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Promiscuous non-catalytic tandem carbohydrate-binding modules modulate the cell-wall structure and development of transgenic tobacco (Nicotiana tabacum) plants

机译:混杂的非催化的串联碳水化合物结合模块调节转基因烟草(Nicotiana tabacum)植物的细胞壁结构和发育

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摘要

We have compared heterologous expression of two types of carbohydrate binding module (CBM) in tobacco cell walls. These are the promiscuous CBM29 modules (a tandem CBM29-1-2 and its single derivative CBM29-2), derived from a non-catalytic protein1, NCP1, of the Piromyces equi cellulase/hemicellulase complex, and the less promiscuous tandem CBM2b-1-2 from the Cellulomonas fimi xylanase 11A. CBM-labelling studies revealed that CBM29-1-2 binds indiscriminately to every tissue of the wild-type tobacco stem whereas binding of CBM2b-1-2 was restricted to vascular tissue. The promiscuous CBM29-1-2 had much more pronounced effects on transgenic tobacco plants than the less promiscuous CBM2b-1-2. Reduced stem elongation and prolonged juvenility, resulting in delayed flower development, were observed in transformants expressing CBM29-1-2 whereas such growth phenotypes were not observed for CBM2b-1-2 plants. Histological examination and electron microscopy revealed layers of collapsed cortical cells in the stems of CBM29-1-2 plants whereas cellular deformation in the stem cortical cells of CBM2b-1-2 transformants was less severe. Altered cell expansion was also observed in most parts of the CBM29-1-2 stem whereas for the CBM2b-1-2 stem this was observed in the xylem cells only. The cellulose content of the transgenic plants was not altered. These results support the hypothesis that CBMs can modify cell wall structure leading to modulation of wall loosening and plant growth.
机译:我们比较了烟草细胞壁中两种类型的碳水化合物结合模块(CBM)的异源表达。这些是混杂的CBM29模块(串联CBM29-1-2和其单个衍生物CBM29-2),其衍生自Piromyces equi纤维素酶/半纤维素酶复合物的非催化蛋白NCP1和混杂程度较低的串联CBM2b-1 -2来自纤维单胞菌木聚糖酶11A。 CBM标记研究表明,CBM29-1-2不受约束地与野生型烟梗的每个组织结合,而CBM2b-1-2的结合仅限于血管组织。与不那么混杂的CBM2b-1-2相比,混杂的CBM29-1-2对转基因烟草植物的影响要大得多。在表达CBM29-1-2的转化体中观察到茎伸长减少和幼年期延长,导致花发育延迟,而对于CBM2b-1-2植物未观察到这种生长表型。组织学检查和电子显微镜检查显示在CBM29-1-2植株茎中的皮质细胞层塌陷,而CBM2b-1-2转化株的干皮质细胞中的细胞变形不那么严重。在CBM29-1-2茎的大多数部分中也观察到了细胞膨胀的改变,而对于CBM2b-1-2茎则仅在木质部细胞中观察到了。转基因植物的纤维素含量未改变。这些结果支持以下假设:煤层气可以修饰细胞壁结构,从而导致壁松和植物生长的调节。

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