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(1902)
Ncw distribution
(1985)
The behaviour and ecology of two tropical satyrinc butterflies
Kiyomitsu Ito, M. Nik (1993)
Reproductive diapause and quiescence in a tropical rice bug, Leptocorisa oratoriusEntomologia Experimentalis et Applicata, 68
M. Braby, Rhondda Jones (1995)
Reproductive patterns and resource allocation in tropical butterflies : influence of adult diet and seasonal phenotype on fecundity, longevity and egg sizeOikos, 72
H. Wolda (1978)
SEASONAL FLUCTUATIONS IN RAINFALL, FOOD AND ABUNDANCE OF TROPICAL INSECTSJournal of Animal Ecology, 47
(1993)
Overwintering of three Australian danaincs: Tirumala hamata hamata
J. Hayes (1982)
A Study of the Relationships of Diapause Phenomena and Other Life History Characters in Temperate ButterfliesThe American Naturalist, 120
A. Aicllo (1992)
Insects of Panama and Mesoamerica: Selected StudiesAustralian Entomological Magazine
Rhondda Jones, J. Rienks, L. Wilson, C. Lokkers, T. Churchill (1987)
Temperature, Development and Survival in Monophagous and Polyphagous Tropical Pierid ButterfliesAustralian Journal of Zoology, 35
Re Jones (1992)
Phenotypic Variation in Australian Eurema SpeciesAustralian Journal of Zoology, 40
(1992)
Dry season strategies of two Panamanian butterfly species
(1983)
Migration records in Australia . 3 . Danainae and Acracinae ( Lepidoptera : Nymphalidae ) in Australia
P. Brakefield, N. Reitsma (1991)
Phenotypic plasticity, seasonal climate and the population biology of Bicyclus butterflies (Satyridae) in MalawiEcological Entomology, 16
J. Menaut, J. César (1982)
The Structure and Dynamics of a West African Savanna
M. Braby (1995)
The Distribution, Status and Habitat Associations of the Satyrine (Lepidoptera: Nymphalidae) Fauna of Northeastern AustraliaAustralian Journal of Entomology, 34
(1982)
Forc\l production and regulation of primary consumers on Barro (~olordtla Island
(1987)
Reproductive stragcgics t o r thc seasonal
B. Hopkins, B. Huntley, B. Walker (1987)
Ecology of Tropical SavannasJournal of Ecology, 75
C. Frith, D. Frith (1985)
Seasonality of insect abundance in an Australian upland tropical rainforestAustral Ecology, 10
P. Brakefield, T. Larsen (1984)
The evolutionary significance of dry and wet season forms in some tropical butterfliesBiological Journal of The Linnean Society, 22
(1980)
The early stagcs of .4~ltr/~rmu
(1987)
Seasonality or opportunism in reproduction of Australian danaine butterflies: Euploea core, E.tulliolus and Tirumala hamata (Lcpidoptera)
D. Denlinger (1986)
Dormancy in tropical insects.Annual review of entomology, 31
P. Brakefield (1987)
Tropical dry and wet season polyphenism in the butterfly Melanitis leda (Satyrinae): Phenotypic plasticity and climatic correlatesBiological Journal of The Linnean Society, 31
(1983)
New food plants, life Iii\rory notcs. and distribution records for some Australian Lcpicloprcra
J. Seymour (1991)
Aspects of the ecology of Microgaster demolitor, a larval parasitoid of Helicoverpa punctigera and Helicoverpa armigera in Australia
cds) (1982) Ludo,y.v of'Trapic
M.F. Braby (1991)
Migration of Euploea core corinna (W. S. Maclcay) (Nymphalidae: Danainae) in northern Queensland, AustraliaJournal of the Australian Entomological Society, 18
D. Denlinger (1980)
Seasonal and Annual Variation of Insect Abundance in the Nairobi National Park, KenyaBiotropica, 12
G. Prance, M. Vickery (1985)
Ecology of Tropical PlantsBioScience
P. Edwards, E. Leigh, A. Rand, D. Windsor (1985)
The Ecology of a Tropical Forest.Journal of Ecology, 73
D. Owen (1971)
Tropical butterflies: The ecology and behaviour of butterflies in the tropics with special reference to African species,
Biology and Conservation of the Monarch Butterfly (cd
D. Lieberman, M. Lieberman (1984)
The causes and consequences of synchronous flushing in a dry tropical forestBiotropica, 16
John Taylor, D. Tulloch (1985)
Rainfall in the wet‐dry tropics: Extreme events at Darwin and similarities between years during the period 1870–1983 inclusiveAustral Ecology, 10
M. Braby (1994)
Phenotypic Variation in Adult Mycalesis Hübner (Lepidoptera: Nymphalidae: Satyrinae) from the Australian Wet‐dry TropicsAustralian Journal of Entomology, 33
(1994)
Larval and adult food plants for some tropical satyrine butterflies in northern Queensland
