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The geometry of the forisome–sieve element–sieve plate complex in the phloem of Vicia faba L. leaflets

机译:蚕豆韧皮部小孔-筛板-筛板复合体的几何形状

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摘要

Forisomes are contractile protein bodies that appear to control flux rates in the phloem of faboid legumes by reversibly plugging the sieve tubes. Plugging is triggered by Ca2+ which induces an anisotropic deformation of forisomes, consisting of a longitudinal contraction and a radial expansion. By conventional light microscopy and confocal laser-scanning microscopy, the three-dimensional geometry of the forisome–sieve element–sieve plate complex in intact sieve tubes of leaflets of Vicia faba L. was reconstructed. Forisomes were mostly located close to sieve plates, and occasionally were observed drifting unrestrainedly along the sieve element, suggesting that they might be utilized as internal markers of flow direction. The diameter of forisomes in the resting state correlated with the diameter of their sieve elements, supporting the idea that radial expansion of forisomes is the geometric basis of reversible sieve tube plugging. Comparison of the present results regarding forisome geometry in situ with previously published data on forisome reactivity in vitro makes it questionable, however, whether forisomes are capable of completely sealing sieve tubes in V. faba leaves.
机译:异构体是可收缩的蛋白质体,似乎通过可逆地堵塞筛管来控制类豆科植物韧皮部的通量速率。 Ca 2 + 触发了堵塞,Ca 2 + 引起了各向异性的各向异性变形,包括纵向收缩和径向膨胀。通过常规的光学显微镜和共聚焦激光扫描显微镜,可以重建蚕豆小叶完整筛管中的酶-筛元素-筛板复合体的三维几何形状。孔洞大多位于靠近筛板的位置,偶尔会沿着筛孔单元不受限制地漂移,这表明它们可能被用作流向的内部标记。处于静止状态的异构体的直径与其筛子元素的直径相关,从而支持了这种观点,即异构体的径向膨胀是可逆筛管堵塞的几何基础。目前关于现场几何形状的研究结果与先前发表的体外体外反应性数据的比较使人怀疑,但是,是否有毒物能够完全密封蚕豆叶片中的筛管。

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  • 来源
    《Journal of Experimental Botany》 |2006年第12期|3091-3098|共8页
  • 作者单位

    Indiana University/Purdue University Department of Biology 2101 East Coliseum Boulevard Fort Wayne IN 46805-1499 USA;

    Institut für Allgemeine Botanik Justus-Liebig-Universität Senckenbergstr. 17–21 D-35390 Gießen Germany;

    School of Biological Sciences Washington State University Pullman WA 99164-4236 USA;

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