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首页> 外文期刊>European Journal of Phycology >Ultrastructure and enzyme complement of proplastids from heterotrophically grown cells of the red alga Galdieria stilphuraria
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Ultrastructure and enzyme complement of proplastids from heterotrophically grown cells of the red alga Galdieria stilphuraria

机译:红藻Galdieria stilphuraria异养生长细胞的原生质体的超微结构和酶补体

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The unicellular thermoacidophilic red alga Galdieria sulphur aria is known to grow autotrophically as well as heterotrophically on a wide variety of organic carbon sources. Strain 107.79 becomes nearly colourless when grown heterotrophically on lactose. Under autotrophic conditions, a dominant chloroplast occupies most of the cell volume, while very small, yellow to colourless plastid-like organelles were observed in heterotrophic cells. Their exact number could not be established with certainty. Toinvestigate the role of these algal proplastids, we developed a method to isolate intact organelles from heterotrophic cells via sucrose density-gradient centrifugation. Using electron microscopy, these organelles were shown to have a morphology similarto proplastids with a double membrane envelope, very few thylakoids and one to several dense bodies, apparently plastoglobuli. Investigation of the enzymatic capacities of isolated proplastids showed activity of triose phosphate isomerase and NAD-glyceraldehyde 3-phosphate dehydrogenase (GAPDH), but NADP-GAPDH, 3-phosphoglycerate kinase, fructose-1,6 P_2 aldolase, fructose-1,6 P_2 phosphatase, and malate dehydrogenase were not detected. These findings were supported by the pattern of plastid- and cytosol-specific isozymes of sugar phosphate metabolism and indicate that heterotrophically grown cells of G. sulphuraria 107.79 have not only lost their photosynthetic apparatus but also exhibit an extremely reduced enzyme complement in their dedifferentiatedplastid organelle.
机译:已知单细胞嗜热红藻Galdieria硫aria在各种有机碳源上自养和异养生长。当在乳糖上异养生长时,菌株107.79几乎变为无色。在自养条件下,占优势的叶绿体占据了大部分细胞体积,而在异养细胞中观察到非常小的,黄色至无色的类质细胞器。无法确切确定其确切数字。为了研究这些藻类质体的作用,我们开发了一种通过蔗糖密度梯度离心从异养细胞中分离完整细胞器的方法。用电子显微镜观察,这些细胞器的形态类似于具有双膜包膜的原生质体,极少的类囊体和一到几个致密体,显然是质体球。对分离的质体的酶促能力的研究表明,磷酸丙糖异构酶和NAD-甘油醛3-磷酸脱氢酶(GAPDH)的活性,但NADP-GAPDH,3-磷酸甘油酸激酶,果糖-1,6 P_2醛缩酶,果糖1,6 P_2未检测到磷酸酶和苹果酸脱氢酶。这些发现得到糖磷酸代谢的质体特异性和胞质特异性同工酶的模式的支持,并表明异养的G. sulfuraria 107.79细胞不仅失去了光合作用,而且在去分化质体细胞器中的酶补体也大大减少。

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