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71.
Summary During imbibition of whole tea seeds (6 days) two purine alkaloids, caffeine and theobromine, did not decrease in the seed
coats and there was no increase in the seeds. In parallel with and after the breaking of seed coats there was a gradual release
of caffeine from coats of germinating seeds. By contrast, when the seed was freed from the outer seed coat and soaked, imbibition
of the seed required only 2 days and simultaneously caffeine was released from the inner seed coat. In such seeds, but not
in whole seeds, growth of embryonic tissues (roots and shoots) was inhibited after the breaking of the inner seed coats. Nevertheless,
caffeine increased more in such roots of the seedlings of decoated seeds than in roots of normal seedlings. 相似文献
72.
Norbert Rieder 《Hydrobiologia》1987,145(1):175-181
A group of nine sensory setae is found on the tip of the antennula ofDaphnia magna in both sexes. Inside a seta four dendrites are situated, each with one receptor cilium. The receptor cilia extend through
a liquor space into the exterior part of the seta.
The exterior part of the liquor space is divided from the interior part by a knob-like thickening of the innermost layer of
the epicuticle, the basal bead. The basal bead narrows the liquor space and the receptor cilia. The interior part of the liquor
space is surrounded by five sheath cells, the exterior part by a thin cuticle. In the exterior part the receptor cilia branch
partly and reach a terminal pellet on the tip of the seta. The terminal pellet is a thickened part of the epicuticle. It is
permeable to several dissolved substances.
It is the exterior part of the receptor that projects over the tip of the antennula and seems to be the entire seta. During
the premoult the fifth sheath cell builds up the articulation of the seta, the fourth the basal bead, and the third the shaft
of the seta. The first sheath cell forms the cuticular sheath.
The organ seems to be a chemoreceptor, but the adequate stimulus is as yet unknown. 相似文献
73.
The embryonic development of total specific activities as well as of molecular forms of acetylcholinesterase (AChE, EC 3.1.1.7) and of butyrylcholinesterase (BChE, EC 3.1.1.8) have been studied in the chick brain. A comparison of the development in different brain parts shows that cholinesterases first develop in diencephalon, then in tectum and telencephalon; cholinesterase development in retina is delayed by about 2-3 days; and the development in rhombencephalon [not studied until embryonic day 6 (E6)] and cerebellum is last. Both enzymes show complex and independent developmental patterns. During the early period (E3-E7) first BChE expresses high specific activities that decline rapidly, but in contrast AChE increases more or less constantly with a short temporal delay. Thereafter the developmental courses approach a late phase (E14-E20), during which AChE reaches very high specific activities and BChE follows at much lower but about parallel levels. By extraction of tissues from brain and retina in high salt plus 1% Triton X-100, we find that both cholinesterases are present in two major molecular forms, AChE sedimenting at 5.9S and 11.6S (corresponding to G2 and G4 globular forms) and BChE at 2.9S and 10.3S (G1 and G4, globular). During development there is a continuous increase of G4 over G2 AChE, the G4 form reaching 80% in brain but only 30% in retina. The proportion of G1 BChE in brain remains almost constant at 55%, but in retina there is a drastic shift from 65% G1 before E5 to 70% G4 form at E7.(ABSTRACT TRUNCATED AT 250 WORDS) 相似文献
74.
