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镉处理对亚麻生长发育的影响及镉在亚麻体内的分布
引用本文:赵信林,王慧,邱化蛟,邱财生,龙松华,王玉富,郭媛.镉处理对亚麻生长发育的影响及镉在亚麻体内的分布[J].湖南农业大学学报(自然科学版),2022,48(1):82-86.
作者姓名:赵信林  王慧  邱化蛟  邱财生  龙松华  王玉富  郭媛
作者单位:中国农业科学院麻类研究所,湖南 长沙 410205;中南林业科技大学环境科学与工程学院,湖南 长沙 410004
基金项目:国家自然科学基金项目(31771852);现代农业产业技术体系建设专项(CARS–16–E13);国家重点研发计划项目(2017YFE0195300);中国农业科学院创新工程项目(ASTIP–IBFC06)
摘    要:利用添加了不同量(40、80 mg/kg)的外源镉(Cd)的土壤(有效Cd质量分数分别为17.40、51.50 mg/kg)进行亚麻盆栽试验,研究不同水平Cd处理对亚麻的出苗率、株高、茎粗、叶片数、生物量及不同器官Cd含量等的影响.结果表明:与对照相比,低质量分数Cd(40 mg/kg)提高了亚麻的出苗率,而高质量分数...

关 键 词:亚麻  土壤    生物量  亚细胞  耐镉机制

Effects of cadmium treatment on the flax growth and the distribution of cadmium in flax
ZHAO Xinlin,WANG Hui,QIU Huajiao,QIU Caisheng,LONG Songhua,WANG Yufu,GUO Yuan.Effects of cadmium treatment on the flax growth and the distribution of cadmium in flax[J].Journal of Hunan Agricultural University,2022,48(1):82-86.
Authors:ZHAO Xinlin  WANG Hui  QIU Huajiao  QIU Caisheng  LONG Songhua  WANG Yufu  GUO Yuan
Abstract:Pot experiments using the soil(available Cd mass fractions were 17.40 and 51.50 mg/kg, respectively) treated by different levels of cadmium(40, 80 mg/kg) were set to study the effects of different levels of Cd on the emergence rate, plant height, stem diameter, leaf number, biomass and Cd content in different organs of flax. The results showed that compared with the control, a low level of Cd(40 mg/kg) increased the emergence rate of flax, while a high level of Cd(80 mg/kg) decreased the emergence rate of flax. Cd treatment reduced the plant height, stem diameter, leaf number and biomass of flax, and with the increase of Cd contents, the inhibition degree of various growth indexes of flax was significantly aggravated. The plant height, stem diameter and leaf number of flax treated with the high level of Cd decreased by 64.1%, 51.9% and 58.6% compared with the control, respectively. At the organ level, the mass fractions of Cd in root, leaf and stem of flax decreased successively, while at the subcellular level, the Cd mainly distributed in the cell wall and ribosome in flax, which were significantly higher than those in the cell nucleus, chloroplast and mitochondria. In conclusion, Cd treatments with 40, 80 mg/kg Cd inhibited the growth and the accumulation of biomass of flax, and the tolerance of flax to Cd might be due to restriction of upward transport of Cd in roots and isolation of Cd by cell walls and vacuoles.
Keywords:flax  soil  cadmium  biomass  subcellular fraction  mechanism of resistance to cadmium
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