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Induced net Ca2+uptake and callose biosynthesis in suspension-cultured plant cells

机译:诱导悬浮培养植物细胞中Ca2+的净摄取和胼胝糖生物合成

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In suspension-cultured cells ofGlycine maxandCatharanthus roseus, marked callose synthesis can be induced by digitonin and chitosan. Leakage of a limited pool of electrolytes precedes callose formation, K+representing the major cation lost. Poly-L-ornithine, as well as the ionophores A 23187 and ionomycin, also induces some callose synthesis but to a lesser extent. Digitonin increases the net uptake of Ca2+from the external buffer with a time course parallel to callose synthesis but lagging behind the leakage of K+. Nifedipine partly blocks callose synthesis as well as the digitonin-induced increase in net Ca2+uptake. Taken together, the data support the hypothesis that addition of the various substances might indirectly lead to membrane perturbation causing the common event of an increase in net Ca2+uptake which results in callose deposition by a direct activition of the Ca2+-dependent and plasma-membane-located 1,3-β-glucan synthase
机译:在甘氨酸和Catharanthus roseus的悬浮培养细胞中,洋地黄皂苷和壳聚糖可以诱导明显的胼胝糖合成。有限的电解质池的泄漏先于胼胝糖的形成,K+ 代表主要阳离子的损失。聚-L-鸟氨酸以及离子载体 A 23187 和离子霉素也诱导一些胼胝糖合成,但程度较小。洋地黄皂苷增加外部缓冲液中Ca2+的净摄取,其时间过程与胼胝糖合成平行,但滞后于K+的泄漏。硝苯地平部分阻断胼胝糖合成以及洋地黄皂苷诱导的净 Ca2+ 摄取增加。综上所述,这些数据支持了这样的假设,即各种物质的添加可能间接导致膜扰动,导致净Ca2+摄取增加的常见事件,从而通过直接激活Ca2+依赖性和血浆孟巴位于1,3-β-葡聚糖合酶而导致胼胝糖沉积

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