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1.
E Lifschytz  D Hareven  A Azriel  H Brodsly 《Cell》1983,32(1):191-199
Drosophila hydei clones representing transcribed middle-repetitive sequences from four of six major lampbrush loops of the Y chromosome were isolated. Sequences homologous to each clone are clustered in a particular locus on the Y chromosome, but additional euchromatic sites were found for one of the transcribed clones. In situ hybridization to lampbrush-loops RNA permitted the identification of clones homologous with the two "nooses" loops on YS and with the "clubs" and "tubular ribbons" on the YL arm. Loop-specific nuclear RNA molecules range in size from 10S to 60S. Loop RNA is accumulated in the nucleus and remains attached to the loops during the course of primary spermatocyte growth. It disappears, however, along with the loop structures, during the first meiotic prophase. The structure and function of the Y chromosome and its lampbrush loops are briefly considered in the light of these findings.  相似文献   

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Characterization of two more X-linked Y-affecting mutations in D. hydei is presented; ms(1) XL24 is less extreme than the previously described mutation, ms(1)XL2, but its general effect on the propagation of Y-lampbrush loops is similar qualitatively; ms(1)XL24 is located at the distal end of the X-chromosome and associated with a suppressor-of-white phenotype. The other X-linked sterile, ms(1)XL4, is the least extreme of the three mutations examined to date. It is recessive, located ca 2 c.o. units to the right of white, and causes different patterns of Y loop response. -- From a comparison of the effects of the three single mutations, as well as from the analysis of the various double-sterile combinations, we surmise that: 1) if specific activator genes for the Y-lampbrush loops do exist, they are not likely to be located on the X-chromosome of Drosophila; 2) every lampbrush loop is composed of several functional repeats, each of which operates when unfolded; 3) the Y-affecting mutations arrest preferentially, but not exclusively or specifically Y-lampbrush loop propagation probably indirectly through their independent metabolic effects. Since the mutations are not specific for germ line cells, and exhibit various pleiotropic effects, especially with regard to viability, they should be considered tissue conditional lethals.  相似文献   

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Summary Deficiencies of the Y chromosome of Drosophila hydei including sites which develop lampbrush loops invariably cause sterility of males. Suppression of loop unfolding in one or more sites equally results in similar morphogenetic defects of spermiogenesis. A variegated type repression of lampbrush loop unfolding observed during the spermatocyte stage results in varying morphogenetic effects on spermiogenesis. This demonstrates the existence of causal relationships between the active phase of Y chromosomal factors in spermatocytes and the differentiation processes in spermatids.In some translocated Y fragments the mode of unfolding of a particular pair of lampbrush loops may be permanently changed. As a result, lampbrush loops of a mutant phenotype are developed. Some alterations of this type are correlated with functional alterations resulting in defective spermiogenesis.Three different fragments of the Y chromosome in which lampbrush loop formation was repressed have been tested for possible reversions of loop suppression by means of X irradiations. In none of the three cases reversion has been detected among two thousand tested chromosomes.To the memory of Karl-Heinz Bier.  相似文献   

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Orilio Leoncini 《Chromosoma》1977,63(4):329-357
Mutations were induced in the Y chromosomal fertility genes of Drosophila hydei by EMS treatment of adult males. Four types of mutants were observed: 1. Sterile mutants without detectable cytological changes in Y chromosomal lampbrush loops. 2. Sterile males with morphologically changed loops. 3. Sterile males where one or several Y chromosomal loops are missing in the spermatocytes. 4. Mutants which are temperature-sensitive for sterility, development of loops or altered loop morphology. In this paper four Y mutants are described which are temperature-sensitive as regards fertility but which show unchanged lampbrush loops. They can be mapped in four different complementation groups. Two of those occur probably in regions of the Y chromosome without cytologically detectable lampbrush loops. All mutations are found in the distal half of the long arm. The temperature-sensitive period occurs during the primary spermatocyte stage and in early spermatid development while the manifestation of the effect occurs postmeiotically. The mutants are further characterized with respect to changes in the ultrastructure of the sperm at the restrictive temperature.  相似文献   

