禾本科作物小麦能吸收和积累聚苯乙烯塑料微球
其他题名Uptake and accumulation of microplastics in a cereal plant wheat
李瑞杰1,3; 李连祯1; 张云超1; 杨杰2,3; 涂晨1; 周倩1,3; 李远1; 骆永明1,2,3
发表期刊科学通报
ISSN0023-074X
2020
卷号65期号:20页码:2120-2127
关键词小麦幼苗聚苯乙烯微球砂培吸收积累
研究领域Environmental Sciences & Ecology
英文摘要Microplastics pollution is becoming a global environmental concern, and growing evidence has demonstrated the accumulation and distribution of microplastics in terrestrial ecosystems. Once entering into soil, microplastics can change the physical, chemical and biological properties of soil, and then affect the growth of plants. Currently, most attentions have focused on the toxic effects of microplastics on terrestrial plants, only very limited report showed the uptake of microplastics by higher plants under hydroponic culture conditions. The nutrient solution is useful in understanding the mechanism of microplastics uptake, however, it does not account for the importance of affecting factors in the real environment (e.g., the presence of soil organic matter) and therefore do not represent the actual uptake of microplastics in the real-world. Here, we aim to determine whether wheat plants growing in a sand matrix are able to take up 0.2 mum polystyrene (PS) microbeads and translocate these particles from roots to shoots. Wheat was chosen as a representative of cereal crops because it is one of the main staple foods worldwide. A simple and rapid approach for the imaging of fluorescently labelled PS microbeads within plant tissues by confocal laser scanning microscope (CLSM) was used to investigate the uptake, accumulation, translocation and distribution of microspheres in the wheat plant. Two different fluorescent dyes were encapsulated into the PS microbeads matrix and they were used to detect the localization of PS beads in the root and the green tissue respectively. The presence of PS microbeads in plant tissue was then verified using scanning electron microscopy (SEM). Confocal images revealed that the PS luminescence signals were mainly located in the vascular system and on the cell walls of the cortex tissue of the wheat seedling roots after exposure in sand matrix with a concentration of 0.5 g kg~(-1) of PS beads for 21 d, indicated that the beads passed through the intercellular space via the apoplastic transport system. Microbeads clusters were observed in the intercellular space of epidermal tissues and the steles by SEM. Once inside the central cylinder, the 0.2 mum PS beads were transferred from the roots to the stems and leaves via the vascular system. Here, for the first time, we provide evidence of the adherence, uptake, accumulation, and translocation of submicrometer (0.2 mum) PS within the cereal plant in real sand matrix. Our findings provide a methodology and scientific basis for study of the accumulation mechanism of microplastics in soil-crop systems and their potential risk in food chain transfer.
中文摘要农用地土壤中微塑料的积累及分布已有报道,食用蔬菜在溶液培养下能吸收微塑料也已被发现,但微塑料能否在固相培养条件下进入禾本科作物中并在体内传递积累尚未被证实.本研究选用小麦作为模式植物,以0.2 mum荧光标记聚苯乙烯微球为供试微塑料材料,采用真实河砂盆栽培养实验,结合激光共聚焦荧光显微和扫描电子显微技术,发现小麦幼苗在砂培条件下能吸收和传输0.2 mum聚苯乙烯微球.小麦幼苗在含有荧光标记微球的河砂中生长21 d后,其根部维管柱和外皮层细胞壁间隙组织中呈现较强的荧光分布,表明这种亚微米级塑料微球能被小麦吸收进入根部外皮层质外体空间和维管组织.塑料微球进入根部维管柱后,可通过维管组织运输到地上部的茎部维管束和叶片的脉管组织中.研究结果为进一步认知土壤-作物系统中微塑料的传递与积累机制提供了方法学和科学依据.
文章类型Article
资助机构国家自然科学基金; 中国科学院前沿科学重点研究计划; 国家重点研发计划
收录类别CSCD
语种中文
CSCD记录号CSCD:6803604
引用统计
文献类型期刊论文
条目标识符http://ir.yic.ac.cnhttp://ir.yic.ac.cn/handle/133337/30338
专题中科院海岸带环境过程与生态修复重点实验室_海岸带环境过程实验室
作者单位1.中国科学院烟台海岸带研究所,中国科学院海岸带环境过程与生态修复重点实验室,烟台264003;
2.中国科学院南京土壤研究所,中国科学院土壤环境与污染修复重点实验室,南京210008;
3.中国科学院大学资源与环境学院,北京100049
推荐引用方式
GB/T 7714李瑞杰,李连祯,张云超,等. 禾本科作物小麦能吸收和积累聚苯乙烯塑料微球[J]. 科学通报,2020,65(20):2120-2127.
APA李瑞杰.,李连祯.,张云超.,杨杰.,涂晨.,...&骆永明.(2020).禾本科作物小麦能吸收和积累聚苯乙烯塑料微球.科学通报,65(20),2120-2127.
