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1.
Molecular evolution of nitrate reductase genes 总被引:9,自引:0,他引:9
To understand the evolutionary mechanisms and relationships of nitrate reductases (NRs), the nucleotide sequences encoding
19 nitrate reductase (NR) genes from 16 species of fungi, algae, and higher plants were analyzed. The NR genes examined show
substantial sequence similarity, particularly within functional domains, and large variations in GC content at the third codon
position and intron number. The intron positions were different between the fungi and plants, but conserved within these groups.
The overall and nonsynonymous substitution rates among fungi, algae, and higher plants were estimated to be 4.33 × 10−10 and 3.29 × 10−10 substitutions per site per year. The three functional domains of NR genes evolved at about one-third of the rate of the N-terminal
and the two hinge regions connecting the functional domains. Relative rate tests suggested that the nonsynonymous substitution
rates were constant among different lineages, while the overall nucleotide substitution rates varied between some lineages.
The phylogenetic trees based on NR genes correspond well with the phylogeny of the organisms determined from systematics and
other molecular studies. Based on the nonsynonymous substitution rate, the divergence time of monocots and dicots was estimated
to be about 340 Myr when the fungi–plant or algae–higher plant divergence times were used as reference points and 191 Myr
when the rice–barley divergence time was used as a reference point. These two estimates are consistent with other estimates
of divergence times based on these reference points. The lack of consistency between these two values appears to be due to
the uncertainty of the reference times.
Received: 10 April 1995 / Accepted: 10 September 1995 相似文献
2.
3.
Drosophila ananassae is known to produce numerous alpha-amylase variants. We have cloned seven different Amy genes in an African strain homozygous for the AMY1,2,3,4 electrophoretic pattern. These genes are organized as two main clusters:
the first one contains three intronless copies on the 2L chromosome arm, two of which are tandemly arranged. The other cluster,
on the 3L arm, contains two intron-bearing copies. The amylase variants AMY1 and AMY2 have been assigned to the intronless
cluster, and AMY3 and AMY4 to the second one. The divergence of coding sequences between clusters is moderate (6.1% in amino
acids), but the flanking regions are very different, which could explain their differential regulation. Within each cluster,
coding and noncoding regions are conserved. Two very divergent genes were also cloned, both on chromosome 3L, but very distant
from each other and from the other genes. One is the Amyrel homologous (41% divergent), the second one, Amyc1 (21.6% divergent) is unknown outside the D. ananassae subgroup. These two genes have unknown functions.
Received: 30 May 2000 / Accepted: 17 July 2000 相似文献
4.
Murid rodents show much less variation in isochore base composition than do most other mammals, a difference which has been
referred to as the murid shift. We have investigated the murid shift by asking (1) whether the murid shift is ongoing and
(2) whether there is any evidence of selection or biased gene conversion affecting base composition in the present-day mouse
genome. By estimating the ancestral base composition of protein-coding genes in murids we can confirm that the murid shift
is ongoing. Tests using nongenic polymorphism data fail to reject the hypothesis that base composition is due to mutation
bias alone. However, the patterns of compositional change suggested by the polymorphism and divergence data differ, suggesting
the possibility of two murid shifts. 相似文献
5.
Alessandro Terrinoni Carmen Di Franco Patrizio Dimitri Nikolaj Junakovic 《Journal of molecular evolution》1997,45(2):145-153
The intragenomic location of the elements of the I, G, jockey, F, and Doc transposon families has been studied by the Southern
blot analysis, in 12 laboratory Drosophila melanogaster stocks. Elements located in euchromatin, heterochromatin, and on the Y chromosome are identified, and their stability has
been assessed by comparing the autoradiographs detected in different stocks and analysis of individual flies. Evidence is
shown suggesting that preferential location in euchromatin or heterochromatin and the distribution within heterochromatin
are distinctive of transposon families. Elements located in heterochromatin can be unstable. These results are discussed in
the context of the relationship between transposable elements and the host genome.
Received: 21 August 1996 / Accepted: 24 March 1997 相似文献
6.
Drouin G 《Journal of molecular evolution》2002,54(1):138-139
Molecular genetics studies often infer the occurrence of gene conversion events based on simple sequence similarity observations
that do not include any statistical analyses. I show that the statistical significance of two previously proposed gene conversion
events can easily be tested and point out that a variety of methods are available to perform gene conversion analyses.
Received: 6 June 2001 / Accepted: 22 June 2001 相似文献
7.
