| [1] | 
					 Li, ZC, Mu, et al. Theor Appl Genet, 110 (2005),pp. 1244-1252 
						
					 | 
			
| [2] | 
					 Shi, CH, Zhu, et al. Theor Appl Genet, 95 (1997),pp. 294-300 
						
					 | 
			
| [3] | 
					 He, P, Li, et al. Genetic analysis of rice grain quality Theor Appl Genet, 98 (1999),pp. 502-508 
						
					 | 
			
| [4] | 
					 Tan, YF, Li, et al. The three important trait for cooking and eating quality of rice grains are controlled by a single locus in an elite rice hybrid, Shanyou 63 Theor Appl Genet, 99 (1999),pp. 642-648 
						
					 | 
			
| [5] | 
					 Bao, JS, Zheng, et al. Theor Appl Genet, 100 (2000),pp. 280-284 
						
					 | 
			
| [6] | 
					 Huang, ZL, Tan, et al. Acta Agro Sin, 26 (2000),pp. 777-782 
						
					 | 
			
| [7] | 
					 Lanceras, JC, Huang, et al. Mapping of genes for cooking and eating qualities in Thai jasmine rice (KDML105) DNA Res, 28 (2000),pp. 93-101 
						
					 | 
			
| [8] | 
					 Bao, JS, Wu, et al. QTL for rice grain quality base on a DH population derived from parents with similar apparent amylase content Euphytica, 128 (2002),pp. 317-324 
						
					 | 
			
| [9] | 
					 Bao, JS, Harold, et al. Analysis of quantitative trait loci for starch properties of rice based on an RIL population Acta Botanica Sinica, 45 (2003),pp. 986-994 
						
					 | 
			
| [10] | 
					 Septiningsih, EM, Trijatmiko, et al. Theor Appl Genet, 107 (2003),pp. 1433-1441 
						
					 | 
			
| [11] | 
					 Wu, CM, Sun, et al. Acta Agro Sin, 29 (2003),pp. 822-828 
						
					 | 
			
| [12] | 
					 Aluko, G, Martinez, et al. Theor Appl Genet, 109 (2004),pp. 630-639 
						
					 | 
			
| [13] | 
					 Li, JM, Xiao, et al. Genome, 47 (2004),pp. 697-704 
						
					 | 
			
| [14] | 
					 Tian, R, Jing, et al. Mapping quantitative trait loci underlying the cooking and eating quality of rice using a DH population Mol Breed, 15 (2005),pp. 117-124 
						
					 | 
			
| [15] | 
					 Bao, JS, He, et al. Sci Agric Sin, 33 (2000),pp. 8-13 
						
					 | 
			
| [16] | 
					 Wan, XY, Wan, et al. QTL detection for eating quality of cooked rice in a population of chromosome segment substitution lines Theor Appl Genet, 110 (2004),pp. 71-79 
						
					 | 
			
| [17] | 
					 Williams, VR, Wu, et al. Varietal differences in amylose content of rice starch J Agric Food Chem, 8 (1958),pp. 47-48 
						
					 | 
			
| [18] | 
					 Juliano, BO A simplified assay for milled rice amylose Cereal Sci Today, 16 (1971),pp. 334-336 
						
					 | 
			
| [19] | 
					 Cagampang, GB, Perez, et al. A gel consistency test for the eating quality of rice J Sci Food Agric, 24 (1973),pp. 1589-1594 
						
					 | 
			
| [20] | 
					 Little, RR, Hilder, et al. Differential effect of dilute alkali on 25 varieties of milled white rice Cereal Chem, 35 (1958),pp. 111-126 
						
					 | 
			
| [21] | 
					 Jennings, PR, Coffman, et al. 
						
					 | 
			
| [22] | 
					 Wang, DL, Zhu, et al. 
						
					 | 
			
| [23] | 
					 Mu, P, Li, et al. QTL analysis for lodging resistance in rice using a DH population under lowland and upland ecosystems Acta Genetica Sinica, 31 (2004),pp. 717-723 
						
					 | 
			
| [24] | 
					 McCouch, SR, Cho, et al. Report on QTL nomenclature Rice Genet Newslett, 14 (1997),pp. 11-13 
						
					 | 
			
| [25] | 
					 Yang, JC, Wang, et al. Growth and development characteristics and yield formation of dry-cultivated rice Acta Agronomica Sinica, 28 (2002),pp. 11-17 
						
					 | 
			
| [26] | 
					 Wang, HQ, Bouman, et al. 
						
					 | 
			
| [27] | 
					 Juliano, BO, Perez, et al. Grain quality characteristics of export rice in selected markets Cereal Chem, 67 (2002),pp. 192-197 
						
					 | 
			
| [28] | 
					 Li, ZF, Wan, et al. Breed Sci, 53 (2003),pp. 209-215 
						
					 | 
			
| [29] | 
					 Hu, ZL, Li, et al. Mapping of quantitative trait loci (QTLs) for rice protein and fat content using double haploid line Euphytica, 135 (2004),pp. 47-54 
						
					 |