首页> 外文期刊>Development >Mutant alleles of Arabidopsis RADIALLY SWOLLEN 4 and 7 reduce growth anisotropy without altering the transverse orientation of cortical microtubules or cellulose microfibrils.
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Mutant alleles of Arabidopsis RADIALLY SWOLLEN 4 and 7 reduce growth anisotropy without altering the transverse orientation of cortical microtubules or cellulose microfibrils.

机译:拟南芥RADIALLY SWOLLEN 4和7的突变等位基因在不改变皮层微管或纤维素微纤维的横向取向的情况下降低了生长的各向异性。

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The anisotropic growth of plant cells depends on cell walls having anisotropic mechanical properties, which are hypothesized to arise from aligned cellulose microfibrils. To test this hypothesis and to identify genes involved in controlling plant shape, we isolated mutants in Arabidopsis thaliana in which the degree of anisotropic expansion of the root is reduced. We report here the characterization of mutants at two new loci, RADIALLY SWOLLEN 4 (RSW4) and RSW7. The radial swelling phenotype is temperature sensitive, being moderate (rsw7) or negligible (rsw4) at the permissive temperature, 19 degrees C, and pronounced at the restrictive temperature, 30 degrees C. After transfer to 30 degrees C, the primary root's elongation rate decreases and diameter increases, with all tissues swelling radially. Swelling is accompanied by ectopic cell production but swelling is not reduced when the extra cell production is eliminated chemically. A double mutant was generated, whose roots swell constitutively and more than either parent. Based on analytical determination of acid-insoluble glucose, the amount of cellulose was normal in rsw4 and slightly elevated in rsw7. The orientation of cortical microtubules was examined with immunofluorescence in whole mounts and in semi-thin plastic sections, and the orientation of microfibrils was examined with field-emission scanning electron microscopy and quantitative polarized-light microscopy. In the swollen regions of both mutants, cortical microtubules and cellulose microfibrils are neither depleted nor disoriented. Thus, oriented microtubules and microfibrils themselves are insufficient to limit radial expansion; to build a wall with high mechanical anisotropy, additional factors are required, supplied in part by RSW4 and RSW7.
机译:植物细胞的各向异性生长取决于具有各向异性机械特性的细胞壁,据推测是由于排列的纤维素微纤维引起的。为了检验该假设并鉴定涉及控制植物形状的基因,我们在拟南芥中分离了突变体,其中根的各向异性扩展程度降低了。我们在这里报告两个新基因座,径向SWOLLEN 4(RSW4)和RSW7突变体的表征。径向膨胀表型对温度敏感,在允许温度(19摄氏度)下适度(rsw7)或可忽略(rsw4),在极限温度(30摄氏度)下明显。转移到30摄氏度后,初生根的伸长率直径减小,直径增大,所有组织均径向膨胀。肿胀伴随异位细胞产生,但是当化学消除多余细胞产生时肿胀并没有减少。产生了一个双突变体,其根组成性溶胀并且比任何一个亲本都更大。根据酸不溶性葡萄糖的分析测定,rsw4中的纤维素含量正常,而rsw7中的纤维素含量略高。通过免疫荧光在整个安装座和半薄塑料切片中检查皮层微管的方向,并通过场发射扫描电子显微镜和定量偏振光显微镜检查微纤维的方向。在两个突变体的肿胀区域中,皮质微管和纤维素微原纤维既不耗尽也不迷失方向。因此,定向的微管和微纤维本身不足以限制径向膨胀。要建造具有高机械各向异性的墙,还需要其他因素,部分因素由RSW4和RSW7提供。

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