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Summary The function of pairs of translocated fragments of the Y chromosome of Drosophila hydei was tested. As the pairs of fragments together had a complete set of Y chromosomal sites, complementation of their function could be predicted according to results of earlier experiments. In contrast to the earlier experiments the development of lampbrush loops during the spermatocyte stage was blocked in one partner of each combined pair. As a consequence, no complementary effect on spermiogenesis is detectable. The results indicate that the formation of lampbrush loops by seven sites in the Y chromosome is a necessary prerequisite for the normal progress of spermiogenesis. This can be considered as further support of the view that the lampbrush loops in spermatocyte nuclei of Drosophila are phenotypic manifestations of the activity of male fertility factors.Supported by the Deutsche Forschungsgemeinschaft.  相似文献   

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We microdissected a Y chromosomal lampbrush loop pair from primary spermatocyte nuclei of Drosophila hydei and cloned the DNA directly at the microscale. Four of the 12 recombinant DNA clones recovered display in situ hybridization to mitotic metaphase Y chromosomes, preferentially in the chromosomal region identified as the origin of the lampbrush loop pair. All clones, however, also hybridize to autosomal and X chromosomal loci in polytene chromosomes. Y chromosomal DNA sequences of D. hydei again prove to be members of different families of repeated sequences distributed throughout the genome. These microcloning experiments, which were carried out under very unfavourable experimental conditions (low DNA content of the lampbrush loops in the presence of large amounts of RNA) prove that almost any chromosomal structure detected by light microscopy is directly accessible to molecular cloning experiments by micromethods.  相似文献   

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The nuclei of growing spermatocytes in Drosophila hydei and D. neohydei are characterized by the appearance of phase-specific, paired, loop-shaped structures thought to be similar to the loops in lampbrush chromosomes of amphibian oocytes. In X/O-males of D. hydei spermatogenesis is completely blocked before the first maturation division. No spermatozoa are formed in such testes. In the nuclei of X/O-spermatocytes, paired loop formations are absent. This shows the dependence of these chromosomal functional structures upon the Y chromosome. The basis of this dependence could be shown through an investigation of males with two Y chromosomes. All loop pairs are present in duplicate in XYY males. This proves that the intranuclear formations are structural modifications of the Y chromosome itself. These functional structures are species-specific and characteristically different in Drosophila hydei and D. neohydei. Reciprocal species crosses and a backcross showed that the spermatocyte nuclei of all hybrid males possess the functional structures corresponding to the species which donated the Y chromosome. This shows that the morphological character of the functional structures is also determined by the Y chromosome.  相似文献   

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Summary The Y chromosome of Drosophila hydei carries information that is necessary for the development of the spermatozoa. In primary spermatocytes Y chromosomal genes become active: five of the male fertility factors form giant lampbrush loops. Our prior work indicated interactions between the Y chromosomal genes and autosomal loci. It is of interest to identify loci regulating the activity of the Y chromosomal genes. We, therefore, screened a total of about 14,000 chromosomes (X, 2, 3 and 4) for mutations that interfere with the expression of the lampbrush loops. Two mutations with substantial effects on the loop morphology were recovered. One of them, a recessive male sterile mutation (ms (3) 5) on chromosome 3, is described in this paper. Its homozygous state results in a complete absence of all Y chromosomal lampbrush loops at 26° C; at 18° C the loops are formed. Temperature shifts with homozygous males indicate that the function early during the spermatogonial stage is crucial for the development of lampbrush loops in the primary spermatocyte. Meiosis is entirely absent in the male, but normal in females. Females homozygous for ms (3) 5 display a maternal effect, which reduces the viability and fertility of homozygous daughters and produces sons with signs of intersexuality. Linkage studies indicated that the effect on the male germ line and the maternal effects cannot be separated and may hence be induced by a single gene.  相似文献   

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N. Yamasaki 《Chromosoma》1981,83(5):679-684
The lampbrush loops of the Y chromosome in primary spermatocytes of Drosophila hydei can be stained in a site specific manner employing a modified Giemsa technique. In this communication it is shown that pronase pretreatment changes the staining properties of the various Y loops as well as of the X and autosomes. In addition it is shown that the various chromosomal structures display differences in sensitivity against the action of the enzyme supporting the idea of a site specificity of RNP formation.Dedicated with gratitude to Professor Wolfgang Beermann on the occasion of his sixtieth birthday  相似文献   