The intron positions of ten different protein families were examined to determine (the statistical likelihood of) whether
spliceosomal introns are the result of random insertion events into previously intronless genes, on the one hand, or the result
of random loss from common ancestral introns, on the other. The number of expected matches for the alternative scenarios was
calculated for a binomial distribution by considering currently observed introns relative to all possible locations for insertion
or loss. Introns occurring at approximately the same location (hereafter called a ``match') were tallied for each of the
paired proteins. Matches were identified by their positions in the multiple alignment and were defined as any two introns
occurring within a window of 11 possible nucleotide positions, thereby allowing for possible alignment errors and ``intron
sliding.' Matches were tallied from the raw data and compared with the expected number of matches for the two different scenarios.
The results suggest that the distribution of introns in genes encoding proteins is due to random insertion and not random
loss.
Received: 8 September 1996 / Accepted: 24 January 1997 相似文献
8.
Diversity, Distribution, and Ancient Taxonomic Relationships Within the TIR and Non-TIR NBS-LRR Resistance Gene Subfamilies 总被引:1,自引:0,他引:1
Cannon SB Zhu H Baumgarten AM Spangler R May G Cook DR Young ND 《Journal of molecular evolution》2002,54(4):548-562
Phylogenetic relationships among the NBS-LRR (nucleotide binding site–leucine-rich repeat) resistance gene homologues (RGHs)
from 30 genera and nine families were evaluated relative to phylogenies for these taxa. More than 800 NBS-LRR RGHs were analyzed,
primarily from Fabaceae, Brassicaceae, Poaceae, and Solanaceae species, but also from representatives of other angiosperm
and gymnosperm families. Parsimony, maximum likelihood, and distance methods were used to classify these RGHs relative to
previously observed gene subfamilies as well as within more closely related sequence clades. Grouping sequences using a distance
cutoff of 250 PAM units (point accepted mutations per 100 residues) identified at least five ancient sequence clades with
representatives from several plant families: the previously observed TIR gene subfamily and a minimum of four deep splits
within the non-TIR gene subfamily. The deep splits in the non-TIR subfamily are also reflected in comparisons of amino acid
substitution rates in various species and in ratios of nonsynonymous-to-synonymous nucleotide substitution rates (K
A/K
S values) in Arabidopsis thaliana. Lower K
A/K
S values in the TIR than the non-TIR sequences suggest greater functional constraints in the TIR subfamily. At least three
of the five identified ancient clades appear to predate the angiosperm–gymnosperm radiation. Monocot sequences are absent
from the TIR subfamily, as observed in previous studies. In both subfamilies, clades with sequences separated by approximately
150 PAM units are family but not genus specific, providing a rough measure of minimum dates for the first diversification
event within these clades. Within any one clade, particular taxa may be dramatically over- or underrepresented, suggesting
preferential expansions or losses of certain RGH types within particular taxa and suggesting that no one species will provide
models for all major sequence types in other taxa.
Received: 13 June 2001 / Accepted: 22 October 2001 相似文献
9.
Analysis of DNA sequences of 132 introns and 140 exons from 42 pairs of orthologous genes of mouse and rat was used to compare
patterns of evolutionary change between introns and exons. The mean of the absolute difference in length (measured in base
pairs) between the two species was nearly five times as high in the case of introns as in the case of exons. The average rate
of nucleotide substitution in introns was very similar to the rate of synonymous substitution in exons, and both were about
three times the rate of substitution at nonsynonymous sites in exons. G+C content of introns and exons of the same gene were
correlated; but mean G+C content at the third positions of exons was significantly higher than that of introns or positions
1–2 of exons from the same gene. G+C content was conserved over evolutionary time, as indicated by strong correlations between
mouse and rat; but the change in G+C content was greatest at position 3 of exons, intermediate in introns, and lowest at positions
1–2 in introns.
Received: 23 December 1996 / Accepted: 1 April 1997 相似文献
10.
François Agnès Marguerite-Marie Toux Catherine André Francis Galibert 《Journal of molecular evolution》1997,45(1):43-49
Receptor tyrosine kinases with five, seven, and three Ig-like domains in their extracellular region are grouped in subclasses
IIIa, IIIb, and IIIc, respectively. Here, we describe the genomic organization of the extracellular coding region of the human FGFR4 (IIIc) and FLT4 (IIIb) genes and compare it to that of the human FGFR1(IIIc), KIT, and FMS (IIIa). The results show that while genes belonging to the same subclass have an identical exon/intron structure in their extracellular
coding region—as they do in their intracellular coding region—genes of related subclasses only have a similar exon/intron
structure. These results strongly support the hypothesis that the genes of the three subclasses evolved from a common ancestor
by duplications involving entire genes, already in pieces. Hypotheses on the origin of introns and on the difference in the
number of extracellular Ig-like domains in the three gene subclasses are discussed.
