Johnson T R, Haynes J I, Wealand J L, Yarbrough L R, Hirschberg R
School of Basic Life Sciences, University of Missouri-Kansas City 64110.
J Bacteriol. 1988 Apr;170(4):1858-65. doi: 10.1128/jb.170.4.1858-1865.1988.
Gene clones encoding phycocyanin and allophycocyanin were isolated from an Anabaena variabilis ATCC 29413-Charon 30 library by using the phycocyanin (cpc) genes of Agmenellum quadruplicatum and the allophycocyanin (apc) genes of Cyanophora paradoxa as heterologous probes. The A. variabilis cpcA and cpcB genes occur together in the genome, as do the apcA and apcB genes; the two sets of genes are not closely linked, however. The cpc and apc genes appear to be present in only one copy per genome. DNA-RNA hybridization analysis showed that expression of the cpc and apc genes is greatly decreased during nitrogen starvation; within 1 h no cpc or apc mRNA could be detected. The source of nitrogen for growth did not influence expression of the genes; vegetative cells from nitrogen-fixing and ammonia-grown cultures had approximately the same levels of cpc and apc mRNAs. Heterocysts had less than 5% as much cpc mRNA as vegetative cells from nitrogen-fixing cultures. Northern hybridization (RNA blot) analysis showed that the cpc genes are transcribed to give an abundant 1.4-kilobase (kb) RNA as well as two less prominent 3.8- and 2.6-kb species. The apc genes gave rise to two transcripts, a 1.4-kb predominant RNA and a minor 1.75-kb form.
通过使用四聚鱼腥藻的藻蓝蛋白(cpc)基因和蓝氏拟甲藻的别藻蓝蛋白(apc)基因作为异源探针,从多变鱼腥藻ATCC 29413-卡隆30文库中分离出编码藻蓝蛋白和别藻蓝蛋白的基因克隆。多变鱼腥藻的cpcA和cpcB基因在基因组中共同存在,apcA和apcB基因也是如此;然而,这两组基因并非紧密连锁。cpc和apc基因似乎在每个基因组中仅存在一个拷贝。DNA-RNA杂交分析表明,在氮饥饿期间,cpc和apc基因的表达大大降低;在1小时内,无法检测到cpc或apc mRNA。生长的氮源不影响基因的表达;来自固氮培养物和氨培养物的营养细胞具有大致相同水平的cpc和apc mRNA。异形胞的cpc mRNA含量不到固氮培养物中营养细胞的5%。Northern杂交(RNA印迹)分析表明,cpc基因转录产生一种丰富的1.4千碱基(kb)RNA以及另外两种不太明显的3.8 kb和2.6 kb的RNA。apc基因产生两种转录本,一种1.4 kb的主要RNA和一种次要的1.75 kb形式。