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1 ase (PAL) from Rhodosporidium toruloides and Anabaena variabilis.
2 o acid level with the vnfD gene product from Anabaena variabilis.
3 ntial screen for cold-induced transcripts in Anabaena variabilis.
4 metallo-intramembrane cleaving proteases in Anabaena variabilis.
5 e identified through a genome-wide survey in Anabaena variabilis.
7 reen alga (Ulva pertusa), and cyanobacteria (Anabaena variabilis and Synechococcus) have been investi
8 nd novel MITEs in the two bacterial genomes, Anabaena variabilis ATCC 29413 and Haloquadratum walsbyi
9 time PALs from cyanobacteria, in particular, Anabaena variabilis ATCC 29413 and Nostoc punctiforme AT
16 trogenase in the heterocystous cyanobacteria Anabaena variabilis ATTC 29413 using the acetylene reduc
22 with the calcium-dependent protease PrcA of Anabaena variabilis, HreP forms a new subfamily of bacte
24 characteristics, and efficacy of recombinant Anabaena variabilis phenylalanine ammonia lyase (produce
25 ocytes were loaded with recombinant PAL from Anabaena variabilis (rAvPAL) and their ability to perfor
26 ht to comprise multiple operons; however, in Anabaena variabilis, the promoter for the first gene in
27 og of Hen1 from Clostridium thermocellum and Anabaena variabilis, which are enzymatically indistingui
29 a siderophore pathway in the cyanobacterium Anabaena variabilis, which was shown to be a bona fide D