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Hypergravity induces reorientation of cortical microtubules and modifies growth anisotropy in azuki bean epicotyls

机译:超重力诱导皮层微管的重新定向并改变小豆表胚轴的生长各向异性

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We examined the changes in the orientation of cortical microtubules during the hypergravity-induced modification of growth anisotropy (inhibition of elongation growth and promotion of lateral growth) in azuki bean (Vigna angularis Ohwi et Ohashi) epicotyls. The percentage of cells with transverse microtubules was decreased, while that with longitudinal microtubules was increased, in proportion to the logarithm of the magnitude of gravity. The percentage of cells with longitudinal microtubules showed an increase within 0.5 h of transfer of the 1g-grown seedlings to a 300g-hypergravity condition. Lanthanum and gadolinium, blockers of calcium channels, nullified the modification of growth anisotropy and reorientation of microtubules by hypergravity. Horizontal and acropetal hypergravity modified growth anisotropy and reorientation of microtubules, as did basipetal hypergravity, and these changes were not seen in the presence of lanthanum or gadolinium. These results suggest that hypergravity changes activities of lanthanum- and gadolinium-sensitive calcium channels independently of its direction, which may lead to reorientation of cortical microtubules and modification of growth anisotropy in azuki bean epicotyls.
机译:我们检查了在超重力诱导的a豆(Vigna angularis Ohwi等人)上胚轴的生长各向异性(抑制伸长生长和促进侧向生长)的超重力诱导修饰过程中皮层微管取向的变化。与重力微对数成正比,具有横向微管的细胞百分比减少,而具有纵向微管的细胞百分比增加。具有纵向微管的细胞百分比在1g生长的幼苗转移至300g超重力条件下的0.5小时内显示出增加。镧和g是钙通道的阻滞剂,通过超重力使生长各向异性的改变和微管的重新定向无效。水平和上颌超重力改变了微管的生长各向异性和微管的重新定向,而基层超重力也是如此,而在镧或g存在下则看不到这些变化。这些结果表明,超重力作用会独立于镧和-敏感的钙通道而改变其活动方向,这可能导致皮质微管重新定向并改变小豆表胚轴的生长各向异性。

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