首页> 外文期刊>Journal of phycology >Immunolocalization and distributions of form II rubisco in the pyrenoid and chloroplast stroma of Amphidinium carterae and form i rubisco in the symbiont-derived plastids of peridinium foliaceum (dinophyceae)
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Immunolocalization and distributions of form II rubisco in the pyrenoid and chloroplast stroma of Amphidinium carterae and form i rubisco in the symbiont-derived plastids of peridinium foliaceum (dinophyceae)

机译:胭脂两栖类动物的类胡萝卜素和叶绿体基质中II型rubisco的免疫定位和分布以及叶f(共生植物)的共生体质体中的i rubisco的免疫定位和分布

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摘要

Chloroplasts of peridinin-containing dinoflagellates have recently been shown to contain Form II Rubisco, which consists of large subunits only and is coded by nuclear genes. We have used immunoelectron microscopy to determine the distribution of Form II and Form I Rubisco in dinoflagellates. In sections of Amphidinium carterae Hulburt, the pyrenoid was intensely labeled and the rest of the chloroplast moderately labeled by antisera to Form II Rubisco from the purple non-sulfur bacterium Rhodospirillum rubrum and the symbiotic dinoflagellate Symbiodinium sp. No labeling was observed when sections were exposed to antiserum against Form I Rubisco of the haptophyte alga Isochrysis galbana. In contrast, cell sections of the dinoflagellate Peridinium foliaceum (Stein) Biecheler, whose chloroplasts belong to a diatom endosymbiont, showed no labeling with the two antisera against Form II Rubisco, but heavy pyrenoid labeling was present after treatment with antiserum against Form I Rubisco of I. galbana. The same immunolabeling results were obtained with the free-living diatom Phaeodactylum tricornutum Bohlin. Volumetric analysis of the distribution of Form II Rubisco in the chloroplast of A. carterae showed that, in cells grown under moderate photon irradiance, 72.9% of the plastid's Rubisco was localized in the pyrenoid, whereas in cells grown under low irradiance only 37.0% of the Rubisco was found in the pyrenoid. This light-induced concentration of Rubisco in the pyrenoid suggests that a CO_2-concentrating mechanism may elevate CO_2 within the pyrenoid, favoring the efficient fixation of CO_2 by pyrenoid Rubisco.
机译:最近已证明,含有苦豆素的二鞭毛藻叶绿体含有II型Rubisco,它仅由大的亚基组成,并由核基因编码。我们已经使用免疫电子显微镜确定了二鞭毛藻酸酯中II型和I型Rubisco的分布。在Amphidinium Carterae Hulburt的切片中,类胡萝卜素被强烈标记,其余叶绿体被抗血清适度标记为来自紫色非硫细菌Rhodospirillum rubrum和共生双鞭毛藻Symbiodinium sp。的II型Rubisco。当将切片暴露于针对触藻藻等鞭金藻的I型Rubisco的抗血清时,未观察到标记。相比之下,叶绿体属于硅藻内共生体的鞭毛鞭毛叶藻(Stein)Biecheler的细胞切片未显示出两种针对II型Rubisco的抗血清的标记,但是在用针对I型Rubisco的抗血清处理后存在重的类胡萝卜素标记加尔巴纳岛用自由生活的硅藻Phaeodactylum tricornutum Bohlin获得了相同的免疫标记结果。体积分析第二型Rubisco在角叉菜叶绿体中的分布表明,在中等光子辐照度下生长的细胞中,质体的Rubisco占72.9%位于类胡萝卜素中,而在低辐照度下生长的细胞中仅占37.0%。在类胡萝卜素中发现了Rubisco。类胡萝卜素中这种光诱导的Rubisco浓度表明,CO_2浓缩机制可能会提高类胡萝卜素中的CO_2,有利于类胡萝卜素R​​ubisco对CO_2的有效固定。

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