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Glycosyl Hydrolases of Cell Wall are Induced by Sugar Starvation in Arabidopsis

机译:拟南芥中的糖饥饿诱导了细胞壁的糖基水解酶。

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Three Arabidopsis genes encoding a putative β-galactosidase (At5g56870), β-xylosidase (At5g49360) and β-glucosidase (At3g60140) are induced by sugar starvation. The deduced proteins belong to the glycosyl hydrolase families 35, 3 and 1, respectively. They are predicted to be secretory proteins that play roles in modification of cell wall polysaccharides based on amino acid similarity. The β-galactosidase encoded by At5g56870 was identified as a secretory protein in culture medium of suspension cells by mass spectrometry analysis. This protein was specifically detected under sugar-starved conditions with a specific antibody. Induction of these genes was repressed in suspension cells grown with galactose, xylose and glucose, as well as with sucrose. In planta, expression of the genes and protein accumulation were detected when photosynthesis was inhibited. Glycosyl hydrolase activity against galactan also increased during sugar starvation. The amount of monosaccharide in pectin and hemicellulose in detached leaves decreased in response to sugar starvation. These findings suggest that the cell wall may function as a storage reserve of carbon in addition to providing physical support for the plant body.
机译:糖饥饿诱导了编码拟南芥β-半乳糖苷酶(At5g56870),β-木糖苷酶(At5g49360)和β-葡萄糖苷酶(At3g60140)的三个拟南芥基因。推导的蛋白质分别属于糖基水解酶家族35、3和1。预计它们是分泌性蛋白质,可基于氨基酸相似性在修饰细胞壁多糖中发挥作用。通过质谱分析,将At5g56870编码的β-半乳糖苷酶鉴定为悬浮细胞培养基中的分泌蛋白。该蛋白质是在糖缺乏条件下用特异性抗体特异性检测的。这些基因的诱导在用半乳糖,木糖和葡萄糖以及蔗糖生长的悬浮细胞中被抑制。在植物中,当光合作用受到抑制时,基因的表达和蛋白质的积累被检测到。糖饥饿期间,针对半乳聚糖的糖基水解酶活性也增加。分离的叶片中果胶和半纤维素中的单糖量响应于糖饥饿而减少。这些发现表明,细胞壁除了为植物体提供物理支持外,还可以充当碳的储存储备。

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