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111.
Pawlowski J; Bolivar I; Fahrni JF; Cavalier-Smith T; Gouy M 《Molecular biology and evolution》1996,13(3):445-450
Foraminifera are one of the largest groups of unicellular eukaryotes with
probably the best known fossil record. However, the origin of foraminifera
and their phylogenetic relationships with other eukaryotes are not well
established. In particular, two recent reports, based on ribosomal RNA gene
sequences, have reached strikingly different conclusions about
foraminifera's evolutionary position within eukaryotes. Here, we present
the complete small subunit (SSU) rRNA gene sequences of three species of
foraminifera. Phylogenetic analysis of these sequences indicates that they
branch very deeply in the eukaryotic evolutionary tree: later than those of
the amitochondrial Archezoa, but earlier than those of the Euglenozoa and
other mitochondria-bearing phyla. Foraminifera are clearly among the
earliest eukaryotes with mitochondria, but because of the peculiar nature
of their SSU genes we cannot be certain that they diverged first, as our
data suggest.
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112.
113.
Heller M Köhler H Rosner H Burkert B Rohrmann B Möller U Thierbach S Kielstein P Müller G 《Mycotoxin Research》2000,16(2):194-198
The murine thymoma cell line EL-4 was used as an in vitro T-cell model to assess the immunomodulating effect of pure Ochratoxin A (OTA) and an Aspergillus ochraceus raw toxin preparation. Cytokine production (IL-2, IL-4, IL-5, IL-6) and cell viability of PMA-stimulated EL-4 cells were investigated in the presence of OTA. The cytotoxic effect of the raw toxin could be observed at lower concentrations than pure OTA. The IC50 values were 3 µg/ml and 11 µg/ml, respectively. Increasing concentrations of both OTA preparations caused an inhibition of cytokine production, but the inhibition effect of the raw toxin was stronger than of pure OTA. This is supposed to be the effect of further up to now not characterized substances in the raw toxin. Differences in the susceptibility of the mechanisms of production and regulation of each cytokine are indicated by the different concentrations for inhibition effects. Both toxin preparations showed also stimulating effects on some cytokines (IL-2 and IL-6) while others (IL-4 and IL-5) were depressed at these OTA concentrations. This indicates the immunomodulating properties of the toxin. 相似文献
114.
Expression of N-linked sialyl Le(x) determinants and O-glycans in the carbohydrate moiety of human amniotic fluid transferrin during pregnancy 总被引:3,自引:0,他引:3
Transferrin, a glycoprotein involved in iron transport in body fluids, was
isolated from amniotic fluid of a hydramniospatient by sequential
anion-exchange chromatography and gel filtration. The N-glycans of human
amniotic fluid transferrin (hAFT) were enzymatically liberated by PNGase-F
digestion, isolated by gel filtration and fractionated by (high-pH)
anion-exchange chromatography. After alkaline borohydride treatment of
native hAFT, the released O-glycans were isolated by gel filtration and
fractionated by anion-exchange chroma-tography. Structure elucidation of 14
N- and 2 O-glycans was performed by 500 or 600 MHz1H-NMR spectroscopy.
Besides conventional N-glycans established earlier for human serum
transferrin (hST), new (alpha1-3)-fucosylated N- glycans were found,
representing sialyl Le(x) elements. Furthermore, as compared to hST, a
higher degree of (alpha1-6)-fucosylation and an increase in branching from
di- to triantennary compounds has been detected. The presence of O-glycans
is demonstrated for the first time in transferrin.
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115.
116.
Avise JC; Shapira JF; Daniel SW; Aquadro CF; Lansman RA 《Molecular biology and evolution》1983,1(1):38-56
We address the problem of the possible significance of biological
speciation to the magnitude and pattern of divergence of asexually
transmitted characters in bisexual species. The empirical data for this
report consist of restriction endonuclease site variability in maternally
transmitted mitochondrial DNA (mtDNA) isolated from 82 samples of
Peromyscus polionotus and P. leucopus collected from major portions of the
respective species' ranges. Data are analyzed together with previously
published information on P. maniculatus, a sibling species to polionotus.
Maps of restriction sites indicate that all of the variation observed can
be reasonably attributed to base substitutions leading to loss or gain of
particular recognition sites. Magnitude of mtDNA sequence divergence within
polionotus (maximum approximately equal to 2%) is roughly comparable to
that observed within any of five previously identified mtDNA assemblages in
maniculatus. Sequence divergence within leucopus (maximum approximately
equal to 4%) is somewhat greater than that within polionotus. Consideration
of probable evolutionary links among mtDNA restriction site maps allowed
estimation of matriarchal phylogenies within polionotus and leucopus.
Clustering algorithms and qualitative Wagner procedures were used to
generate phenograms and parsimony networks, respectively, for the
between-species comparisons. Three simple graphical models are presented to
illustrate some conceivable relationships of mtDNA differentiation to
speciation. In theoretical case I, each of two reproductively defined
species (A and B) is monophyletic in matriarchal genealogy; the common
female ancestor of either species can either predate or postdate the
speciation. In case II, neither species is monophyletic in matriarchal
genotype. In case III, species B is monophyletic but forms a subclade
within A which is thus paraphyletic with respect to B. The empirical
results for mtDNA in maniculatus and polionotus appear to conform closely
to case III. These theoretical and empirical considerations raise a number
of questions about the general relationship of the speciation process to
the evolution of uniparentally transmitted traits. Some of these
considerations are presented, and it is suggested that the distribution
patterns of mtDNA sequence variation within and among extant species should
be of considerable relevance to the particular demographies of speciation.
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