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Phytochrome Modification and Light-enhanced, In Vivo-induced Phytochrome Pelletability 12

机译:植物色素修饰和光增强,体内诱导的植物色素沉淀性12

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摘要

Phytochrome that was induced by red irradiation in vivo to pellet with subcellular material and that was released from the pellet by removal of divalent cations exhibited altered characteristics. Compared to phytochrome extracted in a soluble red-absorbing form from etiolated tissue, pelleted and released phytochrome, which was also assayed in the red-absorbing form even though pelleted in the far-red-absorbing form, showed 50% greater micro complement fixation activity, eluted closer to the void volume of a Sephadex G-200 column, and electrophoresed more slowly on sodium dodecyl sulfate-polyacrylamide gels. Data presented here document that phytochrome pelleted in the far-red-absorbing form differs from soluble phytochrome extracted from nonirradiated tissue. These data, however, do not permit the conclusion that there is a causal relationship between pelletability and phytochrome modification.
机译:通过体内红色照射诱导的细胞色素与亚细胞物质沉淀,并通过去除二价阳离子而从沉淀中释放出来的植物色素表现出改变的特性。与从黄化组织中以可溶性红色吸收形式提取的植物色素相比,沉淀和释放的植物色素也以红色吸收形式测定,即使以远红色吸收形式沉淀也显示出微补体固定活性高50% ,更靠近Sephadex G-200色谱柱的空隙体积洗脱,并在十二烷基硫酸钠-聚丙烯酰胺凝胶上电泳较慢。此处提供的数据证明以远红外吸收形式沉淀的植物色素与从未经辐照的组织中提取的可溶性植物色素不同。然而,这些数据不能得出可造粒性与植物色素修饰之间存在因果关系的结论。

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