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81.
Spencer R. Malecha 《Aquacultural Engineering》1986,5(2-4):183-197
The current ‘traditional’ prawn pond management system really does not ‘manage’, but rather accommodates prawn production characteristics and was instituted with a minimum knowledge of prawn biology and husbandry. As such, the traditional system is not optimal because it does not rely on a strong empirical knowledge base. Prawn culture has succeeded up until now because Macrobrachium rosenbergii is easily cultured and will give 500–1000 kg ha−1 year−1 without much effort. This is sufficient in many areas of the world but not in others where economic conditions have break-even production requirements of nearly 1 tonne greater than this. The traditional system relying on selective harvesting with large seine nets is seriously inefficient which not only leads to lost revenue but under-manages pond growth since unculled large animals suppress the growth of unculled smaller ones. The degree to which this occurs was not known to the designers of the traditional system who had no way of knowing (as we do now from our research results) the extremely large compensatory growth capability of small prawns in the absence of large ones. The traditional system also does not manage sexual dimorphic growth because no technology exists which can be used to create monosex broods or manipulate the sex ratio in ponds. Accurate production models are not available because traditional ponds are rarely sampled and/or rarely drained. This, along with inefficient harvests, results in a co-mingling of cohort stocking classes. It is impossible to get accurate survival and growth data because of this and because it is so time consuming to sample commercial ponds and process the data on a regular basis. This paper describes four new engineering and ‘bioengineering’ techniques which are under development and can overcome all the drawbacks of the traditional system: (1) surgical sex reversal to create monosex broods; (2) genetic tagging of stocking and resident cohorts to assess survival and growth; (3) size grading and 100% efficient harvesting using pond draining and a machine grader-harvester; and (4) a semi-automated computer assisted prawn sample data management system which uses sonic digitization of prawn sample data. 相似文献
82.
Chicken embryos and healthy adult chickens naturally infected with lymphoid leukosis virus were used to investigate viral inclusion bodies in myocardial cells by light and electron microscopies and by immunocytochemical technique. Intracytoplasmic viral matrix inclusion bodies frequently appeared in the myocardium of adult chickens, but not in that of embryos. In light microscopic preparations, inclusions were irregularly distributed, were basophilic, and contained ribonucleic acid. Ultrastructurally, inclusions in myocardial cells were in areas containing numerous interstitial C-type particles. Early inclusions were composed of clusters of ribosomes associated with sarcoplasmic tubules; spherical bodies developed among these ribosomes. Mature inclusions were composed of numerous spherical bodies (50 to 75 nm) with interspersed ribosomes and of ribosomes clustered at the periphery. Inclusions were not membrane-enclosed. Occasionally, spherical bodies were in paracrystalline arrays. Multiple budding occurred on cell membranes adjacent to matrix inclusions. The viral group-specific protein, p27, was demonstrated by the peroxidase-antiperoxidase method and by the protein A-gold method in the spherical bodies, in nucleoids of mature virus particles, and among ribosomes of inclusions. The results indicate that the matrix inclusions were the result of lymphoid leukosis virus infection and were the product of viral protein synthesis on ribosomes. 相似文献
83.
Centaurea solstitialis (yellow starthistle) has invaded rangelands and natural areas in the western USA. There is evidence that mowing is a more effective method of reducing growth and seed production, compared with the well‐established and distributed bioagents. To test this hypothesis we measured C. solstitialis's growth and reproduction following two treatments (late spring and early summer bud/capitula destruction and shoot mowing) and measured C. solstitialis's growth and reproduction. We measured changes in soil moisture content to test the hypothesis that these manipulations differentially affect water usage by the invasive plant. Mowing produced shorter plants that weighed less. Bud damaged plants were not statistically different from untreated controls. The number of developed capitula was reduced 67% by mowing but was unaffected by bud damage. Mowed plants redistributed resources from root to flower production. Both treatments reduced mean capitulum diameter. This resulted in reductions of 76% and 21% in estimated seed number for mowed and bud damaged plants respectively. Root abundance decreased and root life‐span was reduced by both treatments. Soil moisture depletion was greatest from mid‐May to mid‐July (from 21% to 9%) and occurred after maximum root abundance. Mowing resulted in a delay in soil moisture depletion compared with the bud damaged plants or the untreated controls. Bud/capitula damage did not affect C. solstitialis's requirement for soil water. Overall, this study supported the hypothesis that mowing reduced C. solstitialis growth and reproduction more than bud damage alone. This information will aid managers in selecting a strategy for managing C. solstitialis in a particular habitat. 相似文献
84.
85.
86.
