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Neurosecretory granules from the rat and bovine neurohypophysis were isolated and some of their biochemical and biophysical properties studied. Neurosecretory granules (NSG) from rat neurohypophysis were labeled, in vivo, with [35S]cysteine and isolated on isoosmotic gradients. Whereas 1 day after labeling most of the radioactivity was found in the lower part of the gradient, 35 days later the isotope was also located in the lighter NSG-containing fraction. Different analytical procedures showed that the lighter fraction, both in bovine and rat NSG, contain more subpopulations of neurophysin-like material than the heavier fraction. The first material to be released during stimulation of secretion, in vivo or in vitro, is mobilized from the heavy NSG. Isolation of rat NSG, at different times during and after dehydration of the animals, reveals that the newly synthesized material is found in the heavy NSG-containing fraction. Furthermore, the results indicate that the newly synthesized NSG are more resistant to lysis than the lighter granules. The results are discussed in relation to the maturation and degradation processes of the granule content and to the functional state of the NSG. 相似文献
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《Molecular cell》2020,77(6):1176-1192.e16
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J. H. M. Hovenkamp-Hermelink E. Jacobsen A. S. Ponstein R. G. F. Visser G. H. Vos-Scheperkeuter E. W. Bijmolt J. N. de Vries B. Witholt W. J. Feenstra 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》1987,75(1):217-221
Summary An amylose-free potato mutant was isolated after screening 12,000 minitubers. These minitubers had been induced on stem segments of adventitious shoots, which had been regenerated on leaf explants of a monoploid potato clone after Röntgen-irradiation. The mutant character is also expressed in subterranean tubers and in microspores. Starch granules from the mutant showed a strongly reduced activity of the granule bound starch synthase and loss of the major 60 kd protein from the starch granules. 相似文献
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Summary Electron microscopy of cat parotid glands revealed great heterogeneity in the secretory granules of normal unstimulated acinar cells. Electrical stimulation of the parasympathetic nerve to the gland evoked a copious flow of parotid saliva which was accompanied by an extensive depletion of the secretory granules from the acinar cells. Exocytosis was captured as it was occurring by means of perfusion-fixation, and showed that the events occur in a conventional manner. Stimulation of the sympathetic nerve caused only a very small flow of saliva, and no acinar degranulation was detected. It can be concluded that the parasympathetic secretomotor axons provide the main drive for parotid acinar degranulation in the cat. This contrasts with the rat in which sympathetic impulses provide the main stimulus for parotid acinar degranulation. These dissimilarities serve to emphasise how extensively species differences may influence autonomic responses in salivary glands. 相似文献
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Thomas J. Weissling Lance J. Meinke Donald Trimnell Krista L. Golden 《Entomologia Experimentalis et Applicata》1989,53(3):219-228
The concept of encapsulating semiochemicals into a starch matrix is being studied for potential use in corn rootworm (CRW) management programs. During 1987, experiments were conducted to determine: 1) If volatile plant-derived Diabrotica spp. attractants could be encapsulated in a starch borate matrix (SBM), and 2) If various SBM-semiochemical formulations would attract Diabrotica species over time in field corn. Chemical analyses of fresh SBM formulations indicated that indole, estragole, veratrole, phenylacetaldehyde, and trans-anethole were not retained during formulation but trans-cinnamaldehyde, Beta-ionone, 1,2,4,-trimethoxybenzene, eugenol and isugenol were successfully encapsulated. Encapsulated semiochemical formulations were made into 20 mesh granules, placed in Pherocon ® 1C traps that were tied to corn plants, and sampled for CRW adults every 4 days from 11 July to 8 September. Field data indicated that encapsulated semiochemicals were retained in the SBM for varying lengths of time and were released at rates attractive to CRW adults. A two-component mixture of trans-cinnamaldehyde and 1,2,4-trimethoxybenzene was the most effective formulation tested; however, no formulation was effective during corn silking and pollination. Although seasonal variation in CRW response could limit the usefulness of some plant-derived semiochemicals, the starch matrix concept may be useful as a delivery system for semiochemicals and may have potential as a tool that could be used in the development of new more biorational CRW management programs.
