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1.
W. van Delden  A. Kamping 《Genetica》1980,51(3):179-185
In-vitro alcohol-dehydrogenase assays at 35°C confirmed previous reports that the ADH allozymes in Drosophila melanogaster differed in heat stability in the order SS>FS>FF. Adult mortality at 35°C, however, was not found to be associated with heat stability: mortality of the genotypes decreased in the order null-mutant >SS>FF>FS. Measurements of ADH activity in flies kept for as long as 24 h at 35°C did not show declining ADH activity. It was further found that NAD+ addition to homogenates increased in-vitro heat stability considerably, though the allozymes profited differentially, depending on NAD+ concentration. The relevance of the in vitro measurements to the in vivo situation is discussed in relation to the maintenance of the Adh polymorphism.  相似文献   

2.
The cellar population of Drosophila melanogaster at the Chateau Tahbilk Winery (Victoria, Australia) was perturbed for alcohol dehydrogenase (Adh) gene frequencies. Phenol oxidase (Phox) frequencies were also perturbed and monitored as a control. Subsequent gene frequency changes, together with information on population structure, indicated that selection acted on the chromosome regions of both loci. Adh gene frequencies returned to preperturbation levels in a predictable manner. A model in which the relative fitness of Adh phenotypes was determined by temperature-dependent specific activities of enzymes of Adh genotypes adequately accounts for the rate of gene frequency change at this locus. Thus temperature behaves as a selective agent in modulating Adh gene frequencies in this cellar environment.  相似文献   

3.
Individuals of an alcohol dehydrogenase-negative strain of Drosophila melanogaster designated Adh n5 are resistant to ethanol poisoning at low but not at high temperatures. The basis for this behavior is that Adh n5 flies contain a mutant form of alcohol dehydrogenase which is less heat stable than that of wild-type flies. The mutation in Adh n5 maps at, or very close to, the presumptive structural locus and is not complemented by any of 11 other alcohol dehydrogenase-null mutants.This research was supported by Grant No. GM 18254 from the National Institutes of Health and Grant No. M55.2217 from the National Cancer Institute.Publication No. 768 from the Department of Biology, Johns Hopkins University.  相似文献   

4.
Ten Indian geographical populations of D. melanogaster were assayed electrophoretically for Adh genic variation. The Indian geographical populations of D. melanogaster revealed significant clinal variation (3 % for 1 d? latitude) at Adh locus and AdhF allelic frequency correlated significantly with increase in latitude. It was suggested that the abundance of secondary alcohols in the southern Indian tropical and humid environment might exert selective pressure favouring higher frequency of AdhS allele. Patterns of ethanol utilization as well as ethanol tolerance were analyzed in larval and adult individuals of six geographical populations of D. melanogaster. Latitudinal variation in ethanol tolerance was observed in D. melanogaster populations from India. The parallel occurrence of latitudinal variation it Adh locus as well as ethanol tolerance in Indian geographical populations of D. melanogaster could be maintained by balancing natural selection varying spatially along the north-south axis of the Indian sub-continent.  相似文献   

5.
Chambers  G. K. 《Biochemical genetics》1984,22(5-6):529-549
Alcohol dehydrogenase has been purified from Drosophila melanogaster lines bearing the Adh F, AdhS, and Adh FCh.D. alleles. Biochemical investigations show that the properties of the purified enzymes are very similar to those of crude enzyme extracts except that the pure enzymes are more heat stable. ADH-FCh.D. resembles ADH-S very closely in specific activity, substrate specificity, and a number of kinetic parameters including limiting values for K m(app.) for ethanol. However, it is considerably more heat stable than either of the two common variants. ADH-F differs from ADH-S and ADH-FCh.D. particularly with regard to the rate of oxidation of secondary alcohols. Atomic absorbtion spectroscopy shows that all three allozymes lack zine or other divalent cations as active-site components. Peptide mapping experiments identify one very active cysteinyl residue; and amide residues in the NAD+ binding domain.  相似文献   

