Liu Ai-Zhong, Zou Dong-Sheng, Liu Fei
Institute of Ecology, College of Bioscience and Biotechnology, Hunan Agricultural University, Changsha 410128, China.
Ying Yong Sheng Tai Xue Bao. 2011 Feb;22(2):473-80.
A pot experiment was conducted to study the cadmium (Cd) tolerance and enrichment characteristics of Eulaliopsis binata. Applying low concentration Cd (5 mg x kg(-1)) could boost the growth and physiological vigor of E. binata, with the twelve indexes such as biomass and net photosynthetic rate, etc. increased by 1.0% -15.5%, compared with CK; while applying high concentration Cd (> 5 mg x kg(-1)) had negative effects on the growth of E. binata. Even though the E. binata still finished its physiological circle under the application of 100 mg Cd x kg(-1), the biomass and net photosynthetic rate were decreased by 27.0% and 25.6%, respectively, in comparison with CK. The Cd content in the organs of E. binata increased greatly with increasing concentration of applied Cd. The Cd content in roots was from 350 mg x kg(-1) to 500 mg x kg(-1), and that in stems and leaves was from 15 mg x kg(-1) to 35 mg x kg(-1). When the concentration of applied Cd was < 50 mg x kg(-1), the Cd uptake by E. binata increased with increasing concentration of applied Cd. The Cd content in stems and leaves amounted 15.7% - 38.4% of the total uptake, and the ratio of the Cd content in stems and leaves to that in roots was up to 0.62. All the results indicated that E. binata had stronger capability in tolerating, enriching, and transporting Cd, being a potential Cd hyperaccumulator.
通过盆栽试验研究了龙须草对镉(Cd)的耐受性和富集特性。施加低浓度镉(5 mg·kg⁻¹)可促进龙须草的生长和生理活力,与对照相比,生物量、净光合速率等12项指标提高了1.0% - 15.5%;而施加高浓度镉(> 5 mg·kg⁻¹)对龙须草的生长有负面影响。即使在施加100 mg Cd·kg⁻¹的情况下龙须草仍能完成其生理周期,但与对照相比,生物量和净光合速率分别下降了27.0%和25.6%。龙须草各器官中的镉含量随着施镉浓度的增加而大幅增加。根中镉含量为350 mg·kg⁻¹至500 mg·kg⁻¹,茎和叶中镉含量为15 mg·kg⁻¹至35 mg·kg⁻¹。当施镉浓度< 50 mg·kg⁻¹时,龙须草对镉的吸收量随施镉浓度的增加而增加。茎和叶中的镉含量占总吸收量的15.7% - 38.4%,茎和叶中镉含量与根中镉含量的比值高达0.62。所有结果表明,龙须草具有较强的耐镉、富集和转运镉的能力,是一种潜在的镉超富集植物。