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Characterization of a Chlamydomonas reinhardtii mutant defective in a maltose transporter

机译:麦芽糖转运蛋白中的衣藻衣藻突变体的表征

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Microalgae are potential sources of energy and high-value materials. To decipher the process of energy metabolism in green algae, we created a mutant pool of strain CC-503 of the model green microalga Chlamydomonas reinhardtii, by random insertion of an antibiotic resistance gene, and screened the pool for lines with altered carbon metabolism. We identified a mutant that harbored the antibiotic resistance gene in CrMEX1, a putative Maltose Exporter-Like protein 1 (Cre12.g486600.t1.2). The mutant had reduced levels of CrMEX1 expression and, similarly to the Arabidopsis mex1 knockout mutant, which cannot export maltose from the chloroplast, it over-accumulated starch granules in the chloroplast. The mutant's lipid levels were slightly higher than those of the wild type, and its initial growth kinetics were not significantly different from those of the wild type, but the mutant culture did not reach the same high cell density as the wild type in acetate-containing culture medium under continuous light. These results suggest that CrMEX1 encodes a maltose transporter protein, and that export of photoassimilates from chloroplasts is necessary for normal Chlamydomonas growth, even under continuous light with an ample supply of carbon in the form of acetate.
机译:微藻是能源和高价值材料的潜在来源。为了破译绿藻中的能量代谢过程,我们通过随机插入抗生素抗性基因,创建了绿色微藻莱茵衣藻模型CC-503菌株的突变池,并筛选了碳代谢发生变化的株系。我们确定了一个突变体,该突变体在CrMEX1(一种假定的麦芽糖出口商样蛋白1(Cre12.g486600.t1.2))中具有抗生素抗性基因。该突变体的CrMEX1表达水平降低,并且类似于拟南芥mex1敲除突变体(该突变体无法从叶绿体中输出麦芽糖),它在叶绿体中的淀粉颗粒过度积聚。突变体的脂质水平略高于野生型,并且其初始生长动力学与野生型没有显着差异,但是突变体培养物在含乙酸盐的条件下没有达到与野生型相同的高细胞密度培养基在连续光照下。这些结果表明,CrMEX1编码麦芽糖转运蛋白,并且即使在持续光照下以乙酸盐形式充足供应碳的情况下,叶绿体中光同化物的出口对于正常衣藻的生长也是必需的。

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