6.
Among the progeny of Drosophila flies heterozygous for two noncomplementing Adh-negative alleles, two individuals were found that had recovered appreciable alcohol dehydrogenase activity, thereby surviving the ethanol medium used as a screen. The most likely explanation is that these Adh-positive flies are the product of intracistronic recombination within the Adh locus. Judging by the distribution of outside markers, one of the crossovers would have been a conventional reciprocal exchange while the other appears to have been an instance of nonreciprocal recombination. The enzymes produced in strains derived from the original survivors can be easily distinguished from wild-type enzymes ADH-S and ADH-F on the basis of their sensitivity to denaturing agents. None of various physical and catalytic properties tested revealed differences between the enzymes of the survivor strains except that in one of them the level of activity is 55–65% of the other. Quantitative immunological determinations of ADH gave estimates of enzyme protein which are proportional to the measured activity levels. These results are interpreted to indicate that different amounts of ADH protein are being accumulated in the two strains.This work was supported in part by NSF Grant PCM 76-19563.  相似文献   

7.
Alcohol dehydrogenase (ADH) activity variation in male flies taken directly from seven natural populations ofDrosophila melanogaster is largely accounted for by segregation of alleles at theAdh structural gene locus. There was little overlap in the ADH activities ofAdh F andAdh s homozygotes. Body weights varied only slightly betweenAdh genotypes and contributed little to ADH variation. Between and within population variation in ADH activity and ADH protein in flies in the wild is mainly due to the relative frequencies ofAdh F andAdh s.  相似文献   

8.
A concerted effort is under way to analyze, at the genetic, biochemical, and molecular level, theAdh gene system in the medflyCeratitis capitata, an important agricultural pest. The isoelectric focusing (IEF) pattern of alcohol dehydrogenase (ADH) of the medfly demonstrates the presence of two well-differentiated, genetically independent dimeric proteins, called ADH-1 and ADH-2. These proteins do not exhibit interlocus heterodimeric isozymes, and the genes are not controlled coordinately during development,Adh 1 andAdh 2 being expressed mainly in muscle or in fat body and ovary, respectively. From the intensity of the IEF isozyme patterns, primary alcohols are judged to be better substrates than secondary alcohols, in contrast withDrosophila melanogaster ADH, and ethanol is probably the most efficient substrate for both sets of isozymes. The isoelectric points of ADH-1 (pI=5.4) and ADH-2 (pI=8.6) are different fromD. melanogaster ADH (pI=7.6), but the medfly ADH-1 has a native molecular weight (approx. 58 kD) close to that ofD. melanogaster. A population survey of samples both from laboratory strains and from wild geographically different populations showed that theAdh 1 locus is more polymorphic thanAdh 2. The most variable populations are from Africa, the supposed source area of the species. Further, a case of selection at theAdh 1 locus under laboratory conditions is reported. The hypothesis ofAdh gene duplication and the degree of similarity between medfly andDrosophila ADH are also discussed. This research was supported mainly by National Research Council of Italy, Special Project RAISA, Sub-project No. 2, Paper No. 342. Grants from the International Atomic Energy Agency, Vienna, Austria, from European Communities Commission, Second R & D Programme, “Science and Technology for Development,” and from the Italian Ministry of University and Scientific Research and Technology (“Funds 40%”) also supported this work. This paper was written when the senior author was on leave of absence at the IMBB, Crete, Greece; he was financially supported by an ECC Senior Fellowship.  相似文献   