Jaroslava Mal Frantisek Sehnal A. Krishna Kumaran Noelle A. Granger 《Archives of insect biochemistry and physiology》1987,4(2):113-128
Starvation, chilling, and injury of last instar Galleria mellonella larvae typically elicit extra larval molts or a delay in pupation. The primary sites of action and the nature of the signals by which these treatments affect development are not known. However, since the connections of the brain to the nerve cord are crucial for the effects of starvation and chilling, these signals apparently affect the brain-centered program of developmental regulation via the nerve cord. Chilling, and occasionally starvation, cause extra larval molts in last instar larvae treated prior to the nervous inhibition of their corpora allata; release of a cerebral allatotropin, which stimulates the production of juvenile hormone, appears to be involved in this effect. After this time, a delay in pupation is the principal effect of starvation and chilling, and is apparently due to a temporal inhibition of the release of the prothoracicotropic hormone. Chilling also appears to inhibit unstimulated ecdysteroid production by the prothoracic glands. The effect of injury is not mediated by the nerve cord, but appears to involve an inhibitory humoral factor that affects either the brain or the prothoracic glands themselves. Injury also stimulates juvenile hormone production, an effect which is enhanced when the brain is separated from the nerve cord and which is evidenced by a delay of ecdysis and the occasional retention of some larval features in the ecdysed insects. None of the effects of these various treatments on the brain and the endocrine glands persist when the brains or glands are implanted into untreated hosts. 相似文献
75.
Olaf Breidbach 《Development genes and evolution》1987,196(7):450-459
Summary The fate of ascending projections of thoracic interneurons in the metamorphosing brain of Tenebrio molitor is described. Persistent brain neurons were identified and their fate is described during metamorphosis. The projection sites of ascending elements are invariable throughout metamorphosis both in quantitative and in qualitative terms. Some of these ascending neurons are serotonin-immunoreactive and this set of neurons maintains a constant projection site within the metamorphosing brain. The alterations in the projection sites of these and other ascending neurons in the ventral nerve cord were analysed experimentally. The central projection sites of these persistent ascending neurons are not important for the maintenance of their nerve cord projections throughout metamorphosis. Experimental deletion of ascending neurons which project into the suboesophageal ganglion varies the shape of persistent central neurons. 相似文献
76.
Eric Stephen Cole Joseph Frankel Leslie Meek Jenkins 《Development genes and evolution》1987,196(7):421-433
Summary A single-gene recessive mutation, bcd (broadened cortical domains), of Tetrahymena thermophila is characterized by a variable broadening of the spatial domains within which cortical organelles, including both the contractile vacuole pores (CVP) and oral apparatus (OA), are formed. The phenotype is not temperature-sensitive. During the development of the organelles of the mutant prior to cell division, extra CVPs and extra oral primordia (OP) appear near ciliary rows adjacent to the rows at which these structures normally form. In the later stages of development, some, but not all, of these extra structures are resorbed, or in the case of the oral domain, multiple adjacent OPs may be completely or partially integrated into a single enlarged OA. When multiple OAs persist, one or more of these may display a reversed orientation reminiscent of those encountered in janus mutants. However, unlike janus, bcd cells do not express any sign of a mirror-image global organization.Our results can best be accounted for by postulating that the bcd mutation affects some common determinant of the widths of both CVP and OA domains. Studies are in progress which explore the relationship between this width-determining mechanism(s) and the mechanism(s) determining the location of cortical organelles around the cell circumference. 相似文献
77.
78.
79.
The physiological relationships between Ostrinia nubilalis Hübner and its tachinid parasitoid Pseudoperichaeta nigrolineata Walker are described under abiotic conditions which induce development of the host without diapause. The parasitoid lowers the larval growth of the host: the maximal weight attained by the parasitized larvae represented only 78% of that of healthy ones. The duration of the last larval host instar increased to 10.4 days in parasitized O. nubilalis compared to 8.0 days in unparasitized ones. The influence of the host on the parasitoid development was studied experimentally after parasitization of O. nubilalis larvae of instars 2 to 5. When the second larval instar of the host is parasitized, the overall duration of parasitoid larval development lasts twice as long as when the fifth instar is parasitized. The best yield of parasitoid pupariae (50%) is obtained when parasitization occurs in instar 3. We show that good synchronisation exists between the larval development of the host and its parasitoid. There are four phases of parasitoid development which would appear to require a signal from the host: the start of the growth of newly hatched parasitoid larvae and the 3rd to 4th instar ecdysis of the host; the first moulting of the parasitoid and the 4th to 5th instar ecdysis of the host; the growth resumption of the parasitoid instar II (weight about 1 mg) and the small rise of the ecdysteroid level in the middle of host instar 5; and in all probability, the second parasitoid moulting and the larval-pupal apolysis of the host.