E. Njoku (1963)
Seasonal Periodicity in the Growth and Development of some Forest Trees in Nigeria I. Observations on Mature TreesJournal of Ecology, 51
(1987)
Evolution of Insect A1,Rrution arid Diapause
(1986)
SemonalAdaptations of Insects
K. Spitzer (1983)
Seasonality of the butterfly fauna in southeastern Vietnam (Papilionoidea)The Journal of Research on the Lepidoptera
(1989)
Observation on the life history of Graphium aristeus parmatum (Gray) (Lepidoptera: Papilionidae)
Rhondda Jones, J. Rienks (1987)
Reproductive seasonality in the tropical genus Eurema (Lepidoptera: Pieridae)Biotropica, 19
E. Bucher (1982)
Chaco and Caatinga — South American Arid Savannas, Woodlands and Thickets
C. Lacey, J. Walker, I. Noble (1982)
Fire in Australian Tropical Savannas
M. Braby (1994)
Morphology of the Early Stages of Mycalesis Hübner (Lepidoptera: Nymphalidae: Satyrinae) From North‐eastern AustraliaAustralian Journal of Entomology, 33
F. Odendaal (1990)
The dry season influences reproductive parameters in female butterflies.Biotropica, 22
(1980)
Diapausc in a iropical spccicb , Cothonaspis boulardi ( Parasitic Hymcnoptci - a )
(1991)
Migration of Euploea core corinna (W. S. Maclcay) (Nymphalidae: Danainae) in northern Queensland
(1978)
The developmental rcspoiisc of flesh flies (Diptera: Sarcophagidae) to tropical scasoiis
(1991)
The life history of Everes lacturnus australis Couchman (Lepidoptcra: Lycaenidac)
D. Janzen (1973)
Sweep Samples of Tropical Foliage Insects: Effects of Seasons, Vegetation Types, Elevation, Time of Day, and InsularityEcology, 54
(1982)
Dry season aggregations of insects in Australian monsoon forcsts
Abstract. 1 In tropical savanna environments rainfall is often very seasonal, so that much of the year is characterized by a long and unpredictable dry season. Because the timing and availability of rain exerts a major influence on plant growth and production, many species during the dry period exhibit dramatic reduction in leaf quality. Accordingly, and kind of behaviour shown by phytophagous insects that synchronizes larval feeding with food availability will be adaptive. 2 The reproductive status of three Mycalesis butterflies was monitored over a 2‐year period (1989–90) in north‐eastern Queensland, Australia, at a lowland site (Cardwell, 18°16's, 146°02′E) which experiences a pronounced dry season. Females of these species and of five other satyrines (Ypthima, Hypocysta spp.) were also examined less intensively during the dry season in areas throughout northern and central Queensland, north of the tropic of Capricorn. 3 These relatively sedentary butterflies exhibit three different strategies for dealing with the unpredictable dry period and associated deterioration of larval food plants (grass). First, five species appear to breed continuously, though for most reproductive activity (mature egg number) declines markedly in the late dry season. Two of these (Hypocysta irius, H.metirius) are restricted to less seasonal and more favourable (wetter) areas but the three others (Ypthima arctous, H.adiante, H.pseudirius) occur widely in the relatively dry savanna, where they may specialize on grass in moister microenvironments. Second, two species (M.terminus, M.sirius) live in predictably moist habitats which are buffered from climatic extremes; they breed for much of the season but reproductive activity declines as the dry season progresses and may cease late in the season. Third, one species (M.perseus) is more opportunistic, breeding for only a limited interval during the favourable (wet) periods; during the long dry season adults contract to moist refugia and remain in reproductive diapause. 4 Spending the late dry season as an adult, either in diapause or with mature eggs, may improve the capacity to utilize new growth of grasses at the start of the favourable season, thereby enhancing population growth during good times. It may also provide additional flexibility to counter the temporal uncertainty of the dry season. 5 The strategy of residing in more equitable habitats or specializing on predictable foods may be the most restrictive in terms of distribution.
Ecological Entomology – Wiley
Published: Feb 1, 1995
Keywords: ; ; ; ; ; ;
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