1. Regina.Thebud, Karta.Santarius, Effect of high temperature stress on various biomemberanes of leaf cells in situ and in vitro. Plant physiol. 1982, 70:200~205. 2. Navarat Paul H. Li. Photosynthetic response to heat stress in common bean genotypes differing in heat acclimation potential. Crop Science. 1990, 30:100~104 3. Martin M S. Alteration of gene expression during enviromental stress in plants. Ann Rew Plant Physiol. 1988, 37:363~376. 4. Santarius K A. Membrane lipids in heat injury of Spinach chloroplasts. Physiol Plant. 5. Pete G. Increased thermostability of pigment—protein complexes of pea thylakoids fowling catalitic hygrogenztion of membrane lipids. Biochemica et Biophysical Acta, 1986,849:131~140. 6. 沈征言,朱海山,1993,高温对菜豆生育影响及菜豆不同基因型的耐热性差异,中国农业科学,26(3):50-55 7. 王光耀,1996,不同抗热性的菜豆品种经高温处理后叶片细胞超微结构的观察,农业生物技术学报,vol(4)No3 304-305 8. 尚庆茂,沈征言,1999,菜豆不同基因型的耐热性差异及其与蒸腾的关系,中国园艺学会成立70周年纪念优秀论文选编,中国科学技术出版社,P458-462 9. .Xu.Y and Siegenthaler,P.A.(1996b) Effect of non-chilling temperature and light intensity during growth of squash cotyledens on the composition of thlykoid membrane lipids and fatty acids. Plant Cell Physiol. 37:471~479. 10. Yuuki Murakami, Trienoic fatty acids and plant tolerance of high temperature. Science 2000,21 January:476~479. 11. Suss K H. Biosynthetic cause of in vivo acquired thermotolerance of photosynthetic light reaction and metabolic responses of chloroplasts to heat dress. Plant Physiol,1986,22~23.