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41.
David Strayer 《Hydrobiologia》1988,160(2):189-191
The ostracod Cypria turneri has one generation per year in Mirror Lake, New Hampshire. Juveniles hatch in January through May and reach maturity by August. The life history of this ostracod suggests that the turnover rate of the population is low. 相似文献
42.
The effect of fish predation on Cyclops life cycle 总被引:2,自引:2,他引:0
Two populations of Cyclops abyssorum tatricus studied in neighbouring alpine lakes in Tatra Mountains (southern Poland) differed in their life cycles. In the lake with planktivorous fishes, Cyclops was typically monocyclic, with highly synchronized reproduction during two winter months, while in the fishless lake its reproduction was asynchronous and continued for six months. Direct and indirect effects of fish predation on Cyclops life cycles are discussed. 相似文献
43.
The population ofP. longirostris along the Mediterranean coast of Israel spends the benthic phase of its life cycle (from body size over 15 mm) on muddy bottom deeper than 45 m. New age groups are recruited within the depth zone of 45–300 m and migrate in both inshore and offshore directions. Inshore migration is limited by unsuitable sandy ground. The limiting line for offshore migration was not found.An age group could be detected during one year within a body size range of TL = 40 mm to TL = 84.5 mm for males and to TL = 102.5 mm for females. Reproductive activity in shallow water, down to a depth of 73 m, takes place during the whole year, while in depths of 150–300 m there is an arrest of reproductive activity from June to August. 相似文献
44.
Barbara Hickel 《Hydrobiologia》1988,161(1):41-48
The life cycle of Ceratium furcoides (Levander) Langhans which features sexual reproduction is described for the first time in situ from the lake Plußsee (northern West Germany). Anisogamic copulation occurs during the bloom period in July–August by incorporation of the male gamete by the female gamete, resulting in an overwintering planozygote. The planozygote develops into a benthic hypnozygote which germinates in spring to establish a planomeiocyte. The morphology and structure of the stages of the life cycle are described using light and scanning electron microscopy. 相似文献
45.
and
1988. Aspects of the life history of Cercopithifilaria johnstoni (Nematoda:Filarioidea). International Journal for Parasitology 18: 1087–1092. Cercopithifilaria johnstoni (Nematoda:Filarioidea) occurs in the subcutaneous connective tissues of a spectrum of native murid and marsupial hosts in Eastern Australia. Life cycle studies revealed that: (i) microfilaria occur in lymphatic capillaries and extravascular connective tissue of the dermis (= ‘skin-inhabiting’), (ii) ixodid ticks, particularly Ixodes trichosuri, are intermediate hosts in nature, (iii) development from microfilariae to infective third-stage larva occurs only while the tick is off the host, that is, during ecdysis from larva to nymph or from nymph to adult. Transmission of C. johnstoni in a wild population of bush rats (Rattus fuscipes) occurred in summer and winter, and was associated with peaks in the number of larval and/or nymphal stages of ticks on rats. C. johnstoni was transmitted experimentally to bandicoots (Isoodon macrourus, Perameles nasuta), bush rats and laboratory rats (R. norvegicus), indirectly by subcutaneous inoculation of third-stage larvae and directly by tick feeding. The prepatent period was approximately 3 months and the longest duration of microfilariae in the ‘ skin’ was more than 25 months. Dermal and ocular lesions were observed in R. fuscipes. The host-parasite relationship has the potential for development as an inexpensive and practical model for human onchocerciasis. 相似文献
46.
