary Consequences of Intracellular Organelle Competition. The Quarterly Review of Biology55, 231-249 (1980).
Hurst, G.D. & Werren, J.H. The role of selfish genetic elements in eukaryotic evolution. Nat. Rev. Genet2, 597-606 (2001).
Jones, R.N. B-Chromosome Drive. The American Naturalist137, 430-442 (1991).
Burt, A. & Trivers, R. Genes in Conflict: The Biology of Selfish Genetic Elements. (Belknap Press of Harvard University Press: 2006).
Dawkins, R. The Selfish Gene. (Oxford University Press, USA: 1990).
Haig, D. (1997) The social gene. In: Krebs, J. R. & Davies, N. B. (eds.) Behavioural Ecology: an Evolutionary Approach. London, Blackwell Publishers. pp. 284-304.