Genetic diversity of rice cultivars (Oryza sativa L.) in China and the temporal trends in recent fifty years

Science China Press., Co. Ltd. - Tập 51 Số 6 - Trang 681-688 - 2006
Yongwen Qi1, Dongling Zhang1, Hongliang Zhang1, Meixing Wang1, Junli Sun1, Xinghua Wei2, Zongen Qiu3, Tang Shenxiang2, Yongsheng Cao3, Xiangkun Wang1, Zichao Li1
1Key Laboratory of Crop Genomics and Genetic Improvement of Ministry of Agriculture and Beijing Key Laboratory of Crop Genetic Improvement, China Agricultural University, Beijing, China
2China National Rice Research Institute, Hangzhou, China
3Institute of Crop Science, Chinese Academy of Agricultural Science, Beijing, China

Tóm tắt

Từ khóa


Tài liệu tham khảo

Normile, D., Variety spices up Chinese rice yield, Science, 2000, 289: 1119–1120.

Tilman, D., The greening of the green revolution, Nature, 1998, 396, 211–212.

Zhu, Y. Y., Chen, H. R., Fan, J. H. et al., Genetic diversity and disease control in rice, Nature, 2000, 406: 718–722.

Donini, P., Law, J. R., Koebner, R. M. D. et al., Temporal trends in the diversity of UK wheat, Theor. Appl. Genet., 2000, 100: 912–917.

Tian, Q. Z., Zhou, R. H., Jia, J. Z., Genetic diversity trend of common wheat (Triticum aestivum L.) in China revealed with AFLP markers, Genetic Resources and Crop Evolution, 2005, 52: 325–331.

Petra, O., Catherine, C. B., Ralf, S. P., A genetic analysis of quantitative resistance to late blight in potato: Towards marker-assisted selection, Mol. Breed., 1999, 5: 399–415.

Ullstrup, A. J., Evolution and dynamics of corn diseases and insect problems since the advent of hybrid corn, in Maize Breeding and Genetics (eds. Walden, D. B.), New York: Wiley-Interscience, 1978, 283–297.

Wei, X. H., Tang, S. X., Jiang, Y. Z. et al., The isoenzyme diversity of China improved rice and the correlation with diversity of phenotype, Chinese J. Rice Sci. (in Chinese), 2003, 17: 123–128.

Lin, S. C., Min, S. K., Rice Varieties and their Genealogy in China (in Chinese), Shanghai: Shanghai Science and Technology Press, 1992, 282–292.

Zhuang, J. Y., Qian, H. R., Lu, J., Pre-research on the genetic and variance of Indica cultivar, Agricultural Science in China (in Chinese), 1996, 29(2): 17–22.

Sun, C. Q., Wang, X. K., Li, Z. C. et al., Comparison of the genetic diversity of common wild rice (Oryza rufipogon Griff.) and cultivated rice (Oryza sativa L.) using RFLP markers, Theor. Appl. Genet., 2001, 102: 157–162.

Virk, P., Ford-Lloyd, B. V., Jackson, M. T. et al., The use of RAPD for the study of diversity of diversity within germplasm collections, Heredity, 1996, 74: 170–179.

Vos, P., Hogers, R., Bleeker, M. et al., AFLP: A new technique for DNA fingerprinting, Nucleic Acids Res., 1995, 23: 4407–4414.

Yang, G. P., Maroof, M. A., Xu, C. G. et al., Comparative analysis of microsatellite DNA polymorphism in landraces and cultivars of rice, Mol. Gen. Genet., 1994, 245: 187–194.

Tautz, D., Hypervariability of simple sequence as a general source of polymorphic DNA markers, Nucleic Acids Res., 1989, 17: 6463–6471.

Akagi, H., Yokozeki, Y., Inagaki, A. et al., Highly polymorphic microsatellites of rice consist of AT repeats and a classification of closely related cultivars with these micarosatellite loci, Theor. Appl. Genet., 1997, 94: 61–67.

McCouch, S. R., Chen, X. L., Panaud, O. et al., Microsatellite marker development, mapping and applications in rice genetics and breeding, Plant Mol. Biol., 1997, 89(35): 89–99.

Svetlana, T., Genevieve, D. C., Angelika, L. et al., Computational and experimental analysis of microsatellites in rice (Oryza sativa L.): Frequency, length variation, transposon associations, and genetic marker potential, Genome Res., 2001, 11: 1441–1452.

Liu, X. C., Wu, J. L., SSR heterogenic patterns of parents for marking and predicting heterosis in rice breeding, Mol. Breed., 1998, 4: 263–268.

Li, Z. C., Zhang, H. L., Cao, Y. S. et al., Studies on the sampling strategy for primary core collection of Chinese ingenious rice, Acta Agronomica Sinica (in Chinese), 2003, 29: 20–24.

IRRI-IBPGR, Descriptors for Rice (Oryza sativa L.), Manila: IRRI, 1980, 2–16.

Saghi Maroof, M. A., Soliman, K. M., Jorgensen, A. R. et al., Ribosomal DNA spacer-length polymorphisms in barley: Mendelian inheritance, chromosomal location and population dynamics, Proc. Natl. Acad. Sci. USA, 1984, 81: 8014–8018.

Panaud, O., Chen, X. L., McCouch, S. R., Development of microsatellite markers and characterization of simple sequence length polymorphism (SSLP) in rice (Oryza sativa L.), Mol. Gen. Genet., 1996, 252: 597–607.

Nei, M., Analysis of gene diversity in subdivided populations, Proc. Natl. Acad. Sci. USA, 1987, 70(12): 3321–3323.

Shannon, C. E., A mathematical theory of communication, Bell Syst. Technol., 1948, 27: 379–423.

Xiong, Z. M., Cai, H. F., Rice in China (in Chinese), Shanghai: China Agricultural Technology Press, 1999, 50–200.

Yang, G. P., Saghai Maroof, M. A., Zhang, Q. F. et al., Genetic diversity of rice detected by a multiple copy microsatellite DNA marker, Heriditas (in Chinese), 1998, 20(2): 27–30.

Sun, X. L., Cai, H. W., Wang, X. K., Diversity and nonrandom association of rice isozyme gene, Acta Genetica Sinica (in Chinese), 1996, 23: 276–285.

Tang, S. X., Jiang, Y. Z., Wei, X. H. et al., Genetic diversity of isozymes of cultivated rice in China, Acta Agronomica Sinica (in Chinese), 2002, 28: 203–207.