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应用生态学报 ›› 2002, Vol. ›› Issue (2): 137-140.

• 研究论文 • 上一篇    下一篇

铜对大叶相思-根瘤菌共生固氮体系的影响

聂湘平1, 蓝崇钰1, 张志权1, 束文圣1, 黄铭洪2   

  1. 1. 中山大学生命科学学院, 广州 510275;
    2. 香港浸会大学生物系, 香港九龙塘
  • 收稿日期:2001-05-10 修回日期:2001-12-15
  • 通讯作者: 蓝崇钰
  • 基金资助:
    国家自然科学基金资助项目(39870145)

Effects of copper on rhizobia-Acacia auriculaeformis symbiotic association

NIE Xiangping1, LAN Chongyu1, ZHANG Zhiquan1, SHU Wensheng1, HUANG Minghong 2   

  1. 1. School of Life Sciences, Zhongshan University, Guangzhou 510275;
    2. Biology Department, Hong Kong Baptist University, Kowloon Tong, Hong Kong
  • Received:2001-05-10 Revised:2001-12-15

摘要: 报道了两种根瘤菌(大叶相思、美丽胡枝子)对Cu2+的耐受性以及植物根瘤菌共生固氮体系在Cu2+胁迫下结瘤、固氮和生长的变化,讨论了大叶相思在矿山尾矿废弃地作为先锋植物结瘤固氮的可能性.结果表明,大叶相思根瘤菌对Cu2+离子的耐受性较强,可以耐受Cu2+<080mmol的离子浓度,Cu2+对它的半致死浓度为0.129mmol.在无菌砂培无重金属影响条件下,其固氮酶活性为27C2H4·μg·g-1·h-1,当Cu2+>0.125mmol会导致大叶相思固氮酶活性急剧下降,其有效半抑制浓度(EC50)为0.151mmol,Cu2+为0.50mmol完色抑制大叶相思固氮酶活性,不阻碍结瘤,但严重抑制植物生长发育,引起植物叶片白化、植株矮化.在外加N源不接菌和不加N源接菌两种处理组间,Cu2+<0.125mmol时,以不加N接菌处理对大叶相思生长有利.大叶相思对Cu2+吸收积累根部高于地上组织.

关键词: 铜, 根瘤菌, 大叶相思, 生长, 结瘤, 固氮酶活性, 杉木, 生物量分配, 幼苗出土, 形态可塑性, 遮阴, 天然更新

Abstract: The effects of different levels of Cu2+ were studied individually on the growth of two Rhizobium strains and host plant growth,nodulation(%) and nitrogen fixation activity in A.auriculaeformis under solution culture conditions so as to explore a probability of utilization of the genus Acacia in revegetation of Cu2+-contaminated land.The results shows that Rhizobium sp.(Acacia auriculaeformis)had more stronger tolerance to Cu2+ iron than Rhizobium sp(Lespedeza formosa).The values of EC50 respectively achieved 0.129mmol for Rhizobium sp.and 0.151mmol for the N2-fixation activity.When the concentration of Cu2+ was over 0.50 mmol,N2-fixation activity had been inhabited thoroughly.Although the formation of nodules of Acacia auriculaeformis could continued,the growth of host plant had been inhibited with the appearance such as stunting,chlorosis. Between the noinodulating but adding nitrogen treat group and the inodulating without any nitrogen resource treat group, when Cu2+<0.125mmol, the latter group showed better growth for A. auriculaeformis. There were higher contents of Cu in the underground tissues than in aboveground tissues.

Key words: Cu, Rhizobium sp, Acacia auriculaeformis, Growth, Formation of nodules, N2-fixation activity, seedling emergence, morphological plasticity, shade, Chinese fir, biomass allocation, natural regeneration

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