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1.
An analysis of puff formation and regression has been carried out in 3 morphologically distinct regions of the Rhynchosciara hollaenderi salivary gland during mid-larval through pupal development. Puffing differences among these 3 regions have been found and analysed for both RNA and DNA puffs. The presence of such differences suggests that the gland regions may also be functionally differentiated. — Developmentally specific sequences of puffs have been distinguished and correlated with morphological and physiological events which occur during the development of Rhynchosciara. The DNA puffs as well as the RNA puffs enlarge and regress at predictably specific developmental stages. The presence of particular puffing sequences in the late larval to pupal period has been compared with the occurrence of known changes in the developmental ecdysone titre for Rhynchosciara. Certain aspects of this developmental picture appear to fit the ecdysone-stimulated puffing model for Drosophila, but other aspects indicate that the Drosophila-based model may not be completely applicable to Rhynchosciara.  相似文献   

2.
A portion of the X chromosome was examined for puffing activity shortly before puparium formation in several species of Hawaiian Drosophila. A large puff was induced by incubating excised salivary glands with ecdysone. In two of the seven species studied, the region in question has been moved by inversion to a new position relative to the banding sequence in the other species, but the reaction to ecdysone remained unchanged. Another puff, not affected by short term incubations with ecdysone, displayed different degrees of activity in some homosequential species, affording a cytological means for distinguishing these species.  相似文献   

3.
The puffing pattern changes in the salivary gland chromosomes of the third instar larvae of the melonfly, Dacus cucurbitae are described. Three classes of puffs were noticed over a period of development of 120 hrs. Class (1) are those which are more or less constantly found; class (2) are those which oscillate, i.e. appear and disappear at irregular time intervals; and class (3) are those that are linked to a specific developmental event. Also, 3 peaks of puffing activity have been noticed during the present study; one in the 120 hr old larva, the second in the 168 hr old larva and the third in the 240 hr old larvae. The significance of these 3 classes of puffs and the 3 peaks in puffing activity has been discussed. The puff RNA has a high rate of synthesis and incorporates 3H-cytidine within 30 secs after being offered. There is a high degree of variation in the incorporation of labelled precursors into the different nuclei of the same gland, such a variation is not noticed in the diploid and embryonic cells.  相似文献   

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A technique for the short term organ culture of larval salivary glands of D. melanogaster is described. Cultured Puff Stage 1 glands respond to 20-OH ecdysone by initiating the cycle of puffing activity characteristic of late larval development and puparium formation. This puffing cycle involves the sequential activation of at least 125 puffs. Their response to ecdysone allows these puffs to be divided into 3 main classes: a) PS1 puffs that regress (e.g. 25AC); b) puffs activated very rapidly (within 5 min) (e.g. 23E, 74EF, 75B) and c) puffs activated only after longer periods (>4 h) (e.g. 62E, 78D, 22C, 63E and 82F). The detailed behaviour of representatives of each class is described. These data support Clever's distinction of ‘early’ and ‘late’ ecdysone responsive sites.  相似文献   

8.
Patterns of puffing activity during the third larval instar and the prepupal period of two different strains of D. melanogaster (Oregon and vg6) are compared. The variation in puffing activity observed is both quantitative (involving the mean size or timing of activity of individual puffs) and qualitative. The pattern of activity of 64% of the puffs is the same in the two strains, 12% show strain differences in puff size and 19% in the time of their activity. One puff (64C) is active only in one of the strains (vg6). In genetic experiments this puff segregates normally and the puff locus has been mapped genetically to a site coincident with, or at least very close to, the cytogenetic position of the puff. In heterozygotes the puff is homozygous only when the maternal and paternal homologues are synapsed. When the homologues are asynapsed only the homologue from the vg6 parent is puffed at 64C. With the exeption of some strains closely related to vg6 no other strain of D. melanogaster has been found to possess puffing activity at 64C. In vg6/In(3LR)C165 heterozygotes 64C forms a heterozygous puff even when the homologues are synapsed. In the discussion consideration is given to the various factors that control puff size.  相似文献   

9.
The patterns of puffing activity have been studied during the late larval and prepupal stages of Drosophila melanogaster. On the major salivary gland autosomes (chromosomes 2 and 3) 108 loci form puffs at some time during these developmental stages. The timing and pattern of activity of 83 of these puffs is found to be strictly dependent upon the age of the animals. Two major peaks in puffing activity occur. The first of these is at the time of puparium formation and the second in 8 hr. old prepupae. Both of these puffing peaks precede a moult by 4 hrs. 30 puffs are active before or at the time of both of these two moults. However, the sequence of appearance and regression of many of this group of puffs is different at the prepupal moult than at the pupal moult. 12 puffs occur only before or at the time of the prepupal moult and 13 puffs only before or at the time of the pupal moult. The functional significance of these periods of puffing activity is discussed and it is concluded that one function of this genetic activity in the salivary glands of metamorphosing Drosophila is the production of substances to be utilised during the histogenesis of the adult tissues.  相似文献   

10.
The patterns of puffing activity in the proximal region of 2L of D. melanogaster have been reinvestigated and revised. Possible relationships between three puffs and the structural genes for alcohol dehydrogenase, dopa decarboxylase and the histones are discussed.  相似文献   

