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Summary

Myoblasts, muscle cells with the capacity to divide, have been detected in “Anlagen” of the male copulation organ of Lymnaea stagnalis. They only occur in the apical part of the penis. Here they could be found throughout life. Mitotic activity of these cells can be demonstrated by using an antiserum to a S-phase specific cell cycle marker, PCNA [see, e.g., Baserga (1991)]. The number/percentage of PCNA positive myoblasts is a good parameter for growth of this male copulation organ and hence also for inhibition of its growth and development as occurs in parasitized snails. In transplantation experiments, “Anlagen” of the copulation organ were used from snails 7–9 weeks after being parasitized as they can be excised in this stage and transplanted into either parasitized or nonparasitized snails. These experiments have indicated that humoral, parasitic excretory/secretory factors can be responsible for the inhibition of growth and differentiation of the copulation organ in parasitized snails as reflected by a relatively low number of PCNA positive myoblasts compared to the controls. Data obtained in in vitro experiments showed a significant decrease of the number of myoblasts in “Anlagen” cultured in the presence of parasitic E/S products. The fact that no significant effect was found on the relative low number of PCNA positive myoblasts is discussed. The effect of parasitic E/S products on these myoblasts appeared to be exerted in a direct way, not mediated by CNS-derived factors or by factors from cells in the connective tissue sheath around the CNS. Although it appears possible to use transplantation and/or in vitro culturing of these “Anlagen” as a bioassay for identification of the parasitic factor(s) responsible for the inhibitory effects on myoblasts, the methods are very laborious and do not seem very appropriate for testing many fractions of E/S products.  相似文献   
687.
Recent large‐cage studies with codling moth Cydia pomonella (L.) reveal that the removal of moths from an apple orchard using pheromone‐releasing traps is more effective at reducing capture in a central monitoring trap than is a mating disruption protocol without kill/capture. The present study uses open orchard 0.2‐ha plots comparing a high‐density trapping scenario with mating disruption to confirm those results. Two tortricid moth pests of tree fruit are studied: codling moth and obliquebanded leafroller Choristoneura rosaceana (Harris). Codling moth treatments include Isomate CM FLEX (ShinEtsu Ltd, Japan), nonsticky traps baited with Trécé CM lures (Trécé, Inc., Adair, Oklahoma), and sticky traps baited with Trécé CM lures, all at equal application rates of 500 dispensers ha?1, as well as a no pheromone control. These microtraps are of a novel design, small and easy to apply, and potentially inexpensive to produce. Mating disruption using Isomate CM FLEX and nonsticky traps reduces codling moth capture in standard monitoring traps by 58% and 71%, respectively. The attract‐and‐remove treatment with sticky traps reduces capture by 92%. Obliquebanded leafroller treatments include Isomate OBLR/PLR Plus and Pherocon IIB microtraps baited with Trécé OBLR lures, both applied at 500 dispensers ha?1, as well as a no pheromone control. Mating disruption reduces capture in monitoring traps by 69%. The attract‐and‐remove treatment reduces capture by 85%. Both studies suggest that an attract‐and‐remove approach has the potential to provide superior control of moth populations compared with that achieved by mating disruption operating by competitive attraction.  相似文献   
688.
ABSTRACT. Electromyograms from the abdominal dorso-ventral muscles of a freely swimming water-bug, Lethocerus cordofanus Mayr (Belostomatidae), have shown that during a normal dive of c. 30 min duration there is a gradual rise in the frequency of tonic firing of slow motor axons which brings about a compression of the abdomen. This may help to offset a small, measured, negative pressure due mainly to nitrogen loss from the ventral hairpile which is thought to act as a physical gill. Towards the end of a dive, fast axons become tonically active and surfacing behaviour occurs. These responses can be experimentally manipulated by adding or extracting gases from the subalar store of a submerged bug. Similar responses have been obtained by subjecting a bug to high external pressures in a sealed vessel, and they suggest that a bug does not normally descend deeper than 5 m. It is also shown that either hypoxia or a reduction of store volume can initiate surfacing behaviour, although the latter is probably the normal stimulus for ascent. Muscular compression of the abdomen may help to prevent the inward leak of water into the store during a dive. It may also help to ensure the continuity of the lateral pathway between the ventral hairpile and the subalar store by slightly depressing the abdominal margins. The receptors controlling the motor response do not measure movements of an air—water interface, and they are probably internal proprioceptors, although their location is unknown.  相似文献   
689.
MILLER  R. H. 《Annals of botany》1986,57(3):419-434
Evidence is presented for the existence of discrete, naturalcuticular pores concomitant with anticlinally-oriented transcuticularcanals found in the mature leaf surfaces of 26 out of 37 taxaamong 19 families. This investigation is an extension of earlierobservations made on 32 other taxa among 14 families. Dewaxed,chemically isolated, adaxial and abaxial cuticular membranesin conjunction with transverse leaf sections were examined usingordinary staining techniques. The ubiquitous pores occur randomlywith no evidence of clustering. Pore and canal diameters averageapprox. 1 µm. Canal lengths are directly related to cuticlethickness. No correlations were found between cuticle thicknessesand either pore frequencies or pore and canal diameters. Evidenceis provided by light microscopy photomicrographs. Leaf cuticles, cuticular membranes, cuticular pores, transcuticular canals, cuticular flanges  相似文献   
690.
Abstract: Expanding populations of resident Canada geese (Branta canadensis) are resulting in increased conflicts with humans. Nonlethal and humane means are needed for managing Canada goose flocks at a variety of sites, including golf courses, industrial parks, government sites, and city parks. Decreased egg production and hatching are side effects of nicarbazin, a veterinary drug used to treat coccidiosis in chickens. Capitalizing on these effects, we developed nicarbazin as a reproductive inhibitor for Canada geese and conducted a field efficacy study. We recruited study sites in 2002 and 2003. Following laboratory testing, we conducted a field efficacy trial of nicarbazin for reducing the hatchability of Canada goose eggs in spring 2004 in Oregon, USA. The study began in February 2004 at 10 sites in Oregon, with 2 control and 3 treated sites on each side of the Cascades. We fed bait daily to resident Canada geese for approximately 6 weeks. We located and monitored nests until hatching or ≥5 days beyond the expected hatching date to determine hatchability. We completed data collection in May 2004. Geese consumed 8,000 kg of bait, with 5,100 kg of OvoControl G® (Innolytics, LLC, Rancho Santa Fe, CA) 2,500-ppm nicarbazin bait consumed among 6 treated sites and 2,900 kg of untreated bait consumed among 4 control sites. We monitored 63 nests at treated sites and 46 nests at control sites to determine hatching success of eggs. There was a 62% reduction in the percentage of nests with 100% hatchability at treated sites as compared to controls. There was a 93% increase in the percentage of nests at treated sites with 0% hatchability as compared to nests with no eggs hatching at control sites. Hatchability from treated sites versus control sites was reduced 36% (F = 5.72, P = 0.0622). We submitted results from this study to support Environmental Protection Agency registration of nicarbazin as a reproductive inhibitor for use in Canada geese. We have shown that treatment of resident Canada geese with OvoControl G 2,500-ppm nicarbazin bait by licensed, trained applicators immediately prior to and during the breeding season can reduce hatchability of eggs laid by treated geese, thereby reducing recruitment of goslings into problem resident Canada goose populations.  相似文献   
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