9.
Gene and gametic frequencies of theAdh, Aox, α-Gpdh andEst-6 loci (map position: II-50.I, III-56.6, II-20.5 and III-36.0 respectively) have been studied in two wine cellar populations at 40 km distance from each other, and two field populations, one near each of the wine cellars. Only one locus,Aox was polymorphic for more than two electromorphs. TheAdh locus seems to follow a different mode of change in genic frequencies in wine cellars, than in the field, while the other loci exhibit a similar pattern of polymorphism in the field and in the wine cellar. Linkage disequilibrium in the gameteAdh/α-Gpdh is affected by different phenomena in the field than in the wine cellar. A stronger linkage disequilibrium in theAdh/gametes observed in the field, may be a consequence of a mixture of subpopulations subjected to differential selection at theAdh locus. TheAdh locus is the only one in which selection is detected in one environment. It is neutral in other environments. Theα-Gpdh, Aox andEst-6 polymorphisms, however, behave as though they were neutral both in the wine cellar and in the field.  相似文献   

10.
A locus has been found, an allele of which causes a modification of some allozymes of the enzyme esterase 6 in Drosophila melanogaster. There are two alleles of this locus, one of which is dominant to the other and results in increased electrophoretic mobility of affected allozymes. The locus responsible has been mapped to 3-56.7 on the standard genetic map (Est-6 is at 3-36.8). Of 13 other enzyme systems analyzed, only leucine aminopeptidase is affected by the modifier locus. Neuraminidase incubations of homogenates altered the electrophoretic mobility of esterase 6 allozymes, but the mobility differences found are not large enough to conclude that esterase 6 is sialylated.This work was supported by NIH Grant No. GM23706 and PHS Grant SO7RR7031 to Rollin C. Richmond and by NIH Genetics Training Grant No. 82 to Indiana University.  相似文献   

11.
Four Drosophila melanogaster strains, each homozygous for one of the two major ADH aliozymes, Fast and Slow (Adh F1, Adh S , Adh F2 and Adh S2) were used to study the interaction of the Adh locus with ethanol and temperature. The separate and especially the combined effects of these two parameters allow the conclusion that the Adh locus of D. melanogaster intervenes in the adaptation process through the heat shock protein system.  相似文献   

12.
The Adh and αGpdh allozyme loci (both located on the second chromosome) showed considerable fluctuations in allele frequencies in a seminatural population of Drosophila melanogaster during 1972–97. Both long-term and short-term fluctuations were observed. The short-term fluctuations occurred within almost all years and comparison of allele frequencies between winters and summers showed significantly higher AdhS (P < 0.001) and αGpdhF (P < 0.01) allele frequencies in summers. Frequencies of these alleles were significantly positively correlated with environmental temperature, suggesting the adaptive significance of these allozyme polymorphisms. Frequency changes of the Odh locus (located on the third chromosome) showed no seasonal pattern and were not correlated with environmental temperature. Almost all short-term and long-term increases in AdhS frequency were accompanied by a corresponding decrease in αGpdhS frequency (r = –0.82, P < 0.001) and vice versa. Further analysis showed that gametic disequilibria between the Adh and αGpdh loci, which frequently occurred, were due to the presence of inversion In(2L)t located on the same chromosome arm and In(2L)t frequencies were positively correlated with environmental temperature. Gametic disequilibria between Adh and Odh and between Odh and αGpdh were hardly observed. Because In(2L)t is exclusively associated with the AdhS/αGpdhF allele combination, the observed correlated response in Adh/αGpdh allele frequencies is (at least partly) explained by hitchhiking effects with In(2L)t. This means that the adaptive value of the allozyme polymorphisms has been overestimated by ignoring In(2L)t polymorphism. Fluctuations in Adh allele frequencies are fully explained by selection on In(2L)t polymorphism, whereas we have shown that αGpdh frequency fluctuations are only partly explained by chromosomal hitchhiking, indicating the presence of selective differences among αGpdh genotypes in relation with temperature and independent of In(2L)t. Frequency fluctuations of αGpdh and In(2L)t are consistent with their latitudinal distributions, assuming that temperature is the main environmental factor varying with latitude that causes directly or indirectly these frequency distributions. However, the results of the tropical greenhouse population show no correlation of Adh (independent of In(2L)t) and Odh allele frequencies with environmental temperature, which may indicate that the latitudinal distribution in allele frequencies for these loci is not the result of selection on the F/S polymorphism in a direct way.  相似文献   

