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A study of vascular transport of plant exogenous proteins in Nicotiana benthamiana and Brassica oleracea using fluorescence and magnetic resonance imaging technology.

机译:利用荧光和磁共振成像技术研究了本氏烟草和芸苔属中植物外源蛋白质的血管运输。

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摘要

Use fluorescence and MRI imaging technology to characterize long distance transport of fluorescence conjugated proteins and virus protein in Nicotiana benthamiana and Brassica oleracea. The investigation of vascular transport of exogenously applied proteins will lay the foundation of studying the movement of virion nanoparticles as biomedicine in plants and help to study potential uptake of foodborne contaminants by plants.;Research on the vascular transport of exogenously applied proteins and compared their delivery to various parts of the Nicotiana benthamiana and Brassica oleracea plants with carboxy fluorescein dye reveals Alexa fluor tagged bovine serum albumin (Alexa-BSA) follows a low level of movement to upper parts of the plant and unloads to the apoplast. Alexa fluor tagged Histone H1 (Alexa-Histone) moves relatively rapid and is retained in the phloem and phloem parenchyma. Both Alexa-Histone and -BSA were exported from leaf veins class II and III but they unloaded completely into the leaf lamina as fluorescent epidermal and mesophyll cells in N. benthamiana and as fluorescent stomata in B. oleracea . There is barely any residual fluorescence left inside the leaf veins in N. benthamiana. Fluorescein tagged hepatitis C virus core protein (fluorescein-HCV) moves more rapidly than BSA in N. benthamiana but does not reach the level of Histone through the plant and was restricted to the leaf veins. Fluorescein-HCV failed to unload to the leaf lamina. These combined data suggest that there is not a single default pathway for the transfer of exogenous proteins through the plant. Specific protein properties appear to determine their destination and transport properties within the phloem. The factors of water content, application methods play different roles on protein transport in different plants.
机译:使用荧光和MRI成像技术来表征本底烟草和甘蓝型油菜中荧光结合蛋白和病毒蛋白的长距离运输。外源应用蛋白的血管运输研究将为研究病毒体纳米颗粒作为植物生物医学的运动奠定基础,并有助于研究植物对食源性污染物的潜在吸收。用羧基荧光素染料对本氏烟草和芸苔属植物的各个部位进行的分析显示,Alexa fluor标记的牛血清白蛋白(Alexa-BSA)沿向植物上部的低水平运动并卸载至质外体。 Alexa fluor标记的组蛋白H1(Alexa-Histone)移动相对较快,并保留在韧皮部和韧皮部薄壁组织中。 Alexa-Histone和-BSA均从II类和III类叶脉输出,但它们作为本塞姆氏烟草中的荧光表皮细胞和叶肉细胞以及油菜中的荧光气孔完全卸载到叶片中。本塞姆烟草的叶脉内部几乎没有残留荧光。荧光素标记的丙型肝炎病毒核心蛋白(荧光素-HCV)在本氏烟草中的移动速度比BSA快,但在植物中未达到组蛋白水平,并且仅限于叶脉。荧光素-HCV无法卸载到叶片。这些综合数据表明,外源蛋白通过植物的转移没有单一的默认途径。特定的蛋白质性质似乎决定了韧皮部内的目的地和转运性质。水分的因素,施用方法对不同植物中蛋白质的运输起着不同的作用。

著录项

  • 作者

    Niu, Chenxing.;

  • 作者单位

    Oklahoma State University.;

  • 授予单位 Oklahoma State University.;
  • 学科 Agriculture Plant Pathology.
  • 学位 M.S.
  • 年度 2011
  • 页码 111 p.
  • 总页数 111
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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