[1] 赵可夫,李法曾.中国盐生植物[M].北京:科学出版社,1999. [2] 吴欣明,王运琦,刘建宁,等.羊茅属植物耐盐性评价及其对盐胁迫的生理反应[J].草业学报,2007,16(6):67-73. [3] 张耿,高洪文,王赞.偃麦草属植物苗期耐盐性指标筛选及综合评价[J].草业学报,2007,16(4):55-61. [4] 赵昕,赵敏桂,谭会娟,等.NaCl胁迫对盐芥和拟南芥K+、Na+吸收的影响[J].草业学报,2007,16(4):21-24. [5] Lee G J, Yoo Y K, Kim K S.Salt tolerance study in Zoysiagrass[J].Horticulture Science,1994,35(3):241-250. [6] 胡化广,刘建秀,宣继萍,等.结缕草属植物的抗旱性初步评价[J].草业学报,2007,16(1):47-51. [7] 李亚,耿蕾,刘建秀.中国结缕草属植物抗盐性评价[J].草地学报,2004,12(1):8-11. [8] 刘振虎,卢欣石.利用层次分析法综合评价9个草坪品种的耐盐性[J].草地学报,2002,(3):207-211. [9] Marcum K B.Salinity tolerance mechanisms of six C4 turfgrasses[J].Journal of the American Society for Horticultural Science,1994,119(4):779-784. [10] Marcum K B.Salinity tolerance mechanisms of grasses in the subfamily chloridoideae[J].Crop Science, 1999,39:1153-1160. [11] Marcum K B,Anderson S J,Engelke M C.Salt gland ion secretion:A salinity tolerance mechanism among 5 zoysiagrass species[J].Crop Science,1998,38:806-810. [12] 谢传俊,杨集辉,周守标,等.铅递进胁迫对假俭草和结缕草生理特性的影响[J].草业学报,2008,17(4):65-70. [13] Alshammary S F,Qian Y L,Wallner S J.Growth response of four turfgrass species to salinity[J].Agricultural Water Management,2004,66:97-111. [14] Qian Y L,Engelke M C,Foster M J V.Salinity effect on Zoysiagrass cultivars and experimental lines[J].Crop Science,2000,40:488-492. [15] Hideki O,Masumi E.Isolation of cDNA and enzymatic properties of betaine aldehyde dehydrogenase from Zoysia tenuifolia[J].Journal of Plant Physiology,2005,162:1077-1086. [16] 翁跃进,陈道明.小麦耐盐基因的标记和标记的克隆[J].遗传学报,2002,29(4):343-349. [17] 单雷,赵双宜,陈芳,等.小麦体细胞杂种山融3号耐盐相关SSR标记的筛选和初步定位[J].中国农业科学,2006,39(2):225-230. [18] 丁海媛,张耕耘,郭岩,等.运用RAPD分析标记水稻耐盐突变系得耐盐主效基因[J].科学通报,1998,43(4):418-421. [19] 杨青川,韩建国.紫花苜蓿耐盐分子标记的初步鉴定[J].中国农业科学,2005,38(3):606-611. [20] Li G,Qios C F.Sequence-related amplified polymorphism(SRAP),a new marker system based on a simple PCR reaction:Its application to mapping and gene tagging in Brassica[J].Theoretical and Applied Genetics,2001,103:455-461. [21] Budak H,Shearman R C,Parmaksiz L, et al.Molecular characterization of Buffalograss germplasm using sequence-related amplified polymorphism markers[J].Theoretical and Applied Genetics,2004,108:324-328. [22] 林忠旭,张献龙,聂以春,等.棉花SRAP遗传连锁图构建[J].科学通报,2003,48(5):1676-l679. [23] 潘俊松,王刚,李效尊,等.黄瓜SRAP遗传连锁图的构建及始花节位的基因定位[J].自然科学进展,2005,15(2):167-171. [24] Ferriol M,Pico B,Nuez F.Genetic diversity of a germplasm collection of Cucurbita pepo using SRAP and AFLP markers[J].Theoretical and Applied Genetics,2003,107:271-282. [25] Budak H,Shearman R C,Gaussoin R E, et al.Application of sequence-related amplified polymorphism markers for characterization of turfgrass species[J].Hort Science,2004, 39(5):955-958. [26] 陈静波,阎君,姜燕琴,等.NaCl胁迫对6种暖季型草坪草新选系生长的影响[J],植物资源与环境学报,2007,16(4):47-52. [27] 郭海林,刘建秀,高鹤,等.结缕草属优良品系SSR指纹图谱的构建[J].草业学报,2007,16(2):53-59. [28] 刘雅辉,闫红飞,杨文香,等.小麦抗叶锈病基因Lrl9的SRAP标记[J].华北农学报,2007,22(4):193-196. [29] 伊艳杰,胡楠,刘红彦,等.小麦抗白粉病基因SRAP标记的鉴定及序列分析[J].河南农业科学,2007,(3):60-62. |