Neal R. Spencer 《国际虫害防治杂志》2013,59(4):444-450
Abstract The Agricultural Research Service of the USDA has been actively engaged in research on the biological control of aquatic weeds since 1959. Research emphasis until 1967 was on alligatorweed, Alternanthera philoxeroides (Mart.) Griseb. As a result of this research, three species of insects from Argentina were released in the southeastern United States. Alligatorweed control with these natural enemies has been variable; but indications are that control will be substantial over most of the range of the weed. One species of weevil, Neochetina eichhorniae Warner, has been released against water hyacinth, Eichhornia crassipes (Mart.) Solms, in the USA as a result of research in Argentina. A second closely related species, N. bruchi Hustache, is presently undergoing final clearance procedures. Several other arthropods are being studied in Argentina as possible biological control agents of water hyacinth. A USA sponsored programme in Yugoslavia under the direction of Dr M Leki? resulted in the discovery of two insect species that show potential as control agents for eurasian watermilfoil, Myriophyllum spicatum L. Further testing for host specificity of these insects will be carried out in the USA in quarantine in Florida. A USA sponsored Pakistan programme under Dr M. A. Ghani is investigating insects and other phytophagous organisms attacking Hydrilla verticillata Royle. The results are encouraging. PANS 20: 444–450, 1974. 相似文献
87.
88.
Adult mesenchymal stromal cells are plastic-adherent cells that are self-renewing and have the capacity to differentiate into various tissue specific lineages. Stromal cells were initially discovered over 100 years ago and substantial insight into stromal cell identification, isolation, characterization, and differentiation has been made, including efforts to elucidate the factors involved in stromal cell differentiation. Stromal cells have immune privilege and thus are attractive candidates for tissue engineering and regenerative medicine applications. Positive results from a number of recent investigations support the use of adult mesenchymal stromal cells for clinical application. This review article provides a brief overview of past, present, and future stromal cell technology. 相似文献
89.
Summary Seed tubers of cv. Majestic harvested from untreated plants in August had fewer sclerotia ofR. solani at the rose than at the heel end. As plant growth ceased in September and tubers matured, sclerotia formed on the rose end
so that all regions of the tuber had similar concentrations. In a preliminary experiment in the previous year, presumably
influenced by seasonal factors, the onset of maturity was such that the rose end had the highest and the heel end significantly
the lowest concentration of sclerotia. In the second season destroying haulms with acid decreased both the time necessary
for tuber maturation and the accompanying change of distribution of sclerotia when spraying was done in August but not if
it was delayed until September. The results can be explained, in part, by postulating tuber exudates as a source of nutrition
for the fungus.
Zusammenfassung Die Untersuchung verschiedener Lagerposten von Pflanzkartoffelknollen liess vermuten, dass die Verteilung von Sklerotien vonRhizoctonia solani Kühn auf den Knollen nicht zuf?llig ist. Diese Annahme wurde geprüft, indem Knollen aus zwei Feldversuchen untersucht wurden. Im ersten Jahr waren die Pflanzknollen auf natürliche Weise mit Sklerotien infiziert. Im zweiten Jahr wurde jede Knolle vor dem Auspflanzen mit einem Standardinokulum behandelt. Im ersten Jahr wurde das Kraut Mitte September mit S?ure (ca. 11.5% H2SO4; 11251/ha) behandelt oder blieben unbehandelt. Der Bestand wurde vier Wochen sp?ter geerntet. Im zweiten Jahr wurde das Kraut an einem von fünf Daten gespritzt oder nicht gespritzt und nachher in Abst?nden geerntet (Tabelle 1). Jede Knolle war in vier gleiche Abschnitte eingeteilt, der erste beim Kronen- und der letzte beim Nabelende, und wurde, wie in Tabelle 2 aufgeführt, auf Sklerotien bonitiert. Im zweiten Jahr wurde durch jede Knolle ein L?ngsschnitt gemacht und der Prozentsatz des Periderms notiert, das — beginnend am Kronenende — mit einer Pinzette entfernt werden konnte. Das Ergebnis wurde als Beurteilung der ‘Reife’ verwendet. Die Ergebnisse des ersten Jahres (Tabelle 3) zeigten, dass ein signifikanter Zusammenhang zwischen dem Knollenabschnitt und dem Grad der Infektion besteht. Das Kronenende wies das gr?sste Infektionsvorkommen auf, das Nabelende signifikant weniger. Die Histogramme in den Abb. 1 und 2 sind für das zweite Jahr und zeigen die Konzentration der Sklerotien auf s?ure-bzw, unbehandelten Parzellen. Die Leichtigkeit, mit welcher das Periderm von diesen Knollen entfernt werden konnte, wird in Abb. 3 dargestellt. Im August geerntete Saatknollen von unbehandelten Pflanzen wiesen am Kronenende weniger Sklerotien auf als am Nabelende. Als das Pflanzenwachstum im September aufh?rte und die Knollen reiften, bildeten sich am Kronenende Sklerotien. so dass alle Knollenteile gleiche Konzentrationen aufwiesen. Durch die Kraut vernichtung mit S?ure nahmen sowohl die für das Reifen der Knollen notwendige Zeit als auch der damit einhergehende Wechsel der Sklerotienverteilung ab, sofern das Spritzen im August geschah, aber nicht, wenn es bis September verschoben wurde. Unterschiede in der Sklerotien verteilung zwischen den Ergebnissen des ersten Jahres und einem entsprechenden Datum der Krautvernichtung und der Ernte im zweiten Jahr dürften saisonbedingten Unterschieden, welche die Reifeverh?ltnisse beeinflussten, zuzuschreiben sein. Die Ergebnisse k?nnen teilweise erkl?rt werden, wenn man voraussetzt, dass Knollenausscheidungen dem Pilz als Nahrungsquelle dienen, die auf einer jungen Knolle das Pilzwachstum anregt, w?hrend deren Entzug bei der Reifung der Knolle Sklerotienbildung verursacht.
