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Rubisco Activase Is Required for Optimal Photosynthesis in the Green Alga Chlamydomonas reinhardtii in a Low-CO2 Atmosphere

机译:在低CO2气氛下绿藻莱茵衣藻的最佳光合作用需要Rubisco活化酶。

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摘要

This report describes a Chlamydomonas reinhardtii mutant that lacks Rubisco activase (Rca). Using the BleR (bleomycin resistance) gene as a positive selectable marker for nuclear transformation, an insertional mutagenesis screen was performed to select for cells that required a high-CO2 atmosphere for optimal growth. The DNA flanking the BleR insert of one of the high-CO2-requiring strains was cloned using thermal asymmetric interlaced-polymerase chain reaction and inverse polymerase chain reaction and sequenced. The flanking sequence matched the C. reinhardtii Rca cDNA sequence previously deposited in the National Center for Biotechnology Information database. The loss of a functional Rca in the strain was confirmed by the absence of Rca mRNA and protein. The open reading frame for Rca was cloned and expressed in pSL18, a C. reinhardtii expression vector conferring paromomycin resistance. This construct partially complemented the mutant phenotype, supporting the hypothesis that the loss of Rca was the reason the mutant grew poorly in a low-CO2 atmosphere. Sequencing of the C. reinhardtii Rca gene revealed that it contains 10 exons ranging in size from 18 to 470 bp. Low-CO2-grown rca1 cultures had a growth rate and maximum rate of photosynthesis 60% of wild-type cells. Results obtained from experiments on a cia5 rca1 double mutant also suggest that the CO2-concentrating mechanism partially compensates for the absence of an active Rca in the green alga C. reinhardtii.
机译:该报告描述了缺乏Rubisco激活酶(Rca)的莱茵衣藻突变体。使用Ble R (博来霉素抗性)基因作为核转化的阳性选择标记,进行了插入诱变筛选,以选择需要高CO2气氛以实现最佳生长的细胞。使用热不对称交错聚合酶链反应和逆聚合酶链反应,克隆了其中一株高CO2菌株的Ble R 插入片段两侧的DNA,并进行了测序。侧翼序列与先前保存在国家生物技术信息中心数据库中的莱茵衣藻Rca cDNA序列匹配。通过不存在Rca mRNA和蛋白质来证实菌株中功能性Rca的损失。克隆Rca的开放阅读框并在pSL18中表达,pSL18是赋予巴龙霉素抗性的莱茵衣藻表达载体。该构建体部分补充了突变体表型,支持了以下假设:Rca的损失是突变体在低CO2气氛下生长较差的原因。 reinhardtii Cca Rca基因的测序表明,它包含10个外显子,大小从18到470 bp不等。低CO2生长的rca1培养物具有60%野生型细胞的生长速率和最大光合作用速率。从cia5 rca1双突变体的实验获得的结果还表明,CO2浓缩机制可部分补偿绿藻莱茵衣藻中不存在活性Rca。

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