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首页> 外文期刊>Plant signaling & behavior >Cortical microtubule patterning in roots of Arabidopsis thaliana primary cell wall mutants reveals the bidirectional interplay with cellexpansion
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Cortical microtubule patterning in roots of Arabidopsis thaliana primary cell wall mutants reveals the bidirectional interplay with cellexpansion

机译:拟南芥原代细胞壁突变体根部的皮质微管模式揭示了与细胞扩展的双向相互作用

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摘要

Cell elongation requires directional deposition of cellulose microfibrils regulated by transverse cortical microtubules. Microtubules respond differentially to suppression of cell elongation along the developmental zones of Arabidopsis thaliana root apex. Cortical microtubule orientation is particularly affected in the fast elongation zone but not in the meristematic or transition zones of thanatos and pom2-4 cellulose-deficient mutants of Arabidopsis thaliana. Here, we report that a uniform phenotype is established among the primary cell wall mutants, as cortical microtubules of root epidermal cells of rswl and prcl mutants exhibit the same pattern described in thanatos and pom2-4. Whether cortical microtubules assume transverse orientation or notis determined by the demand for cellulose synthesis, according to each root zone's expansion rate. It is suggested that cessation of cell expansion may provide a biophysical signal resulting in microtubule reorientation.
机译:细胞伸长需要定向沉积由横向皮层微管调节的纤维素微纤维。微管对拟南芥根尖发育区的细胞伸长抑制反应不同。皮质微管的定向在快速延伸区特别受到影响,而在拟南芥的thanatos和pom2-4纤维素缺乏突变体的分生或过渡区则不受此影响。在这里,我们报告说,在原代细胞壁突变体之间建立了统一的表型,因为rswl和prcl突变体的根表皮细胞的皮质微管显示出与thanatos和pom2-4中描述的模式相同的模式。皮质微管是否采取横向取向取决于纤维素合成的需求,具体取决于每个根区的扩展速率。建议停止细胞扩增可提供生物物理信号,导致微管重新定向。

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