Résumé Un examen de plusieurs lots de tubercules de pomme de terre de semence suggérait que la distribution àleur surface des sclérotes deRhizoctonia solani Kühn n’était pas au hasard. Cettesuggestion a été contrólée en examinant des tubercules récoltés dans deux champs expérimentaux. La première année, les tubercules de semence étaient infectés naturellement par des sclérotes, mais la seconde année un inoculum standard était appliqué à chaque tubercule préalablement à la plantation. La première année, les fanes étaient traitées ou non à l’acide sulfurique (11,5%H2SO4: 1125l/ha) à la mi-septembre et la récolte faite 4 semaines plus tard: la seconde année, les fanes étaient traitées ou non à l’une des 5 dates mentionnées dans le tableau 1 et récoltées à intervalles réguliers par la suite. Chaque tubercule était divisé en 4 régions égales, la première étant à la couronne et la dernière au talon et la présence de sclérotes notée conformément au tableau 2. La seconde année seulement. chaque tubercule était coupé selon l’axe longitudinal et on notait le pourcentage de périderme, se trouvant à l’extrémité de la couronne, qui pouvait être enlevé à l’aide de petites pinces; le résultat était considéré comme une méthode d’appréciation de la maturité. Les résultats de la première année (tableau 3) ont montré qu’ily avait une relation significative entre la région du tubercule et le niveau d’infection à sa surface. L’extrémité de la couronne avait la plus grande contamination. l’extrémité du talon significativement moins. Les histogrammes des figures 1 et 2 concernent la seconde année et indiquent la concentration de sclérotes respectivement sur les parcelles traitées et non traitées à l’acide. La facilité avec laquelle le périderme peut être enlevé de ces tubercules est montrée à la figure 3. Les tubercules de semence. récoltés à partir de plantes non traitées au mois d’ao?t, avaient moins de sclérotes à la couronne qu’au talon. Dès que la pousse des plantes cessa en septembre et que les tubercules m?rirent, les sclérotes se formèrent tellement à la couronne que toutes les parties du tubercule eurent des concentrations identiques. En détruisant les fanes avec de l’acide, on obtint à la fois une réduction du temps nécessaire à la maturation des tubercules et une modification de distribution des sclérotes avec la pulvérisation en ao?t mais en la repoussant jusqu’à septembre. Les diffèrences dans la distribution des sclérotes entre les résultats de la première année et une date correspondante de destruction des fanes et de récolte dans la deuxième année peuvent en être attribuées aux différences de saisons, affectant la vitesse de maturation. Les résultats peuvent être expliqués en partie en postulant quel’exudation des tubercules est une source de nourriture pour les champignons, ce qui, sur un jeune tubercule, stimule la croissance des champignons tandis que son absence, lorsqu’un tubercule m?rit, provoque la formation des sclérotes.相似文献
90.
Johnson L Gough J Spencer Y Hewinson G Vordermeier M Wangoo A 《Veterinary immunology and immunopathology》2006,111(3-4):219-229
Development of necrotic granulomas in response to Mycobacterium bovis infection in cattle is pathognomonic for bovine tuberculosis. Previously our laboratory reported on M. bovis granuloma classification by stage of lesion advancement within bovine lymph nodes and developed immunohistochemical markers to further characterize these granulomas. In this study of bovine lymph node granulomas we applied this classification system to assess the dynamics of vaccination challenge. Lymph nodes collected from cattle vaccinated with M. bovis bacillus Calmette-Guerin (BCG) and subsequently challenged with virulent M. bovis were compared to lymph nodes from unvaccinated, challenged cattle. Expression of interferon-gamma (IFN-gamma), transforming growth factor-beta (TGF-beta), type I procollagen and cell marker identification of T cells, B cells, macrophages and WC1(+)gammadelta TCR+ cells were assessed. Granulomas formed in vaccinated cattle were greatly reduced in number, area, degree of necrosis and peripheral fibrosis and contained fewer Langhans' giant cells, acid fast bacilli, WC1(+)gammadelta TCR+ cells and less TGF-beta expression in comparison to controls. B cells clustered intensely along the outer granuloma margins within vaccinated calves, with significantly more IFN-gamma producing cells identified in the medullary regions of lymph nodes from BCG-vaccinated animals compared to unvaccinated controls. This may be indicative of immune activation and surveillance in regions not directly associated with ongoing disease. Lymph node evaluation using light microscopy and immunohistochemical markers is useful to assess the immune response and discriminate granulomas to determine vaccine efficacy and disease severity. 相似文献