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不同冬小麦品种镉富集转运及离子组特征差异
引用本文:刘畅,徐应明,黄青青,陶雪莹,王林,孙约兵,赵立杰.不同冬小麦品种镉富集转运及离子组特征差异[J].环境科学,2022,43(3):1596-1605.
作者姓名:刘畅  徐应明  黄青青  陶雪莹  王林  孙约兵  赵立杰
作者单位:农业农村部环境保护科研监测所,天津 300191;农业农村部产地环境污染防控重点实验室,天津 300191
基金项目:中国农科院科技创新工程项目(CAAS-CXGC-xym-2018);国家现代农业产业技术体系项目(CARS-03-25);国家自然科学基金项目(41571322)
摘    要:为揭示影响冬小麦籽粒镉(Cd)含量品种差异的关键因素,通过大田试验种植3种Cd低积累小麦和2种Cd高积累小麦,研究不同品种各器官Cd的富集转运特征及离子组特征,并通过相关性分析和主成分分析探讨造成不同冬小麦品种籽粒Cd含量差异的关键器官、关键过程及关键元素.结果表明,颖壳、穗轴、节间1和节点1等器官的Cd富集系数,以及...

关 键 词:小麦  镉(Cd)  基因型差异  富集系数  转运系数  离子组
收稿时间:2021/7/8 0:00:00
修稿时间:2021/8/11 0:00:00

Variations in Cadmium Accumulation and Transport and Ionomic Traits Among Different Winter Wheat Varieties
LIU Chang,XU Ying-ming,HUANG Qing-qing,TAO Xue-ying,WANG Lin,SUN Yue-bing,ZHAO Li-jie.Variations in Cadmium Accumulation and Transport and Ionomic Traits Among Different Winter Wheat Varieties[J].Chinese Journal of Environmental Science,2022,43(3):1596-1605.
Authors:LIU Chang  XU Ying-ming  HUANG Qing-qing  TAO Xue-ying  WANG Lin  SUN Yue-bing  ZHAO Li-jie
Institution:Agro-Environmental Protection Institute, Ministry of Agriculture and Rural Affairs, Tianjin 300191, China;Key Laboratory of Original Agro-Environmental Pollution Prevention and Control, Ministry of Agriculture and Rural Affairs, Tianjin 300191, China
Abstract:A field trial was conducted to identify the key factors affecting intraspecific variation in the cadmium (Cd) content in the grain of winter wheat. Three wheat cultivars with low Cd accumulation and two wheat cultivars with high Cd accumulation were planted. The Cd accumulation and transport and ionomic traits were examined in different organs of the tested wheat cultivars. Additionally, correlation analysis and principal component analysis were used to identify the key plant organs, translocation pathways, and elements that determine the intraspecific variation in the Cd content in wheat grain. The results showed that the bioaccumulation factors of Cd in glume, rachis, internode 1, and node 1, as well as the transport factors of Cd from rachis to grain, from rachis to glume, from internode 1 to rachis, and from node 1 to internode 1, were significantly correlated with Cd bioaccumulation factors in grain. The above-mentioned bioaccumulation factors and transport factors of Cd made a great contribution to the principal components that could discriminate between the wheat cultivars with low and high Cd accumulation and were significantly different among cultivars. Therefore, glume, rachis, internode 1, and node 1 were the key organs affecting the genotype differences in Cd content in wheat grain, and Cd translocation from rachis to grain, from rachis to glume, from internode 1 to rachis, and from node 1 to internode 1 were the key pathways controlling the variety differences in Cd accumulation in wheat grain. The analysis of wheat ionome showed that the bioaccumulation factors of Mg and Mn in the key organs and the transport factors of Mo, Cr, and Pb in the key transport pathways were significantly correlated with the bioaccumulation factor of Cd in wheat grain and contributed greatly to the differentiation between the wheat cultivars with low and high Cd accumulation in the principal component analyses. Thus, in the above-mentioned key organs and transport pathways, Mg, Mn, Mo, Cr, and Pb were the key elements affecting the genotype differences in Cd content in wheat grain.
Keywords:wheat  cadmium(Cd)  genotype differences  bioaccumulation factor  transport factor  ionome
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