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The reproductive ability of female tephritids can be limited and prevented by denying access to host plants and restricting the dietary precursors of vitellogenesis. The mechanisms underlying the delayed egg production in each case are initiated by different physiological processes that are anticipated to have dissimilar effects on lifespan and reproductive ability later in life. The egg‐laying abilities of laboratory‐reared females of the Mediterranean fruit fly (Ceratitis capitata Wiedmann) and melon fly (Bactrocera cucurbitae Coquillett) from Hawaii are delayed or suppressed by limiting access to host fruits and dietary protein. In each case, this is expected to prevent the loss of lifespan associated with reproduction until protein or hosts are introduced. Two trends are observed in each species: first, access to protein at eclosion leads to a greater probability of survival and a higher reproductive ability than if it is delayed and, second, delayed host access reduces lifetime reproductive ability without improving life expectancy. When host access and protein availability are delayed, the rate of reproductive senescence is reduced in the medfly, whereas the rate of reproductive senescence is generally increased in the melon fly. Overall, delaying reproduction lowers the fitness of females by constraining their fecundity for the remainder of the lifespan without extending the lifespan. © 2013 The Royal Entomological Society  相似文献   
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Studies of cuttlebone of Sepia officinalis L. from the English Channel show a direct and linear correlation between ambient water temperature and septal spacing. The application of this observation to fossil shallow-water nautiloids and ammonoids is complicated by the equatorial habitat of many of these shells, their declining rate of chamber production through ontogeny and a paucity of large and complete specimens. But annual temperature variations are the most likely cause of variations in septal spacing a priori , temperature apparently being the prime determinant of feeding and growth rates of individuals at a particular ontogenetic stage. ▭ Nautiloids, annual growth, Ordovician , Sepia, English Channel.  相似文献   
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Heterophylly in Ranunculus flabellaris Raf.: The Effect of Abscisic Acid   总被引:1,自引:0,他引:1  
Ranunculus flabellaris Raf., the Yellow Water-Crowfoot, is aheterophyllous semi-aquatic dicotyledonous plant, showing strikingmorphological and anatomical differences between terrestrialleaves and those formed underwater. After plants are submergedin a 25 µM solution of abscisic acid, leaves are producedat a normal rate but they exhibit many of the characteristicsof terrestrial leaves. Ranunculus flabellaris Raf., Yellow Water-Crowfoot, heterophylly, abscisic acid  相似文献   
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The elongate body form of snakes and the wide diversity of habitatsinto which they have radiated have affected the form and functionof the cardiovascular system. Heart position is strongly correlatedwith habitat. The heart is located 15–25% of the bodylength from the head in terrestrial and arboreal species, but25–45% in totally aquatic species. Semi-aquatic and fossorialspecies are intermediate. The viperids are exceptional, withgenerally more posterior hearts but arboreal species have heartscloser to the head. An anterior heartis favored when snakesclimb because it reduces the hydrostatic pressure of the bloodcolumn above the heart and tends to stabilize cephalic bloodpressure. In water, where hydrostatic bloodpressure is not aproblem, a more centrally located heart is favored because theheart does less work perfusing the body. In terrestrial species,head-heart distance increases linearly with body length andthe increased hydrostatic pressure is matched by higher restingarterial blood pressure in longer animals. Unlike mammals andbirds, snakes have blood pressures that increasewith body mass.The added stress on the ventricle wall in larger snakes is correlatedwith ventricles that are larger than predicted by other reptiles.Heart mass scales with body mass to the 0.95 power in snakesbut only 0.77–0.91 in other reptiles that are not as subjectto the hydrostatic effects of gravity. The spongy hearts ofreptiles do not conform well to the Principle of Laplace.  相似文献   
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ROGER M. EVANS 《Ibis》1995,137(3):340-344
Gannets (Sulidae) and some other pelecaniforms incubate their eggs under the webs of their totipalmate feet. These species have a wide latitudinal distribution from tropics to subarctic, but little is known of the incubation temperatures attained. I measured egg temperatures of the Australasian Gannet Morns serrator at Cape Kidnappers, New Zealand, employing a data logger to obtain records every 15 min for day-long sample periods at undisturbed nests. Egg surface temperatures were relatively stable and little affected by ambient temperature. Mean surface temperature of natural eggs was 34.9oC for samples taken during the first 4 days of incubation, but this then increased and stabilized at 36.5oC. Internal temperature of pipped eggs was about 1oC higher, attributable to embryonic heat production. Upper surface temperature of eggs kept in a fixed position was about 2oC below deep adult body temperature (40.3oC), suggesting heat is transferred directly from the body through the feet. Clutch size does not appear to be limited by an inability to warm two eggs. These results are in general agreement with measurements from other web incubators and are well within the range for species with conventional brood patch incubation.  相似文献   
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Abstract. The seven recognized genera of Teratomyzidae, including the new genera Stepta, Auster, Pous, Camur and Lips , are keyed and described. Vitila is a new subgenus of Teratomyza Malloch. The following five new species are described: Auster pteridii (Australia), Pous manicula (Australia), Camur willii (Brazil), Lips collessi (Australia), Teratomyza ( Vitila ) undulata (Australia). Stepta latipennis is a new combination for Teratomyza latipennis Malloch. Neogeomyza Séguy, 1938 ( Micropachycerina Stuckenberg, 1971, syn.n.) belongs in the Lauxaniidae, not Teratomyzidae. Neogeomyza stenoptera (Stuckenberg, 1971 (from Micropachycerina ) is a new combination. The family Teratomyzidae occurs in the Neotropical, Australasian, Oriental and eastern Palaearctic Regions. The third-instar larva and puparium of Auster pteridii , both of which live externally on fronds of Pteridium (Filicales: Dennstaedtiaceae), are described. Adults of many species also occur on fern fronds.  相似文献   
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