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Structure and function of y chromosomal DNA   总被引:2,自引:0,他引:2  
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Genetic Fine Structure of the Y Chromosome of DROSOPHILA HYDEI   总被引:7,自引:2,他引:5       下载免费PDF全文
A genetic map of the Y chromosome of Drosophila hydei has been constructed from deletion/complementation experiments, with the aid of male sterile mutants of the Y chromosome. A central conclusion of our experiments is that not more than a single complementation group can be detected in each of the lampbrush loop forming sites. Additional complementation groups, functionally independent of lampbrush loops, reside between these loci. Six complementation groups have been defined by several methods of mapping. An additional ten complementation groups are indicated, but their exact definition requires further investigation. The "synthetic sterility" of mutations in these ten loci contributes to the difficulty in unequivocally establishing their individual boundaries. Mapping problems also arise from the instability of certain mutants.  相似文献   

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Simultaneous transmission and scanning electron microscopy studies were performed on lampbrush chromosomes of Notophthalmus viridescens and Xenopus laevis. The organization of their normal and landmark loop ribonucleoprotein (RNP) matrices was compared to that of Pleurodeles waltl lampbrush loops, previously described. Ultrastructural observations clearly showed that in the three species, the RNP matrix of normal and landmark loops displayed a common basic structure: an RNP fibril packed into tightly juxtaposed RNP particles of remarkably uniform size, ie 30 nm. Furthermore, analysis of the spatial arrangement of these constitutive RNP fibrils allowed us to establish ultrastructural similarities between the different types of loop matrices of the three species studied. Thus, granular loops with the same organization were found to be present in the three species, whereas Pleurodeles was the only one to exhibit, in its lampbrush chromosomes, the typical globular matrices previously described. “Sequential labelling loops” of Notophthelmus were shown to be similar of both “convoluted dense loops” of Xenopus and “dense loops” of Pleurodeles.  相似文献   

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Early lampbrush-stage oocytes are characterized by small lampbrush chromosome loops, a small amount of ribonucleoprotein (RNP) matrix on the loops, small nucleoli, few RNP particles in the nucleoplasm, and a smooth germinal vesicle contour. In vitro culture of these oocytes in serum-free culture medium for 24 hr at 18°C promotes a number of morphological changes in the oocytes: The lampbrush loops increase in diameter and acquire extensive RNP matrix, the nucleoli increase in size and complexity, the nucleoplasm accumulates numerous polymorphic RNP particles, and the germinal vesicle envelope acquires a sacculated contour. These characteristics are typical of the in vivo maximum lampbrush stage, and their appearance is due to an apparent in vitro acceleration of the lampbrush phase. Two possible interpretations of these observations are discussed.  相似文献   

20.
Summary The phenotype of the variegation position effect white-mottled-2 in Drosophila hydei is modified by supernumerary Y chromosomes and by fractions thereof. Different translocated Y fragments have varying degrees of effectiveness in suppressing the mutant phenotype in the mottled eyes. In fragments derived from similar regions of the Y chromosome the suppressive ability is related to their cytological lengths. In contrast, fragments derived from distinctive regions of the Y chromosome differ markedly in their effectiveness, and these differences are not necessarily correlated with the cytological length. In particular, fragments of the distal region of YL are more effective in enhancing the wild phenotype than are proximal fragments of similar size.The mutation white-mottled-2 is accompanied by a complex rearrangement of the X chromosome. This inhibits crossing over between large regions of the X chromosome in structural heterozygotes; it causes also a delay of development and a considerable reduction of viability in homozygous females and hemizygous males. XO males are inviable. The inviability of these males is partially covered by Y fragments. With respect to viability, the fragments show similar regional differences in effectiveness as in the modification of the mottled phenotype.There is also a parental effect on the modulation of the white-mottled-2 phenotype.There is no correlation between the activity of Y chromosomal factors on spermiogenesis and the activity of Y factors on the modification of the variegation position effect. Suppression of Y chromosomal sites which normally unfold lampbrush loops during the spermatocyte stage and whose activity has previously been shown to be indispensible for normal differentiation of the male germ line cells does not result in any visible alterations of the effectiveness on the mottling. So there is obviously independence between these two different genetic activities of Y chromosomal factors.  相似文献   

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