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1 to selection by the filter-feeding predator Paramecium tetraurelia.
2 ncodes K(+)-channel pore-forming subunits in Paramecium tetraurelia.
3 e transcriptome of the intron-rich eukaryote Paramecium tetraurelia.
4 ding proteins were isolated from extracts of Paramecium tetraurelia.
5 ochondrial ATP synthase dimer of the ciliate Paramecium tetraurelia.
6 algal origin in the ciliates Tetrahymena and Paramecium tetraurelia.
7 the maternal inheritance of mating types in Paramecium tetraurelia, a long-standing problem in epige
9 holipid-binding proteins first isolated from Paramecium tetraurelia and found in a wide range of orga
10 analyze the genomes of two ciliate species--Paramecium tetraurelia and Tetrahymena thermophila--that
12 icha trifallax, Tetrahymena thermophila, and Paramecium tetraurelia, but only the Oxytricha lineage h
13 e, we present the 1.0 A crystal structure of Paramecium tetraurelia Ca(2+)-CaM, including 36 discrete
14 plication in the otherwise compact genome of Paramecium tetraurelia displays the early forces driving
15 n of a simple avoidance reaction behavior in Paramecium tetraurelia has shown that ion channels are a
20 s of Tetrahymena thermophila MTA1 (TthMTA1), Paramecium tetraurelia MTA9 (PteMTA9)-TthMTA1 binary com
22 oned and sequenced telomerase RNA genes from Paramecium tetraurelia, P. primaurelia, P. multimicronuc
25 two domains were demonstrated by mutants of Paramecium tetraurelia, some of which have altered calci
26 The error-prone telomerase from the ciliate Paramecium tetraurelia stereotypically misincorporates T
28 es coding for rRNA (ribosomal DNA [rDNA]) of Paramecium tetraurelia, stock 51, are arranged in polyme
30 cloned and sequenced a SEC7-related gene in Paramecium tetraurelia that contains an open reading fra
31 ut here we report a genome-wide estimate for Paramecium tetraurelia that is more than an order of mag
32 fusin, a major phosphoprotein in the ciliate Paramecium tetraurelia that undergoes rapid and massive
33 ental metapopulations of the aquatic protist Paramecium tetraurelia to determine how network topology
34 protein Ezl1 from the unicellular eukaryote Paramecium tetraurelia, which exhibits significant seque