Résumé Les relations physiologiques entre O. nubilalis et le tachinidae P. nigrolineata ont été étudiées dans des conditions abiotiques telles que l'hôte présente un développement sans diapause. Le parasitoïde ralentit la prise de poids de l'hôte: le poids maximal des chenilles parasitées ne représente que 78% de celui des chenilles saines. Seule la durée du 5ème stade est significativement plus longue chez les chenilles parasitées que chez les saines (10,4 contre 8,0 jours). L'influence de l'hôte sur le développement du parasitoïde à été expérimentée en parasitant des stades 2 à 5 d'O. nubilalis. Lorsque l'infestation a lieu au stade 2, le développement larvaire complet du parasitoî de dure deux fois plus longtemps que lorsque l'infestation a lieu au stade 5. Le meilleur rendement en pupes (50%) est obtenu lorsque l'infestation a lieu au stade 3. Il a été montré qu'il existe une bonne synchronisation entre le développement de l'hôte et de son parasitoî de. Il y a 4 phases physiologiques du développement larvaire de P. nigrolineata qui semblent nécessiter un signal provenant de l'hôte pour être dépassées. Ainsi peuvent être mis en relation: — le début de la croissance de la larve néonate du parasitoî de et l'ecdysis 3/4 de l'hôte; — la première mue du parasitoïde et l'ecdysis 4/5 de l'hôte; — la reprise de la croissance du stade II du parasitoïde, vers un poids de 1 mg et la remontée des taux d'ecdystéroïdes au milieu du stade 5 de l'hôte. et probablement, — la seconde mue du parasitoïde et l'apolyse nymphale de l'hôte. Les expérimentations vont se poursuivre pour déterminer les facteurs en cause. Ces phénomènes de synchronisation seront aussi étudiés dans le cas de la diapause de l'hôte.相似文献
80.
Terry F. Branson 《Entomologia Experimentalis et Applicata》1987,43(3):205-208
Laboratory tests with eggs of Diabrotica virgifera virgifera LeConte showed that during a 10-day hatching period, hatch of male eggs predominated on the first and second days, eggs of mixed sex, with ca. 1:1 ratio, hatched on the third and fourth days, and eggs hatching from the fifth to the tenth days were nearly all female. Overall, female eggs hatched a mean of 2.9 days later than male eggs. Not only did female eggs hatch later, but the time for posthatch development to the adult stage was 1.8 days longer for females. The later egg hatch and longer posthatch development for females resulted in female adults emerging a mean of 4.7 days later than male adults. Total adult emergence lasted 14 days; of this, males predominated during the first 5 days, and females predominated during the last 9 days. Males of D. v. virgifera appear to have evolved protandry (the tendency for males to emerge before females) by developing both a postdiapause embryonic stage and a combined larval and pupal stage of shorter duration.
Résumé L'observation, au laboratoire, pendant une période d'éclosion de dix jours, des oeufs de D. v. virgifera LeConte, a montré que les oeufs mâles prédominent les deux premiers jours d'éclosion, que les oeufs des deux sexes, avec des fréquences 0,5/0,5, ont éclos les troisième et quatrième jours, et que les oeufs éclos du cinquième au dixième jour étaient presque tous femelles. Globalement, les oeufs femelles ont éclos en moyenne 2,9 jours plus tard que les oeufs mâles. De plus, la durée du développement post-embryonnaire des femelles a demandé 1,8 jour en plus. Une éclosion plus tardive et un développement post-embryonnaire plus long ont entrainé une émergence des femelles en moyenne 4,7 jours après les mâles. La période d'émergence des adultes s'est étalée sur 14 jours; les mâles ayant dominé pendant les 5 premiers jours et les femelles pendant les 9 derniers. Les mâles de D. v. virgifera semblent avoir évolué vers la protandrie en acquerant, tant une diapause post-embryonnaire que des stades de développements larvaire et nymphal plus brefs.相似文献