首页> 美国卫生研究院文献>Journal of Experimental Botany >Disruption of the microtubule network alters cellulose deposition and causes major changes in pectin distribution in the cell wall of the green alga Penium margaritaceum
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Disruption of the microtubule network alters cellulose deposition and causes major changes in pectin distribution in the cell wall of the green alga Penium margaritaceum

机译:微管网络的破坏改变了纤维素的沉积并导致果胶在玛格丽塔青藻细胞壁中的果胶分布发生了重大变化。

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摘要

Application of the dintroaniline compound, oryzalin, which inhibits microtubule formation, to the unicellular green alga Penium margaritaceum caused major perturbations to its cell morphology, such as swelling at the wall expansion zone in the central isthmus region. Cell wall structure was also notably altered, including a thinning of the inner cellulosic wall layer and a major disruption of the homogalacturonan (HG)-rich outer wall layer lattice. Polysaccharide microarray analysis indicated that the oryzalin treatment resulted in an increase in HG abundance in treated cells but a decrease in other cell wall components, specifically the pectin rhamnogalacturonan I (RG-I) and arabinogalactan proteins (AGPs). The ring of microtubules that characterizes the cortical area of the cell isthmus zone was significantly disrupted by oryzalin, as was the extensive peripheral network of actin microfilaments. It is proposed that the disruption of the microtubule network altered cellulose production, the main load-bearing component of the cell wall, which in turn affected the incorporation of HG in the two outer wall layers, suggesting coordinated mechanisms of wall polymer deposition.
机译:抑制微管形成的二硝基苯胺化合物谷氨酰胺在单细胞绿藻玛格丽塔菌中的应用引起了其细胞形态的重大扰动,例如在中央地峡区域壁膨胀区的肿胀。细胞壁结构也发生了显着变化,包括内部纤维素壁层变薄和富含高半乳糖醛酸聚糖(HG)的外壁层晶格的重大破坏。多糖微阵列分析表明,稻草素处理导致处理过的细胞中HG丰度增加,但其他细胞壁成分减少,尤其是果胶鼠李糖半乳糖醛酸聚糖I(RG-1)和阿拉伯半乳聚糖蛋白(AGPs)减少。谷氨酰胺显着破坏了表征细胞峡部皮质区域的微管环,肌动蛋白微丝的广泛外围网络也被其破坏。有人提出,微管网络的破坏改变了纤维素的产生,纤维素的产生是细胞壁的主要承载成分,继而影响了HG在两个外壁层中的结合,表明了壁聚合物沉积的协调机制。

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