Received: 19 August 1996 / Accepted: 2 January 1997 相似文献
11.
Synonymous substitution rates in mitochondrial and nuclear genes of Drosophila were compared. To make accurate comparisons, we considered the following: (1) relative synonymous rates, which do not require
divergence time estimates, should be used; (2) methods estimating divergence should take into account base composition; (3)
only very closely related species should be used to avoid effects of saturation; (4) the heterogeneity of rates should be
examined. We modified the methods estimating synonymous substitution numbers to account for base composition bias. By using
these methods, we found that mitochondrial genes have 1.7–3.4 times higher synonymous substitution rates than the fastest
nuclear genes or 4.5–9.0 times higher rates than the average nuclear genes. The average rate of synonymous transversions was
2.7 (estimated from the melanogaster species subgroup) or 2.9 (estimated from the obscura group) times higher in mitochondrial genes than in nuclear genes. Synonymous transversions in mitochondrial genes occurred
at an approximately equivalent rate to those in the fastest nuclear genes. This last result is not consistent with the hypothesis
that the difference in turnover rates between mitochondrial and nuclear genomes is the major factor determining higher synonymous
substitution rates in mtDNA. We conclude that the difference in synonymous substitution rates is due to a combination of two
factors: a higher transitional mutation rate in mtDNA and constraints on nuclear genes due to selection for codon usage.
Received: 27 November 1996 / Accepted: 8 May 1997 相似文献
12.
Liao D 《Journal of molecular evolution》2000,51(4):305-317
Multiple copies of a given ribosomal RNA gene family undergo concerted evolution such that sequences of all gene copies are
virtually identical within a species although they diverge normally between species. In eukaryotes, gene conversion and unequal
crossing over are the proposed mechanisms for concerted evolution of tandemly repeated sequences, whereas dispersed genes
are homogenized by gene conversion. However, the homogenization mechanisms for multiple-copy, normally dispersed, prokaryotic
rRNA genes are not well understood. Here we compared the sequences of multiple paralogous rRNA genes within a genome in 12
prokaryotic organisms that have multiple copies of the rRNA genes. Within a genome, putative sequence conversion tracts were
found throughout the entire length of each individual rRNA genes and their immediate flanks. Individual conversion events
convert only a short sequence tract, and the conversion partners can be any paralogous genes within the genome. Interestingly,
the genic sequences undergo much slower divergence than their flanking sequences. Moreover, genomic context and operon organization
do not affect rRNA gene homogenization. Thus, gene conversion underlies concerted evolution of bacterial rRNA genes, which
normally occurs within genic sequences, and homogenization of flanking regions may result from co-conversion with the genic
sequence.
Received: 31 March 2000 / Accepted: 15 June 2000 相似文献
13.
Fabienne Chalvet Carmen di Franco Alessandro Terrinoni Alain Pelisson Nikolaj Junakovic Alain Bucheton 《Journal of molecular evolution》1998,46(4):437-441
Gypsy is an endogenous retrovirus present in the genome of Drosophila melanogaster. This element is mobilized only in the progeny of females which contain active gypsy elements and which are homozygous for permissive alleles of a host gene called flamenco (flam). Some data strongly suggest that gypsy elements bearing a diagnostic HindIII site in the central region of the retrovirus body represent a subfamily that appears to be much more active than elements
devoid of this site. We have taken advantage of this structural difference to assess by the Southern blotting technique the
genomic distribution of active gypsy elements. In some of the laboratory Drosophila stocks tested, active gypsy elements were found to be restricted to the Y chromosome. Further analyses of 14 strains tested for the permissive vs. restrictive
status of their flamenco alleles suggest that the presence of permissive alleles of flam in a stock tends to be associated with the confinement of active gypsy elements to the Y chromosome. This might be the result of the female-specific effect of flamenco on gypsy activity.
Received: 13 June 1997 / Accepted: 27 August 1997 相似文献
14.
