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Collapsed xylem phenotype of Arabidopsis identifies mutants deficient in cellulose deposition in the secondary cell wall.

机译:拟南芥的木质部折叠表型鉴定了在次级细胞壁中缺乏纤维素沉积的突变体。

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摘要

Recessive mutations at three loci cause the collapse of mature xylem cells in inflorescence stems of Arabidopsis. These irregular xylem (irx) mutations were identified by screening plants from a mutagenized population by microscopic examination of stem sections. The xylem cell defect was associated with an up to eightfold reduction in the total amount of cellulose in mature inflorescence stems. The amounts of cell wall-associated phenolics and polysaccharides were unaffected by the mutations. Examination of the cell walls by using electron microscopy demonstrated that the decreases in cellulose content of irx lines resulted in an alteration of the spatial organization of cell wall material. This suggests that a normal pattern of cellulose deposition may be required for assembly of lignin or polysaccharides. The reduced cellulose content of the stems also resulted in a decrease in stiffness of the stem material. This is consistent with the irregular xylem phenotype and suggests that the walls of irx plants are not resistant to compressive forces. Because lignin was implicated previously as a major factor in resistance to compressive forces, these results suggest either that cellulose has a direct role in providing resistance to compressive forces or that it is required for the development of normal lignin structure. The irx plants had a slight reduction in growth rate and stature but were otherwise normal in appearance. The mutations should be useful in facilitating the identification of factors that control the synthesis and deposition of cellulose and other cell wall components.
机译:三个位点的隐性突变导致拟南芥花序茎中成熟木质部细胞的崩溃。这些不规则的木质部(irx)突变是通过对茎切片进行显微镜检查从诱变的种群中筛选植物而鉴定的。木质部细胞缺陷与成熟的花序茎中的纤维素总量减少多达八倍有关。细胞壁相关酚和多糖的量不受突变影响。通过使用电子显微镜检查细胞壁表明irx线的纤维素含量的减少导致细胞壁材料的空间组织的改变。这表明木质素或多糖的组装可能需要纤维素沉积的正常模式。茎的纤维素含量降低也导致茎材料的刚度降低。这与不规则的木质部表型一致,表明irx植物的壁不耐压缩力。由于木质素以前被认为是抗压缩力的主要因素,因此这些结果表明纤维素在提供抗压缩力方面具有直接作用,或者是发展正常木质素结构所必需的。 irx植物的生长速度和身高略有下降,但外观正常。突变应有助于促进识别控制纤维素和其他细胞壁成分合成和沉积的因素。

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