[1] Greenway H,Munns R.Mechanisms of salt tolerance in nonhalophytes[J].Annual Review of Plant Physiology,1980,31:149-190 [2] Zhao K F.Desalinization of saline soils by Suaeda Salsa[J].Plant and Soil,1991,135:303-305 [3] 赵可夫,范海,江行玉,等.盐生植物在盐溃土壤改良中的作用[J].应用与环境生物学报,2002,8(1):31-35 [4] 赵可夫,范海.盐生植物及其对盐渍生境的适应生理[M].北京:科学出版社,2005.4-9 [5] 方志红,董宽虎.NaCl胁迫对碱蒿活性氧产生及抗氧化酶活性的影响[J].草地学报,2010,18(6):829-832 [6] 方志红,董宽虎.Na2SO4胁迫对碱蒿叶绿素、甜菜红素和O-2产生速率的影响[J].安徽农学通报,2010,16(9):40-41,25 [7] 方志红,董宽虎.NaCl胁迫对碱蒿可溶性蛋白的影响[J].中国农学通报,2010,26(16):147-149 [8] 方志红,董宽虎.NaCl胁迫对碱蒿幼苗叶绿素和甜菜红素含量的影响[J].畜牧与饲料科学,2010,2:76-77 [9] 冯寿快.碱蒿对盐碱胁迫的生理响应特点[D].哈尔滨;东北师范大学,2010 [10] 吴凯,周晓阳.环境胁迫对植物超微结构的影响[J].山东林业科技,2007,3:80-83 [11] 简令成,王红.逆境植物细胞生物学[M].北京:科学出版社,2009.168-179 [12] 杨春雪,卓丽环,柳参奎.植物显微及超微结构变化与其抗逆性关系的研究进展[J] ,分子植物育种,2008,2:341-346 [13] 朱宇旌,张勇.盐胁迫下小花碱茅超微结构的研究[J].中国草地,2000,22(4):30-32 [14] 郑文菊,王勋陵,沈禹颖.盐渍化生境中一些植物同化器官超微结构的研究[J].电子显微学报,1999,18:507-512 [15] 刘吉祥,吴学明,何涛.盐胁迫下芦苇叶肉细胞超微结构的研究[J].西北植物学报,2004,24:1035-1040 [16] 郑湘如,王希善.植物解剖结构显微图谱[M].北京:农业出版社,1983.60-61 [17] 胡云,燕玲,李红.14种荒漠植物茎的解剖结构特征分析[J].干旱区资源与环境,2006,20(1):202-208 [18] Winter E.SaIt tolerance of trifolium alexandrinum L.Ⅲ.effects of salt on ultrastructure of phloem and xylem transfer cells in petioles and leaves[J].Australian Journal of Plant Physiology,1982,9:239-250 [19] Boughanmi N,Michonneau P,Verdus M C.Structural changes induced by NaCl in companion and transfer cells of Medicago sativa blades[J].Protoplasma,2003,220:179-187 [20] Offler C E,Mccurdy D W,Patrick J W.Transfer cells,cells specialized for a special purpose[J].Annual Review of Plant Biology,2003,54:431-454 [21] 范华,董宽虎,方志红,等.碱蒿营养器官的扫描电镜观察研究[J].激光生物学报,2010,19(3):314-320 |