13.
A rapid and reproducible enzymatic rate assay for the quantitative determination of the concentration of active sites is presented for the alleloenzymes AdhS and AdhF from Drosophila melanogaster. Using this procedure the turnover numbers as catalytic-center activities were found to be 12.2 sec–1 for AdhF and 3.4 sec–1 for AdhS with secondary alcohols. This showed a slower dissociation of the coenzyme from the binary enzyme-NADH complex with AdhS and hence a stronger binding of NADH to this alleloenzyme. With ethanol, the catalytic-center activity was 1.4 sec–1 for AdhS and 2.8 sec–1 for AdhF, and hence the single amino acid mutation distinguishing the two alleloenzymes also affected hydride transfer.  相似文献   

14.
A population of diploid potato (Solanum tuberosum) was used for the genetic analysis and mapping of a locus for resistance to the potato cyst nematode Globodera rostochiensis, introgressed from the wild potato species Solanum vernei. Resistance tests of 108 genotypes of a F1 population revealed the presence of a single locus with a dominant allele for resistance to G. rostochiensis pathotype Ro1. This locus, designated GroV1, was located on chromosome 5 with RFLP markers. Fine-mapping was performed with RAPD and SCAR markers. The GroV1 locus was found in the same region of the potato genome as the S. tuberosum ssp. andigena H1 nematode resistance locus. Both resistance loci could not excluded to be allelic. The identification of markers flanking the GroV1 locus offers a valuable strategy for marker-assisted selection for introgression of this nematode resistance.Abbreviations BSA bulked segregant analysis - RAPD random-amplified polymorphic DNA - RFLP restriction fragment length polymorphism - SCAR sequence-characterized amplified region  相似文献   

15.
Drosophila melanogaster larvae were subjected to 10 generations of selection on 6% ethanol at 17, 25, and 30°C. For each temperature there was a significant (P<0.01) increase in the frequency of the Adh isoallele. Controls with no ethanol showed no change in the frequency of the Adh F isoallele. Larvae subjected to stronger selection on 8% ethanol confirmed the results. When adults of various ages were subjected to 16 and 32°C, the ADHF isoenzyme retained its twofold advantage in activity over ADHS regardless of the temperature. The same result was obtained with larvae at 16 and 35°C. Although some effect of temperature was demonstrated, it was concluded that the effect was not strong enough for temperature to be a selective factor under the conditions studied. However, ethanol is a strong selective factor for laboratory populations.  相似文献   

16.
The ADH allozyme pattern was tested in seeds of 1553 varieties of the world collection of safflower (Carthamus tinctorius L.) and 36 collections belonging to 14 wild species of the genus Carthamus L. with different chromosome numbers (n=10, 11, 12, 22, and 32). Two genes, Adh 1 and Adh 2, have been identified. The Adh 1 locus controls the allozyme bands found in the faster-moving anodal zone, and the Adh 2 gene controls the cathodal band. A third group of bands which migrates slowly toward the anode and stains weakly is probably interaction products of the two genes. Two codominant alleles Adh 1 S and Adh 1 F , specifying allozymes with different migration rates in the fast-moving anodal zone, were found in cultivated safflower. The frequency of the Adh 1 F allele was very low. A third homologous allele, Adh 1 T , was present only in the polyploid wild species. The Adh 2 was stable, without any variation in migration rate. In addition to the variation in migration rates, there was also variation in activity levels of the products of both the Adh 1 and Adh 2 genes. The contribution of this study to our understanding of the origin of the polyploid species C. lanatus, C. baeticus, and C. turkestanicus is discussed.This research has been financed in part by a grant made to A. Ashri by the U.S. Department of Agriculture, Agricultural Research Service, authorized by P.L. 480, Project No. A10-CR-18, Grant No. FG-Is-234.Based in part on a thesis submitted by M. P. to the Faculty of Agriculture, The Hebrew University, Rehovot, in partial fulfillment of the requirements for the M.Sc. degree.Graduate Student, Faculty of Agriculture.  相似文献   

