Could you provide an example of a species changing it's species, so to speak?
Of course. :)
Bullini, L and Nascetti, G, 1991, Speciation by Hybridization in phasmids and other insects, Canadian Journal of Zoology, Volume 68(8), pages 1747-1760.
Ramadevon, S and Deaken, M.A.B., 1991, The Gibbons speciation mechanism, Journal of Theoretical Biology, Volume 145(4) pages 447-456.
Sharman, G.B., Close, R.L, Maynes, G.M., 1991, Chromosome evolution, phylogeny, and speciation of rock wallabies, Australian Journal of Zoology, Volume 37(2-4), pages 351-363.
Werth, C. R., and Windham, M.D., 1991, A model for divergent, allopatric, speciation of polyploid pteridophytes resulting from silencing of duplicate- gene expression, AM-Natural, Volume 137(4):515-526.
Spooner, D.M., Sytsma, K.J., Smith, J., A Molecular reexamination of diploid hybrid speciation of Solanum raphanifolium, Evolution, Volume 45, Number 3, pages 757-764.
Arnold, M.L., Buckner, C.M., Robinson, J.J., 1991, Pollen-mediated introgression and hybrid speciation in Louisiana Irises, P-NAS-US, Volume 88, Number 4, pages 1398-1402.
Nevo, E., 1991, Evolutionary Theory and process of active speciation and adaptive radiation in subterranean mole rats, spalax-ehrenbergi superspecies, in Israel, Evolutionary Biology, Volume 25, pages 1-125.
Weiberg, James R.. Starczak, Victoria R.. Jorg, Daniele. Evidence for rapid speciation following a founder event in the laboratory. Evolution. V46. P1214(7) August, 1992.
Kluger, Jeffrey. Go fish. (rapid fish speciation in African lakes). Discover. V13. P18(1) March, 1992.
Hauffe, Heidi C.. Searle, Jeremy B.. A disappearing speciation event? (response to J.A. Coyne, Nature, vol. 355, p. 511, 1992). Nature. V357. P26(1) May 7, 1992. Abstract:
Analysis of contact between two chromosomal races of house mice in northern Italy show that natural selection will produce alleles that bar interracial matings if the resulting offspring are unfit hybrids. This is an important exception to the general rule that intermixing races will not tend to become separate species because the constant sharing of genes minimizes the genetic diversity requisite for speciation.
Barrowclough, George F.. Speciation and Geographic Variation in Black-tailed Gnatcatchers. (book reviews) The Condor. V94. P555(2) May, 1992.
Rabe, Eric W.. Haufler, Christopher H.. Incipient polyploid speciation in the maidenhair fern (Adiantum pedatum; Adiantaceae)? The American Journal of Botany. V79. P701(7) June, 1992.
Nores, Manuel. Bird speciation in subtropical South America in relation to forest expansion and retraction. The Auk. V109. P346(12) April, 1992. Abstract:
The climatic and geographic history of the Pleistocene and Holocene periods modified the distribution of the bird population in the South American forests. Forest birds are found dispersed in the Yungas and Paranese areas with only minimal infiltration of the Chaco woodland, indicating an atmospheric change during the interglacial periods. In the Chaco lowlands, the interactions between non-forest birds reveal the existence of presence of a forest belt along the Bermejo and Pilcomayo rivers.
Kondrashov, Alexey S.. Jablonka, Eva. Lamb, Marion J.. Species and speciation. (response to J.A. Coyne, Nature, vol. 355, p. 511, 1992). Nature. V356. P752(1) April 30, 1992. Abstract:
J.A. Coyne wrongly asserted that neodarwinism includes allopatric evolution but not sympatric evolution. Allopatric evolution occurs among geographically isolated populations, whereas sympatric evolution occurs within one species' entire population. Both are neodarwinian since each results from natural selection of genetic variation. Also, Coyne failed to recognize that the molecular models used to illustrate how genetic changes bring on speciation are most useful when researchers acknowledge that both inherited epigenetic and genetic changes affect speciation.
Spooner, David M.. Sytsma, Kenneth J.. Smith, James F.. A molecular reexamination of diploid hybrid speciation of Solanum raphanifolium. Evolution. V45. P757(8) May, 1991.
Orr, H. Allen. Is single-gene speciation possible?. Evolution. V45. P764(6) May, 1991.
Miller, Julie Ann. Pathogens and speciation. (Research Update). BioScience. V40. P714(1) Nov, 1990.
Barton, N.H. Hewitt, G.M. Adaptation, speciation and hybrid zones; many species are divided into a mosaic of genetically distinct populations, separated by narrow zones of hybridization. Studies of hybrid zones allow us to quantify the genetic differences responsible for speciation, to measure the diffusion of genes between diverging taxa, and to understand the spread of alternative adaptations. (includes related information) Nature. V341. P497(7) Oct 12, 1989.
Wright, Karen. A breed apart; finicky flies lend credence to a theory of speciation. Scientific American. V260. P22(2) Feb, 1989.
Coyne, Jerry A. Orr, H. Allen. Patterns of speciation in Drosophila. Evolution. V43. P362(20) March, 1989.
Feder, Jeffrey L. Bush, Guy L. A field test of differential host-plant usage between two sibling species of Rhagoletis pomonella fruit flies (Diptera: Tephritidae) and its consequences for sympatric models of speciation. Evolution. V43. P1813(7) Dec, 1989.
Soltis, Douglas E. Soltis, Pamela S. Allopolyploid speciation in Tragopogon: insights from chloroplast DNA. The American Journal of Botany. V76. P1119(6) August, 1989.
Coyne, J.A. Barton, N.H. What do we know about speciation?. Nature. V331. P485(2) Feb 11, 1988.
Barton, N.H. Jones, J.S. Mallet, J. No barriers to speciation. (morphological evolution). Nature. V336. P13(2) Nov 3, 1988.
Kaneshiro, Kenneth Y. Speciation in the Hawaiian drosophila: sexual selection appears to play an important role. BioScience. V38. P258(6) April, 1988. |