Fernando Alvarez-Valin Kamel Jabbari Nicolas Carels Giorgio Bernardi 《Journal of molecular evolution》1999,49(3):330-342
In this work, we have investigated the relationships between synonymous and nonsynonymous rates and base composition in coding
sequences from Gramineae to analyze the factors underlying the variation in substitutional rates. We have shown that in these genes the rates of nucleotide
divergence, both synonymous and nonsynonymous, are, to some extent, dependent on each other and on the base composition. In
the first place, the variation in nonsynonymous rate is related to the GC level at the second codon position (the higher the
GC2 level, the higher the amino acid replacement rate). The correlation is especially strong with T2, the coefficients being significant in the three data sets analyzed. This correlation between nonsynonymous rate and base
composition at the second codon position is also detectable at the intragenic level, which implies that the factors that tend
to increase the intergenic variance in nonsynonymous rates also affect the intragenic variance. On the other hand, we have
shown that the synonymous rate is strongly correlated with the GC3 level. This correlation is observed both across genes and at the intragenic level. Similarly, the nonsynonymous rate is also
affected at the intragenic level by GC3 level, like the silent rate. In fact, synonymous and nonsynonymous rates exhibit a parallel behavior in relation to GC3 level, indicating that the intragenic patterns of both silent and amino acid divergence rates are influenced in a similar
way by the intragenic variation of GC3. This result, taken together with the fact that the number of genes displaying intragenic correlation coefficients between
synonymous and nonsynonymous rates is not very high, but higher than random expectation (in the three data sets analyzed),
strongly suggests that the processes of silent and amino acid replacement divergence are, at least in part, driven by common
evolutionary forces in genes from Gramineae.
Received: 2 July 1998 / Accepted: 18 April 1999 相似文献
15.
While globin genes ctt-2β and ctt-9.1 in Chironomus thummi thummi each have a single intron, all of the other insect globin genes reported so far are intronless. We analyzed four globin genes
linked to the two intron-bearing genes in C. th. thummi. Three have a single intron at the same position as ctt-2β and ctt-9.1; the fourth is intronless and lies between intron bearing genes. Finally, in addition to its intron, one gene (ctt-13RT) was recently interrupted by retrotransposition. Phylogenetic analyses show that the six genes in C. th. thummi share common ancestry with five globin genes in the distantly related species C. tentans, and that a 5-gene ancestral cluster predates the divergence of the two species. One gene in the ancestral cluster gave rise
to ctn-ORFB in C. tentans, and duplicated in C. th. thummi to create ctt-11 and ctt-12. From parsimonious calculations of evolutionary distances since speciation, ctt-11, ctt-12, and ctn-ORFB evolved rapidly, while ctn-ORFE in C. tentans evolved slowly compared to other globin genes in the clusters. While these four globins are under selective pressure, we
suggest that most chironomid globin genes were not selected for their unique function. Instead, we propose that high gene
copy number itself was selected because conditions favored organisms that could synthesize more hemoglobin. High gene copy
number selection to produce more of a useful product may be the basis of forming multigene families, all of whose members
initially accumulate neutral substitutions while retaining essential function. Maintenance of a large family of globin genes
not only ensured high levels of hemoglobin production, but may have facilitated the extensive divergence of chironomids into
as many as 5000 species.
Received: 31 December 1996 / Accepted: 16 May 1997 相似文献
16.
Alexey Fedorov Larisa Fedorova Valery Starshenko Vadim Filatov Eugeni Grigor'ev 《Journal of molecular evolution》1998,46(3):263-271
Nonrandomness in the intron and exon phase distributions in a sample of 305 human genes has been found and analyzed. It was
shown that exon duplications had a significant effect on the exon phase nonrandomness. All of the nonrandomness is probably
due to both the processes of exon duplication and shuffling. A quantitative estimation of exon duplications in the human genome
and their influence on the intron and exon phase distributions has been analyzed. According to our estimation, the proportion
of duplicated exons in the human genome constitutes at least 6% of the total. Generalizing the particular case of exon duplication
to the more common event of exon shuffling, we modeled and analyzed the influence of exon shuffling on intron phase distribution.
Received: 28 March 1997 / Accepted: 9 July 1997 相似文献
17.