MLA李瑞杰,et al."禾本科作物小麦能吸收和积累聚苯乙烯塑料微球".科学通报 65.20(2020):2120-2127.
PDF全文下载地址:
点我下载PDF
删除或更新信息,请邮件至freekaoyan#163.com(#换成@)
禾本科作物小麦能吸收和积累聚苯乙烯塑料微球
本站小编 Free考研考试/2022-02-11
相关话题/科学 作物 中国科学院 环境 组织
低密度聚乙烯薄膜微塑料在黄河口海岸带环境中的风化特征
低密度聚乙烯薄膜微塑料在黄河口海岸带环境中的风化特征其他题名WeatheringCharacteristicsofMicroplasticsofLowDensityPolyethyleneFilmintheCoastalEnvironmentoftheYellowRiverEstuary张晨捷1,2 ...烟台海岸带研究所 本站小编 Free考研考试 2022-02-11土壤环境中微塑料污染:来源、过程及风险
土壤环境中微塑料污染:来源、过程及风险其他题名MicroplasticsContaminationofSoilEnvironment:Sources,ProcessesandRisks杨杰1,3;李连祯2;周倩2,3;李瑞杰2,3;涂晨2;骆永明1,2,3发表期刊土壤学报ISSN0564-39292 ...烟台海岸带研究所 本站小编 Free考研考试 2022-02-11滨海湿地环境中微塑料表面性质及形貌变化
滨海湿地环境中微塑料表面性质及形貌变化其他题名Surfacepropertiesandchangesinmorphologyofmicroplasticsexposedin-situtoChinesecoastalwetlands周倩1,2;涂晨1,2;张晨捷1;章海波1,3;付传城1,4;李远1, ...烟台海岸带研究所 本站小编 Free考研考试 2022-02-11见微知著塑战速决--面向可持续发展的环境微塑料研究
见微知著塑战速决--面向可持续发展的环境微塑料研究其他题名Beatplasticpollutionfromthemicroaspect:Towardssustainabledevelopmentofresearchesinenvironmentalmicroplastics骆永明1;涂晨2发表期刊科 ...烟台海岸带研究所 本站小编 Free考研考试 2022-02-11环境中微塑料研究进展与展望
环境中微塑料研究进展与展望其他题名Researchprogressesandprospectsofmicroplasticsintheenvironment骆永明1,3;施华宏2;涂晨3;周倩3;季荣4;潘响亮5;徐向荣6;吴辰熙7;安立会8;孙晓霞9;何德富10;李艳芳3;马旖旎4;李连祯3发表期 ...烟台海岸带研究所 本站小编 Free考研考试 2022-02-11近20年来我国沉积物环境与污染控制研究进展与展望
近20年来我国沉积物环境与污染控制研究进展与展望其他题名ResearchProgressandProspectofSedimentEnvironmentandPollutionControlinChinainRecent20Years范成新1;刘敏2;王圣瑞3;方红卫4;夏星辉5;曹文志6;丁士明1 ...烟台海岸带研究所 本站小编 Free考研考试 2022-02-11藻类光合作用响应环境铜与铁浓度的策略: 从进化到生理
藻类光合作用响应环境铜与铁浓度的策略:从进化到生理林燕妮;任庆敏;甄张赫;王寅初发表期刊海岸科学2021-06-10卷号8期号:2页码:22-30关键词藻类铁限制铜胁迫光合作用响应研究领域海洋生物学英文摘要Onthegeologictimescale,theEarth’satmospherechan ...烟台海岸带研究所 本站小编 Free考研考试 2022-02-11环境微生物驱动锑转化:过程与机制
环境微生物驱动锑转化:过程与机制程漫漫;张海坤;孙延瑜;隋晓日;胡晓珂发表期刊海岸科学2021-04-27卷号8期号:2页码:9-14关键词锑转化环境微生物分子机制研究领域海洋环境微生物与金属的互作过程与机制英文摘要Microbe-driventransformationofantimony(Sb) ...烟台海岸带研究所 本站小编 Free考研考试 2022-02-11聚合物膜电位型传感器在水环境分析中的应用
聚合物膜电位型传感器在水环境分析中的应用王俊豪;刘哲;梁荣宁发表期刊海岸科学2021-06-10卷号8期号:2页码:15-21关键词聚合物膜电位型传感器环境分析环境水体环境参数污染物研究领域海岸带环境监测英文摘要Owingtotherapiddevelopmentofglobaleconomyand ...烟台海岸带研究所 本站小编 Free考研考试 2022-02-11基于国产高分环境卫星的南黄海绿潮监测对比研究
基于国产高分环境卫星的南黄海绿潮监测对比研究王鑫华;邢前国发表期刊海岸科学2020-09-21卷号7期号:2页码:1-9关键词高分一号环境卫星浒苔混合像元监测能力研究领域海洋遥感英文摘要BasedonthedomesticsatellitesWFVimagesofGF-1with16mresolut ...烟台海岸带研究所 本站小编 Free考研考试 2022-02-11