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Analysis of quantitative trait loci underlying
the traits related to chlorophyll content of the flag leaf in rice
- YANG Guohua, TU Sansi, LI Shaoqing, FENG Lingling, KONG Jin, LI Hui, LI Yangsheng
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College of Life Sciences, Wuhan University Key Laboratory of the Ministry of Education for Plant Developmental Biology;
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Published |
05 Dec 2008 |
Issue Date |
05 Dec 2008 |
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References
1. Dunwell J M (2000). Transgenic approaches to crop improvement. J Exp Bot, 51: 487–496. doi:10.1093/jexbot/51.suppl_1.487
2. Hu S P, Mei H W, Zou G H, Liu H Y, Liu G L, Cai R, Li M S, Luo L J (2006). Analysis of quantitative trait locifor chlorophyll content in rice leaves under drought stress. Acta Phytoecologica Sinica, 30(3): 479–486 (in Chinese)
3. Kouril R, Ilík P, Naus J, Schoefs B (1999). On the limits of applicability of spectrophotometricand spectrofluorime tricmethods for the determination of chlorophylla /b ratio. Photosynth Res, 62(1): 107–116. doi:10.1023/A:1006359213151
4. Ku M S B, Agarie S, Nomura M, Fukayama H, Tsuchida H, Ono K, Hirose S, Toki S, Miyao M, Matsuoka M (1999). High-levelexpression of maize phosphoenolpyruvate carboxylase in transgenicrice plants. Nature Biotechnol, 17(1): 76–81. doi:10.1038/5256
5. Li M Q, Lv Z R, Deng X Q (1984). A comparative study of photosynthesisand chlorophyll content of wild and cultivated rice. Acta Phytoephysiologica Sinica, 10(4): 333–338 (in Chinese)
6. Lichtenthaler H K (1987). Chlorophylls and carotenoids: pigments of photosyntheticbiomembranes. Methods Enzymol, 148: 351–383
7. Mae T (1997). Physiological nitrogen efficiency in rice: nitrogenutilization, photosynthesis and yield potential. Plant Soil, 196: 201–210. doi:10.1023/A:1004293706242
8. Matsuoka M, Nomura M, Agarie S, Miyao-Tokutomi M, Ku M S B (1998). Evolutionof C4 photosynthetic genes and over-expressionof maize C4 genes in rice. J Plant Res, 111: 333–337. doi:10.1007/BF02512193
9. McCouch S R, Cho Y G, Yano M, Paul E, Blinstrub M, Morishima H, Kinoshita T (1997). Reporton QTL nomenclature. Rice Genetics Newsletter, 14: 1113
10. Tu Z P (1997). Studies on the photosynthetic characteristics of riceand breeding for high use efficiency of solar energy. Scientia Agricutura Sinica, 30(3): 28–35 (in Chinese)
11. Tu Z P, Cai W J, Huang Q M (1988). Photoinhibition in rice and theirdifference between rice varieties. ChineseJ Rice Sci, 2(1): 8–16 (in Chinese)
12. Tu Z P, Lin X Z, Cai W J, Yu Z Y (1995). Reprobing into rice breeding for high photosynthetic efficiency. Acta Botanica Sinica, 37(8): 641–651 (in Chinese)
13. Wang B, Lan T, Wu W R, Li W M (2003). Mapping of QTLs controlling chlorophyll content in rice. Acta Botanica Sinica, 30(12): 1127–1132 (in Chinese)
14. Yang Q H, Lu W, Hu M L, Wang C M, Zhang R X, Yano M, Wan J M (2003). QTL andepistatic interaction underlying leaf chlorophyll and H2O2 content variation in rice(Oryza sativa L.).Acta Genetica Sinica, 30(3): 245–250 (in Chinese)
15. Zeng Z B (1993). Theoretical basis of separation of multiple linked geneeffects on mapping quantitative trait loci. Proc Natl Acad Sci, 90: 10972–10976. doi:10.1073/pnas.90.23.10972
16. Zeng Z B (1994). Precision mapping of quantitative trait loci. Genetics, 136: 1457–1468