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2种基因型菜心根系解剖结构差异及其对DEHP吸收累积的影响 被引量:1

Difference of Root Anatomy Characteristics and Its Effect on DEHP Accumulation in Two Genotypes of Brassica parachinensis
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摘要 在前期筛选出油青60 d菜心和特青60 d菜心分别为PAEs高/低吸收累积基因型菜心的基础上,对其进行邻苯二甲酸二(2-乙基己基)酯(DEHP)不同污染水平(20 mg.L-1、50 mg.L-1)的溶液培养试验,对比研究2种基因型菜心根系解剖结构的差异性,初步探讨其与菜心吸收累积DEHP的关系.结果表明,油青60 d菜心和特青60 d菜心的根系解剖结构及其对DEHP污染处理下的响应均存在显著差异.油青60 d菜心根系和茎叶中DEHP含量均主要受主根形成层外围厚度和须根中柱直径控制,决定系数分别为0.900和0.809.特青60 d菜心根系中DEHP含量主要受主根形成层外围厚度和须根皮层厚度控制,决定系数为0.757;茎叶中DEHP含量主要受主根形成层外围厚度控制,决定系数为0.856.油青60 d菜心根系木射线细胞形状以排列规则的长方形为主,主根木栓层厚度和须根皮层厚度较小,须根中柱直径、导管数和导管直径较大,表明油青60 d菜心根系比特青60 d菜心更有利于对DEHP的吸收累积. Two genotypes of Brassica parachinensis,DEHP high-accumulation of Youqing-60 and low-accumulation of Teqing-60,were grown in hydroponic systems contaminated with DEHP(20 and 50 mg·L^-1).Anatomy of roots was measured,and their effects on uptake of DEHP in roots and shoots were discussed.The results showed that roots anatomy of two genotypes of Brassica parachinensis and their responds to DEHP pollution were significantly different.DEHP contents in roots and shoots of Youqing-60 were mainly affected by the thickness of cambium in taproot and the diameter of vascular bundle,the coefficients on DEHP of roots and shoots were 0.900 and 0.809,respectively.DEHP contents of Teqing-60 were mainly affected by the thickness of cambium in taproot and cortex in fibre root in roots,which the coefficient was 0.757,and were mainly affected by the thickness of cambium in taproot in shoots,which the coefficient was 0.856.The wood ray cells in roots of Youqing-60 were rectangular shape and arranged orderly.The thickness of cork layer in taproot and cortex in fibre root of Youqing-60 were lower and the quantity of trachea and diameter of vascular bundle and trachea in fibre root of Yonqing-60 were higher than that of Teqing-60,which indicated that DEHP in soil solution and adsorbed on root were easier penetrated into xylem and transported in Youqing-60 than in Teqing-60.
出处 《环境科学》 EI CAS CSCD 北大核心 2010年第8期1981-1986,共6页 Environmental Science
基金 国家自然科学基金项目(30600372 30471007) 东莞市科技计划项目(2006101101053)
关键词 菜心 根系吸收 根系解剖结构 DEHP污染 生物累积 Brassica parachinensis root absorption root anatomy DEHP pollution bioaccumulation
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