1 Ehrlich M A and Ehrlich H G. Electron microscope radioautography of 14C transfer from rust uredospores to wheat host cells. Phytopathology, 1970, 60:1850~1851 2 Litterfield C J, Heath M C. Ultrastructure of rust fungi. New York: Academic Press, 1979.127~193 3 Onoe T, Tani T, and Naito N. The uptake of labeled nucleosides by Puccinia coronata grown on susceptible leaves. Rep. Tottori Mycol. Inst., 1973, 10:303~312 4 康振生,王瑶,黄丽丽,等.小麦品种对条锈病低反应型抗性的组织学和超微结构研究.中国农业科学,2003,36(9):1026~1031 5 Zhang Z J, Yang G H, Li G H., et al. Transgressive segregation, heritability and number of genes controlling durable resistance to stripe rust in one Chinese and two Italian wheat cultivars. Phytopathology, 2001,91:680~685 6 Wan A, Zhao Z, Chen X, et al. Wheat stripe rust epidemic and virulence of Puccinia striiformis f. sp. tritici in China in 2002. Plant Disease, 2004, 88: 896~904 7 Frye C A and Innes R W. An arabidopsis mutant with enhanced resistance to powdery mildew. Plant Cell, 1998,10:947~956 8 Shapiro S S & Wilk M B. An analysis of variance test for normality (complete samples). Biometrika 1965,52:591~611 9 Wright S. Evolution and the Genetics of populations Vol. 1, Genetic and Biometric Foundations. The University of Chicago press, Chicago. 1968.469 10 Simmonds N W. Principles of crop improvement. Longman, London Ltd. 1979,69~81 11 Allard R W. Principles of plant breeding. Wiley, New York and London. 1960,485 12 Mather K and Jinks J L. Biometrical genetics: The study of continuous variation. Chapman and Hall. London.1982.65~206 13 Niks R E. Failure of haustorial development as a factor in slow growth and development of Puccinia hordei in partially resistant barley seedlings. Physiological and Molecular Plant Pathology, 1986, 28:309~322 14 Hall J L & Williams L E. Assimilate transport and partitioning in fungal biotrophic interactions. Aust. J. Plant Physiol., 2000,27:549~560 15 王瑾,张志德.小麦慢白粉病品种苗期鉴定研究.西北农业大学学报,1998,26(1):60~63 16 Voegele R T, Struck C, Hahm M, and Mendgen K. The role of haustoria in sugar supply during infection of broad bean by the rust fungus Uromyces fabae. Proc Natl Acad Sci USA, 2001, 98(14): 8133~8138 17 马占鸿,肖悦岩,曾士迈.模糊聚类分析及模式识别在小麦抗条锈性研究中的应用.宁夏农林科技,1995,6:5~10 18 马青等.小麦慢锈性和高温抗锈性组分分析.西北农林科技大学学报(自然科学版),2002,30(4):51~54 19 Milus E A and Line R F. Gene action for inheritance of durable, high-temperature, adult-plant resistance to stripe rust in wheat. Phytopathology, 1986, 76:425~441 20 Chen X M and Line R F. Gene action in wheat cultivars for with durable, high temperature, adult-plant resistance and interaction of HTAP and race-specific seedling resistance to Puccinia striiformis. Phytopathology, 1995,85:567~572 21 Dehghani H and Moghaddam M. Genetic analysis of the Latent period of stripe rust in wheat seedlings. J. Phytopathology, 2004, 152:325~330
|