Résumé Le programme expérimental de 1987 était destiné à déterminer: 1) si les substances dérivées de végétaux et attractives pour Diabrotica pouvaient être encapsulées dans de l'amidon additionné d'acide borique; 2) si différentes formules attireraient les différentes espèces de Diabrotica dans un champ de maïs.L'indol, l'estragol, le vératrol, le phénylacétaldéhyde et le trans-anéthol n'ont pas été retenus, tandis que le trans-cinnamaldéhyde, la \-ionone, le 1,2,4-triméthobenzène, l'eugénol et l'isugénol ont été encapsulés avec succès dans des pièges attachés à des pieds de maïs (les détails techniques sont fournis). Les pièges ont été relevés tous les 4 jours du 11 juillet au 8 septembre. Les résultats montrent que les substances allélochimiques sont conservées dans la capsule pendant des durées variables et libérées à des concentrations attractives pour les Diabrotica adultes. Un mélange de trans-cinnamaldéhyde et de 1,2,4,-triméthoxybenzène a été la formule la plus efficace, à l'exception des périodes de formation des barbes et du pollen, où aucune formule n'a été attractive. Bien que la variation saisonnière des réactions de Diabrotica limite l'utilisation des substances allélochimiques d'origine végétale, la capsule d'amidon peut être employée pour libérer des substances allélochimiques et constitue un outil potentiel pour la mise au point d'une méthode plus rationnelle de lutte contre Diabrotica.相似文献
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John H. Nordin Esther L. Beaudoin Xiaodong Liu 《Archives of insect biochemistry and physiology》1990,15(3):119-135
In the eggs of the cockroach Blattella germanica, vitellin (Vt) utilization is initiated 4 days postovulation by the proteolytic processing of its three subunits. These reactions yield a specific set of peptides that are consumed by the developing embryo. A yolk proteinase activity, believed central to this processing event, has been investigated. First expressed at day 3 postovulation, just prior to Vt's processing, its specific activity with synthetic substrates increased four-fold to 18-fold through day 6. In addition, a mixing experiment showed that these proteinases(s) can also process Vt's large subunits in vitro. A relationship between Vt processing and proteinase specific activity was also noted with two B. germanica translocation heterozygotes, which displayed differences in the extent of Vt processing. One group of eggs (group A) failed to process any Vt subunit. A second group (B) processed the Mr 102,000 subunit but not the Mr 95,000. A third group (C) processed their Vt normally. Proteinase specific activities in the yolk of translocant's eggs at day 6 mirrored the extent of processing, being highest in group C eggs and effectively absent from the yolk of group A eggs. Eggs defective in Vt processing also contained arrested embryos. It is concluded that the yolk proteinase activity described here participates in Vt processing at day 4 postovulation. Microscopic examination of yolk obtained from eggs of wild type females showed that, as processing began in vivo (day 4), the yolk granules also underwent an abrupt decrease in size from diameters of 15–30 μm to 3–10 μm. Yolk granules of those translocant's eggs that were defective in Vt processing did not undergo this size decrease, suggesting that granule reorganization and Vt proteolysis may be linked functionally. 相似文献
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小地老虎变态期脂肪体变化及保幼激素类似物的影响 总被引:1,自引:0,他引:1
本文对小地老虎Agrotis ypsilon(Rottemberg)从四龄幼虫开始经预蛹和蛹的变态期及羽化为成虫后的脂肪体出现的超微结构变化,蛋白质含量的变动,以及蛋白质颗粒的形成和消失过程,进行了系统观察和组织化学分析。结果表明:(1)在幼虫期的后期,脂肪体扩大成宽带状,细胞体积增大的同时出现双核和多核。进入预蛹期,细胞内开始出现嗜碱性“蛋白质颗粒”,血细胞吞噬部分脂肪体细胞。蛹龄一天时,脂肪体转变成块状,细胞内充满大型蛋白质颗粒。在蛹龄5—10天内,“幼虫脂肪体”逐步崩解,围膜及细胞膜消失。至蛹龄12天时转变为预成虫,脂肪体细胞重新出现,并以气管分支为中心聚合成花朵状圆球体,再组成串状“成虫脂肪体”,仍充满蛋白质颗粒。幼虫期发达的粗面内质网和线粒体,至预蛹期则衰变成几种类型的蛋白质颗粒。(2)六龄幼虫在1—5日龄期间,每克脂肪体的蛋白质含量稳定在7.1—8.4毫克之间,随后逐步升高,至预蛹期达16.3毫克的峰值。蛹初期,雄蛹和雌蛹的含量分别增高到预蛹期的1.63和2.4倍。但在蛹龄2—8天内迅速下降到六龄幼虫期的水平。至蛹龄9—13天时间(包括预成虫),含量又突然猛增,雌蛹尤为显著。蛹期脂肪体细胞充满着的几种蛋白质颗粒,在羽化为成虫后的24小时内全部消失。在六龄幼虫期用保幼激素类似物ZR-515(20微克)作体壁处理,可使幼虫期延长4天,并使九日龄幼虫的脂肪体仍保持幼虫型状态。 相似文献