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Plasticity of Xyloglucan Composition in Bean(Phaseolus vulgaris)-Cultured Cells during Habituation and Dehabituation to Lethal Concentrations of Dichlobenil

机译:菜豆(Phaseolus vulgaris)培养细胞中木葡聚糖成分在生化和减生过程中对敌百虫腈致死浓度的可塑性

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摘要

Bean cells that have been habituated to grow in a lethal concentration (12 μM) of 2,6-dichlorobenzonitrile (dichlobenil or DCB, a cellulose biosynthesis inhibitor) are known to have decreased cellulose content in their cell walls. Xyloglucan, which is bound to cellulose and together with it forms the main loading network of plant cell walls, has also been described to decrease in habituated cells, but whether the change on cellulose affects the xyloglucan structure besides its abundance has not been analyzed. Fragmentation analysis with xyloglucan-specific endoglucanase (XEG) and endocellulase revealed that habituation to DCB caused a change in the fine structure of xyloglucan, namely a decrease in fucosyl residues attached to the galactosyl-xylosyl residues along the glucan backbone. After the removal of herbicide from the medium (dehabituated cells), xyloglucan recovered its fucosyl residues. In addition, some cello-oligosaccharides could be detected only in habituated cells' xyloglucan digested by XEG and endocellulase, corresponding to a glucan co-valently bound or co-precipitated with the hemicelluloses. These results show that structural flexibility of cell walls relies in part on the plasticity of xyloglucan composition and opens up new perspectives to further research in this field.
机译:已知已经习惯于以致死浓度(12μM)的2,6-二氯苄腈(二氢苯甲腈或DCB,一种纤维素生物合成抑制剂)生长的豆类细胞壁中的纤维素含量降低。木葡聚糖与纤维素结合,并与之形成植物细胞壁的主要负荷网络,也已被描述可以减少习惯细胞的数量,但是除了其丰度外,纤维素的变化是否会影响木葡聚糖结构还没有得到分析。用木葡聚糖特异性内切葡聚糖酶(XEG)和内切纤维素酶进行的片段分析显示,习惯于DCB引起木葡聚糖精细结构的改变,即沿葡聚糖骨架连接至半乳糖基-木糖基残基的岩藻糖基残基减少。从培养基(退化的细胞)中除去除草剂后,木葡聚糖回收了岩藻糖基残基。另外,一些纤维寡糖只能在被XEG和内切纤维素酶消化的习惯化细胞的木葡聚糖中检测到,这对应于与半纤维素共价结合或共沉淀的葡聚糖。这些结果表明,细胞壁的结构柔性部分取决于木葡聚糖组合物的可塑性,并为该领域的进一步研究开辟了新的前景。

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