Employing a set of 43 othologous mouse and rat genes, Hughes and Yeager (J. Mol. Evol. 45:125–130, 1997) reported (1) no correlation between synonymous and nonsynonymous rates of nucleotide substitution, (2)
a positive correlation between intronic GC contents (GC
i) and intronic substitution rates (K
i), (3) that the average K
i value was very similar to the average K
s value, and (4) that the compositional correlation between the rat and the mouse genes is stronger at the third codon position
(GC3) than at the first and second codon positions (GC12). We have examined the robustness of these results to alterations in substitution rate estimation protocol, alignment protocol,
and statistical procedure. We find that a significant correlation between K
a and K
s is observed either if a rank correlation statistic is used instead of regression analysis, if one outlier is excluded from
the analysis, or if a regression weighted by gene size is employed. The correlation between K
i and GC
i we find to be sensitive to changes in alignment protocol and disappears on the use of weighted means. The finding that K
s and K
i are approximately the same is dependent on the method for estimating K
s values. Finally, the variance around the regression line of rat GC3 versus mouse GC3 we find to be significantly higher than that in GC12. The source of the discrepancy between this and Hughes and Yeager's result is unclear. The variance around the line for GC4 is higher still, as might be expected. Using a methodology that may be considered preferable to that of Hughes and Yeager,
we find that all four of their results are contradicted. More importantly this analysis reinforces the need for caution in
assembling and analyzing data sets, as the degree of sensitivity to what many might consider minor methodological alterations
is unexpected.
Received: 2 February 1998 / Accepted: 23 March 1998 相似文献
18.
Carmen Di Franco Alessandro Terrinoni Patrizio Dimitri Nikolaj Junakovic 《Journal of molecular evolution》1997,45(3):247-252
The elements of the Bari 1, hobo, and pogo transposon families that are located in euchromatin, heterochromatin, and on the Y chromosome have been identified, and their
stability has been assessed by Southern blot analysis. The fraction of heterochromatic elements appears to be distinctive
of all transposon families tested, except for Bari 1. Evidence for instability of heterochromatic elements is described. The
analysis of unstable elements in different Drosophila stocks suggests that the host genome contributes to the stability/instability of transposon families.
Received: 21 August 1996 / Accepted: 24 March 1997 相似文献
19.
M.K. Tan 《Journal of molecular evolution》1997,44(6):637-645
Studies of the distribution of the three group I introns (intron A, intron T, and intron AT) in the 26S rDNA of Gaeumannomyces graminis had suggested that they were transferred to a common ancestor of G. graminis var. avenae and var. tritici after it had branched off from var. graminis. Intron AT and intron A exhibited vertical inheritance and coevolved in concert with their hosts. Intron loss could occur
after its acquisition. Loss of any one of the three introns could occur in var. tritici whereas only loss of intron T had been found in the majority of var. avenae isolates. The existence of isolates of var. tritici and var. avenae with three introns suggested that intron loss could be reversed by intron acquisition and that the whole process is a dynamic
one. This process of intron acquisition and intron loss reached different equilibrium points for different varieties and subgroups,
which explained the irregular distribution of these introns in G. graminis. Each of the three group I introns was more closely related to other intron sequences that share the same insertion point
in the 26S rDNA than to each other. These introns in distantly related organisms appeared to have a common ancestry. This
system had provided a good model for studies on both the lateral transfer and common ancestry of group I introns in the 26S
rRNA genes.
Received: 17 May 1996 / Accepted: 14 January 1997 相似文献
20.
Base Composition Skews, Replication Orientation, and Gene Orientation in 12 Prokaryote Genomes 总被引:21,自引:0,他引:21
Michael J. McLean Kenneth H. Wolfe Kevin M. Devine 《Journal of molecular evolution》1998,47(6):691-696
Variation in GC content, GC skew and AT skew along genomic regions was examined at third codon positions in completely sequenced
prokaryotes. Eight out of nine eubacteria studied show GC and AT skews that change sign at the origin of replication. The
leading strand in DNA replication is G-T rich at codon position 3 in six eubacteria, but C-T rich in two Mycoplasma species. In M. genitalium the AT and GC skews are symmetrical around the origin and terminus of replication, whereas its GC content variation has been
shown to have a centre of symmetry elsewhere in the genome. Borrelia burgdorferi and Treponema pallidum show extraordinary extents of base composition skew correlated with direction of DNA replication. Base composition skews
measured at third codon positions probably reflect mutational biases, whereas those measured over all bases in a sequence
(or at codon positions 1 and 2) can be strongly affected by protein considerations due to the tendency in some bacteria for
genes to be transcribed in the same direction that they are replicated. Consequently in some species the direction of skew
for total genomic DNA is opposite to that for codon position 3.
Received: 2 February 1998 / Accepted: 15 June 1998 相似文献