11.
The autosomal salivary gland chromosome puffing patterns of Drosophila simulans are described and compared with the puffing patterns of the sibling species D. melanogaster. During the late third larval instar and the prepupal period the patterns of puffing activity of these two species are similar — approximately 50% of the puffs common to both species showing identical activities. The remaining puffs differ in their timing of activity, or in their mean sizes, or in both of these parameters. A number of puffs (14) found in D. simulans have not been regularly observed in the Oregon stock of D. melanogaster but are active in other D. melanogaster strains. One puff (46 A) of D. melanogaster was absent from D. simulans and forms a heterozygous puff in hybrids, when the homologous chromosomes are synapsed. When the homologues are asynapsed a puff at 46 A is restricted to the melanogaster homologue. The puff at 63E on chromosome arm 3L is considerably smaller in D. simulans than in D. melanogaster and this size difference is autonomous in hybrids. Other puffs not common to both species behave non-autonomously in the species hybrid, even when the homologous chromosomes are asynapsed.  相似文献   

12.
Patterns of puffing activity in the salivary gland chromosomes of Drosophila   总被引:28,自引:0,他引:28  
Exposure of Drosophila melanogaster larvae to high temperature for short periods of time results in marked changes in the puffing patterns of salivary gland chromosomes. Temperature shock induces puffing at 9 specific loci; this pattern of induced puffs shows little developmental specificity and is similar in three strains of D. melanogaster (including the mutant lethal giant-larvae) and in D. simulans. Temperature shock also (i) retards the regression of some developmentally specific puffs and (ii) results in the regression of all other puffs normal to development. The effect of temperature treatment is similar in vivo and after in vitro treatment of salivary glands. The in vitro response is not sensitive to cycloheximide. A similar pattern of induced puffs to that found after temperature treatment is found during recovery of larvae from anoxia, but additional puffs are induced after anoxia. The size and duration of activity of the induced puffs is dependent upon the magnitude of the treatment.  相似文献   

13.
Salivary gland X chromosome puffing patterns are described for the Oregon stock of Drosophila melanogaster and for the Berkeley stock of D. simulans. In D. melanogaster regular phase specific puffing was recorded at 21 loci in the third larval instar and subsequent prepupal stage. A comparison of the X chromosome puffing patterns of male and female larvae failed to show any qualitative differences although in the males a group of puffs were active for a longer time during development than in females. The X chromosome puffing patterns of D. simulans are similar to those described for D. melanogaster although two puffs (4F 1–4 and 7B 1–3) were active in D. simulans but not in D. melanogaster. The sex differences in puffing observed in D. melanogaster were also observed in D. simulans.  相似文献   

14.
Puffing patterns of chromosome arm 3 L of D. yakuba are compared with those of other members of the melanogaster species subgroup D. melanogaster and D. simulans. Several paracentric inversions on 3L have resulted in a considerable rearrangement of gene order in D. yakuba. However the basic sequence of changes in puffing activity which occurs during late larval and prepupal development is very similar to that of D. melanogaster and D. simulans. A fourth member of this species subgroup (D. teissieri) also has similar puffing patterns to those of D. melanogaster despite considerable chromosome evolution.  相似文献   

15.
Summary The structure of the salivary gland of the dipteran insect Rhynchosciara angelae in a defined stage of the larval development, characterized by the synthesis and storage of secretion product, is described. Observations were made with both Nomarski optics and electron microscopy. Filiform projections extending into the lumen of the gland were observed in the apical portion of the cells. At the basal region junctions, characterized as hemidesmosomes, were observed between the membrane of the cell and the basal lamina. The plasma membrane presents numerous infoldings into the cell increasing considerably the surface area at this region. Throughout the cytoplasm of the gland cells numerous mitochondria, Golgi complexes, microtubules, profiles of endoplasmic reticulum, secretion granules and glycogen granules were observed. Carbohydrates were detected on ultrathin sections by using the periodic acid-silver methenamine and the periodic acid-thiosemicarbazide-silver proteinate techniques.  相似文献   

16.
In Drosophila gibberosa the maximum secretory output of the salivary glands is in the prepupa rather than in the late third-instar larva. Using salivary chromosome maps provided here we have followed puff patterns from late second-instar larvae through the time of histolysis of the salivary glands 28–32 h after pupariation and find low puff activity correlated with low secretory activity throughout much of the third larval instar. Ecdysteroid-sensitive puffs were not observed at the second larval molt but do appear prior to pupariation initiating an intense cycle of gene activity. The second cycle of ecdysteroid-induced gene activity a day later, at the time of pupation, appears somewhat damped, especially for late puffs. Salivary chromosome maps provided here may also be used to identify homologous loci in fat body, Malpighian, and midgut chromosomes.  相似文献   

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H. D. Berendes 《Genetica》1963,33(1):288-300
An investigation of the asynapsis phenomenon in salivary gland chromosomes ofDrosophila hydei was undertaken. Asynapsis was found to occur in fixed and stained as well as in surviving chromosomes.Frequency of asynapsis was found to be much higher in the X-chromosome than in any of the autosomes. The total asynapsis frequency of autosomes is slightly higher in females than in males. Among the four large autosomes, no consistent preference or sequence of frequency was encountered. In none of the chromosomes a preference of asynapsis for a certain region was found. Crowding of the cultures had no influence on frequency or distribution of non-pairing.In hybrids between wild stocks of different geographic origin a slightly higher asynapsis frequency, compared to the wild stocks was found.  相似文献   

19.
Many of the DNA and RNA puffing changes observed in Rhynchosciara during the prepupal period have been induced in younger larvae by injection of ecdysterone. However, the dose of hormone necessary for this induction is high, especially in the large cells of the proximal region of the gland. There are differences in the amplification and puffing response from that observed during normal development. Particular similarities and differences with possible explanations for the differences are discussed. Preceding and during the amplification which occurs at certain chromosomal regions, ecdysterone induces DNA synthesis along the entire chromosome. This induction of general DNA synthesis can occur independently of the amplification process. It appears to be similar in pattern to that occurring normally toward the end of larval life. — The normal prepupal behavior of Rhynchosciara was not induced by injection of ecdysterone into larvae of any age thus far examined.  相似文献   

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