首页> 外文期刊>American Journal of Plant Sciences >Ultrastructural and Physiological Characterization of YELP, a Novel, Yellow, Chlorophyll-Deficient Cell Mutant Line That Develops Etioplast-Like Plastids in the Light
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Ultrastructural and Physiological Characterization of YELP, a Novel, Yellow, Chlorophyll-Deficient Cell Mutant Line That Develops Etioplast-Like Plastids in the Light

机译:YELP的超微结构和生理学表征,YELP是一种新型的,黄色,缺乏叶绿素的细胞突变株,可在光照下发育出类似质体的质体

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In this work, we present an ultrastructural and physiological description of a novel chlorophyll-deficient, yellow cell line of the grass Bouteloua gracilis that develops etioplast-like plastids in presence of light (YELP). These mutant cells were compared to the parental, wild-type, highly chlorophyllous cells from which they were isolated. Growth analysis, based on fresh and dry weights, indicated that YELP accumulates biomass at a slower rate than the parental, green cells. Besides, YELP developed very low levels of photosynthetic pigments, reaching only 9.3% and 38.4% of chlorophyll a and chlorophyll b, respectively, developed by the wild-type cells. Likewise, the accessory pigments, carotenes and xanthophylls, were only synthesized at 8.0% and 5.4%, respectively, of the levels reached by the green cells. Electron microscopy revealed remarkable differences in plastid ultrastructure between the wild-type and mutant cells. Plastids of YELP were heterogeneous and smaller than those found in wild-type cells. YELP plastids were abnormal with poorly developed membrane systems that prevented the accumulation of chlorophyll and accessory pigments in the mutant cell line. We expect this novel, mutant cell line will provide new tools for studying plastid development and differentiation.
机译:在这项工作中,我们提出了一种新的叶绿素缺陷型黄色香茅草的超微结构和生理学描述,该草在光(YELP)存在下发育成质体样质体。将这些突变细胞与从中分离出的亲本野生型高度叶绿素细胞进行比较。根据鲜重和干重进行的生长分析表明,YELP的生物量积累速度比亲代绿色细胞慢。此外,YELP产生的光合色素含量非常低,分别仅占野生型细胞产生的叶绿素a和叶绿素b的9.3%和38.4%。同样,辅助色素,胡萝卜素和叶黄素分别仅以绿细胞达到的水平的8.0%和5.4%合成。电子显微镜显示野生型和突变型细胞之间质体超微结构的显着差异。 YELP的质体是异质的,比野生型细胞中的质体小。 YELP质体在膜系统欠发达的情况下异常,从而阻止了叶绿素和辅助色素在突变细胞系中的积累。我们希望这种新颖的突变细胞系将为研究质体发育和分化提供新的工具。

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