1700250800
第四章 复杂细胞
1700250801
1700250802
1. Cox C. J., et al. The archaebacterial origin of eukaryotes. Proceedings of the National Academy of Sciences USA 105: 20356–61; 2008.
1700250803
1700250804
2. Embley M. T , Martin W. Eukaryotic evolution, changes and challenges. Nature 440: 623–30; 2006.
1700250805
1700250806
1700250807
1700250808
1700250809
3. Javaeux E. J. The early eukaryotic fossil record. In: Origins and Evolution of Eukaryotic Endomembranes and Cytoskeleton (Ed. Gspr Jkely); Landes Bioscience 2006.
1700250810
1700250811
4. Koonin E. V. The origin of introns and their role in eukaryogenesis: a compromise solution to the introns-early versus introns-late debate?Biology Direct 1: 22; 2006.
1700250812
1700250813
1700250814
5. Lane N. Mitochondria: key to complexity. In: Origin of Mitochondria and Hydrogenosomes (Eds Martin W, Mller M); Springer, 2007.
1700250815
1700250816
6. Martin W., Koonin E. V. Introns and the origin of nucleus-cytosol compartmentalisation. Nature 440: 41–5; 2006.
1700250817
1700250818
1700250819
7. Martin W., Mller M. The hydrogen hypothesis for the first eukaryote. Nature 392: 37–41; 1998.
1700250820
1700250821
8. Pisani D, Cotton J. A., McInerney J. O. Supertrees disentangle the chimerical origin of eukaryotic genomes. Molecular Biology and Evolution 24: 1752–60; 2007.
1700250822
1700250823
9. Sagan L. On the origin of mitosing cells. Journal of Theoretical Biology 14: 255–74; 1967.
1700250824
1700250825
10. Simonson A. B., et al. Decoding the genomic tree of life. Proceedings of the National Academy of Sciences USA 102: 6608–13; 2005.
1700250826
1700250827
11. Taft R. J., Pheasant M., Mattick J. S. The relationship between nonproteincoding DNA and eukaryotic complexity. BioEssays 29: 288–99; 2007.
1700250828
1700250829
12. Vellai T., Vida G. The difference between prokaryotic and eukaryotic cells. Proceedings of the Royal Society of London B 266: 1571–7; 1999.
1700250830
1700250831
第五章 性
1700250832
1700250833
1. Burt A. Sex, recombination, and the efficacy of selection: was Weismann right? Evolution 54: 337–51; 2000.
1700250834
1700250835
2. Butlin R. The costs and benefits of sex: new insights from old asexual lineages. Nature Reviews in Genetics 3: 311–17; 2002.
1700250836
1700250837
3. Cavalier-Smith T. Origins of the machinery of recombination and sex. Heredity 88: 125–41; 2002.
1700250838
1700250839
4. Dacks J., Roger A. J. The first sexual lineage and the relevance of facultative sex. Journal of Molecular Evolution 48: 779–83; 1999.
1700250840
1700250841
5. Felsenstein J. The evolutionary advantage of recombination. Genetics 78: 737–56; 1974.
1700250842
1700250843
6. Hamilton W. D., Axelrod R., Tanese R. Sexual reproduction as an adaptation to resist parasites. Proceedings of the National Academy of Sciences USA 87: 3566–73; 1990.
1700250844
1700250845
7. Howard R. S., Lively C. V. Parasitism, mutation accumulation and the maintenance of sex. Nature 367: 554–7; 1994.
1700250846
1700250847
8. Keightley P. D., Otto S. P. Interference among deleterious mutations favours sex and recombination in finite populations. Nature 443: 89–92; 2006.
1700250848
1700250849
9. Kondrashov A. Deleterious mutations and the evolution of sexual recombination. Nature 336: 435–40; 1988.
[
上一页 ]
[ :1.7002508e+09 ]
[
下一页 ]