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作 者:沙莎[1] 缪月秋[1] 徐勤松[1] 周耀明[2] 陆长梅[1] 吴国荣[1]
机构地区:[1]南京师范大学生命科学学院,江苏南京210097 [2]南京师范大学化学与环境科学学院,江苏南京210097
出 处:《中国稀土学报》2006年第2期235-240,共6页Journal of the Chinese Society of Rare Earths
摘 要:以水培豌豆(PisumsativumL)幼苗为材料,研究了La3+对Cd2+胁迫下豌豆幼苗生长、叶部与根部细胞对Cd2+的吸收、根部细胞内无机离子平衡体系及膜H+-ATPase,H+-PPase活性的影响。结果表明:Cd2+胁迫下喷施适宜浓度的La3+(0.50mg·L-1)可使豌豆幼苗相对生物量、苗长、叶绿素含量以及光合速率受到的毒害明显缓解,有效减少叶部与根部细胞对Cd2+的吸收,显著减轻了Cd2+胁迫导致的离子平衡系统的紊乱,明显缓解Cd2+对质膜及液泡膜H+-ATPase,H+-PPase活性的抑制作用。10mg·L-1Cd2+胁迫下La3+的保护效应比30mg·L-1Cd2+胁迫下更为显著。样品中La3+的测定和分析结果还表明,外源La3+处理后,La3+主要结合于细胞膜外,进入原生质体的仅占很小部分,但30mg·L-1Cd2+处理样品中La3+进入细胞的量则明显多于10mg·L-1Cd2+处理的样品。To study the physiological mechanism of La^3+ under Cd^2+ stress, Pisum Sativum L seedlings were cultivated for 7 d in solution containing different concentration of Cd^2+ and sprayed with La^3+. The results show that La^3 + alleviates the reduction of relative biomass, length, chlorophyll and photosynthesis; lessen the absorbability and accumulation of Cd^2+ and kept ion balance. La^3+ also increase the activity of TM-H^+-ATPase, TP-H^+ -ATPase and H +-PPase which reduce under Cd^2+ stress. La^3+ is more effective against 10 mg· L^-1 Cd^2+ treatment than 30 mg· L^-1 one. Besides, the results show that most of La^3+ sprayed to seedlings stayed outside of protoplasts.
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