Clifford A. Siegfried 《Hydrobiologia》1985,122(2):175-180
The life history characteristics, population dynamics and production of Pontoporeia hoyi in Lake George, New York, were studied from May 1981 through October 1982. P. hoyi, in terms of both density and standing crop, is the most prevalent member of the deep water macrobenthos of Lake George. It reproduces in the winter, with young being released in the late winter-early spring. At the southernmost study site, young released in the spring grew to 6–7 mm in length and bred during their first winter. At the remaining sites, P. hoyi required two years to complete its life cycle. This difference in life history characteristics can be related to food availability and temperature differences. The open waters of the south end of Lake George are not only more productive but are also more closely associated with the littoral zone, providing a wealth of bacteria-rich detritus for benthic deposit feeders. The greater food availability in the south basin of Lake George is reflected in significantly larger brood sizes and smaller size at maturity for P. hoyi populations from the south end of the lake.The southernmost study site has significantly greater P. hoyi density and standing crop than all other sites. The cohort of the year dominated density and standing crop at the southern site while the cohort of the previous year dominated standing crop at the other sites. Peak abundance ranged from 600 · m–2 at the north site to 2 900 · m–2 at the south site. Cohort production ranged from 2g · m–2 at the north site to 15g · m–2 at the south site. 相似文献
47.
Merritt Robert B. Kroon Wendy Hoffman Wienski Deborah A. Vincent Karen A. 《Biochemical genetics》1984,22(7-8):669-686
Genetic variation is described at 15 loci in 2 neotenic and 12 nonneotenic populations of red-spotted newts. Though high levels of genetic similarity (I=0.990) were found among all populations, allele frequencies at six of the eight most polymorphic loci show significant heterogeneity across populations. Change in allele frequencies at two of these loci (Pep-2 and Ldh-1) is significantly correlated with latitude. Interspecific homologies are established for newt peptidases based on substrate specificities and lactate dehydrogenases based on tissue distribution, thermal stability, and kinetic properties. Nonneotenic populations are highly variable (H=0.157) and neotenic populations are only slightly, but significantly, less variable (H=0.120). The high levels of heterozygosity detected in nonneotenic populations may result from large effective population size and/or environmental heterogeneity. The unexpectedly high heterozygosity values obtained for the neotenic populations may indicate adult dispersal or the presence of some previously undetected red efts at these localities. In any case, a major change in life history has apparently had little effect on the genetic structure of these populations.This research was supported by grants from the Blakeslee Fund of Smith College. 相似文献
48.
J. A. Horrocks 《International journal of primatology》1986,7(1):31-47
Life history data are presented for a population of vervets, Cercopithecusaethiops sabaeus, in Barbados, West Indies. The data were obtained from two habituated troops and from vervets captured during
a large-scale trapping program. Individuals of known age from one troop were weighed periodically, and separate growth curves
generated for males and females. The mean weight of captured adult females was 3.3 kg; that of adult males, 5.3 kg. The average
age at sexual maturity is estimated at 34 months for females and 60 months for males. Vervets give birth throughout the year,
but most infants are born between April and July. The average interbirth interval following a surviving infant is 11.8 months.
The mortality of juveniles is heaviest between birth and 2 years of age and decreases thereafter. Males emigrate from their
natal troops at sexual maturity and one incident of a juvenile female emigrating is reported. 相似文献
49.
Ken-ichi Miyaji 《Ecological Research》1986,1(3):303-322
In order to demonstrate in detail the relationship between the longevity and productivity of leaves within a canopy, a new
life table approach, the ‘bioeconomic life table’, was applied to the leaves of kidney bean plants (Phaseolus vulgaris L.) in relation to planting density and their position within the canopy.
The net photosynthetic rate for upper leaves under full daylight tended to decline gradually due to leaf senescence from about
20 days after leaf emergence, and for the lower leaves the decrease was very rapid due to both shading and senescence about
10 days after emergence.
Analysis of the survivorship curves and daily surplus production of leaves suggested that the lower and middle leaves, especially
the latter, survived without surplus production of dry matter after they had reached mean longevity, and while the upper leaves
at high density had a much shorter mean longevity, they had very large values of daily surplus production throughout the survival
period.
For the total foliage, the summed value of accumulated surplus production during the survival period was about five times
as large as the summed value of the dry weight of the dead leaves, regardless of planting density.
The daily rate of canopy leaf respiration was almost proportional to that of canopy gross photosynthesis for the various leaf
area indices of the canopy, so that there was no optimum leaf area index that maximized canopy daily surplus production. 相似文献
50.