17.
The mating ability of the different Adh genotypes of D. melanogaster, from three natural populations, was estimated as the number of females inseminated by a single male in a 24-hour period. The data indicate that populations of D. melanogaster vary in mating properties, but a common tendency was found in all of them: the heterozygous individuals, especially the males, show a relative advantage with respect to homozygotes. On the other hand, our results suggest that the differences in mating patterns observed between populations may be correlated with the different degree of Adh polymorphism found in them.  相似文献   

18.
Data from genetic crosses of Peromyscus maniculatus and P. polionotus suggest that electrophoretic variants of liver alcohol dehydrogenase are coded by alleles at a single locus. These alleles, designated Adh F , Adh S , and Adh N , determine, respectively, the fast, slow, and not detectable (null) ADH electrophoretic phenotypes. Heterozygotes (Adh F /Adh S ) exhibit three bands on zymograms, suggesting a dimeric subunit structure for the enzyme. However, Adh F /Adh N and Adh S /Adh N animals exhibit a single band, suggesting that the Adh N allele does not produce a polypeptide subunit capable of dimerizing into an active molecule. Fast and slow electrophoretic phenotypes exhibit multiple bands which can be converted into single major fast and slow bands, respectively, upon treatment with oxidized or reduced NAD. Addition of NAD also stabilizes both the fast and slow enzyme to heat inactivation at 60 C for at least 30 min.This work was supported by Predoctoral Fellowship AA-05067 from the National Institute of Alcohol Abuse and Alcoholism to K. G. B. and South Carolina Commission on Alcohol and Drug Abuse Grant 7607. Also, partial support was provided by NIH Grant CA-16184.  相似文献   

19.
Small number of Drosophila melanogaster populations from two distinct geographical regions of Turkey, Central Anatolia and Black Sea, were studied. Populations sampled were electrophoresed for a single locus, alcohol dehydrogenase (Adh) to assess population differentiation. Both the magnitude of genetic differentiation levels and the population structure based on hierarchical F-statistics allow populations to be grouped on two genetically divergent area, Central Anatolian and Black Sea. One ecological correlate, average yearly maximum rainfall, R year, seems to track this Adh genetic variation pattern. The study also shows that a typical pattern of geographical Adh polymorphism can emerge with a handfull of populations sampled across a relatively small distance. The text was submitted by the author in English.  相似文献   

20.
A complex study on the adaptation of cn and vn mutants and the allozymes of alcoholdehydrogenase (ADH) was carried out in initially pure lines, and their panmixia populations during exchange of the mutant genotype with that of wild-type flies (C-S) and D) through saturating crossings. The relative adaptation of the genotypes was estimated by their effect on reproductive efficiency in the experimentally obtained population. Fecundity, lifespan, and the resistance of the studied genotypes to hyperthermia were investigated individually. It was shown that the high level of adaptation of the cn mutants and the low level of adaptation of the vg mutants was correlated with the presence of different ADH allozymes. In the studied population, the F-allozyme of ADH accompanied the vg mutation, while the S-allozyme of the enzyme was detected in cn mutants. Saturating crossings of C-S(Adh Svg(Adh F) and D(Adh F) × cn(Adh S), along with the parallel determination of the allele composition of the Adh locus, demonstrated that the complete substitution of the F-allozyme of ADH in the vg mutants by the S-allozyme in D flies, as well as the substitution of the S-allozyme of ADH in the cn mutants by the F-allozyme in D flies was realized only after the 15th–20th backcrosses. These results favor the coadaptation of cn and vg marker genes with alleles of the Adh locus and indicate the important role of the latter in the adaptation of genotypes. In the studied population, selection acted primarily against the vg mutants, which were inferior to the cn mutants, and heterozygote genotypes in indices of the main adaptation components.  相似文献   

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