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Small tortoiseshell
From Wikipedia, the free encyclopedia
Small tortoiseshell
Aglais urticae
Kleine Fuchs, Aglais urticae
Scientific classification edit
Kingdom: Animalia
Clade: Euarthropoda
Class: Insecta
Order: Lepidoptera
Family: Nymphalidae
Genus: Aglais
Species: A. urticae
Binomial name
Aglais urticae
(Linnaeus, 1758)
Aglais urticae appearance.png
Synonyms
Nymphalis urticae
Vanessa urticae
The small tortoiseshell (Aglais urticae) is a colourful Eurasian butterfly in
the family Nymphalidae. Adults feed on nectar and may hibernate over winter; in
warmer climates they may have two broods in a season. While the dorsal surface
of the wings is vividly marked, the ventral surface is drab, providing
camouflage. Eggs are laid on the common nettle, on which the larvae feed.
Contents
1 Description
2 Range
3 Subspecies
4 Decline in population
4.1 Droughts
5 Life cycle
5.1 Hatching
5.2 Hibernation
6 Developmental stages
7 Behaviour
7.1 Predator defence
7.2 Territorial defence
7.3 Male-male interaction
8 Feeding
9 Migratory patterns
10 References
11 External links
Description
It is a medium-sized butterfly that is mainly reddish orange, with black and
yellow markings on the forewings as well as a ring of blue spots around the edge
of the wings. It has a wingspan ranging from 4.5–6.2 cm. Small tortoiseshell 1
butterfly
The small tortoiseshell is the national butterfly of Denmark. Small
tortoiseshell 2 butterfly
Range
It is found throughout temperate Europe, Asia Minor, Central Asia, Siberia,
China, Mongolia, Korea and Japan, wherever common nettle which their larvae feed
on is found. There are a few records from New York City which, however, are
believed to be of introduced insects.
Subspecies
A. u. urticae (Linnaeus, 1758) Europe, western Siberia, Altai
A. u. polaris (Staudinger, 1871) northern Europe, Siberia, Russian Far East
A. u. turcica (Staudinger, 1871) southern Europe, Caucasus, Transcaucasia, Kopet
Dagh, central Asia
A. u. baicalensis (Kleinschmidt, 1929) Sayan, Transbaikalia
A. u. eximia (Shelyuzhko, 1919) Amur, Ussuri
A. u. stoetzneri (Kleinschmidt, 1929) Szechuan
A. u. kansuensis (Kleinschmidt, 1940) northwest China
A. u. chinensis (Leach, 1893) China, Japan, Korea
A. u. connexa (Butler, 1882) southern Ussuri, southern Sakhalin, Kuriles, Japan
The Corsican small tortoiseshell (Aglais ichnusa) looks very similar; whether it
is a subspecies or a distinct species is yet to be determined. Nymphalis
xanthomelas and Nymphalis l-album are also similar in appearance.
Decline in population
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Once among the most common butterflies in Europe and temperate Asia, this
butterfly is in very rapid decline, at least in Western Europe. This decline
cannot be explained by the decline of its host plant, because the nettle is
widespread and even enjoys the general eutrophication of the environment. The
chrysalis is sometimes eaten by wasps, but these are also in strong regression.
The effect of other phenomena are still poorly understood (environmental
degradation, air pollution, contamination by pesticides). Scientific evidence
shows that the summer drought is a cause of declining populations, because
larvae grow normally on drenched leaves (but hatchlings were even rarer the wet
summers of 2007 and 2008). However, before 2000, according to data from an
English butterfly monitoring programme, there was a good correlation between
reproductive success, the abundance of populations of this species and the host
plant moisture stress. From 1976 to 1995, the butterfly had more success in
summers that were cool and wet at the beginning of summer than when it was hot
and dry. This butterfly may then be sensitive to global warming.
Droughts
The small tortoiseshell butterfly is severely affected by droughts. During
periods of drought, the butterfly experiences a vastly reduced reproductive
rate. The drought directly affects the Urtica leaves; the higher the nitrogen
and water level in the leaves, the more rapid the growth of the larvae. During a
drought, both of these levels drop significantly, leaving the tortoiseshell
larvae nothing to feed on. The timing of rainfall is also a crucial factor. If
there is not adequate rainfall in the early summer, then the plants will not be
able to fully develop, leaving the larvae without a suitable source of
nutrition. These butterflies actively produce smaller broods under these
conditions. Small tortoiseshell 3 butterfly
Life cycle
As with several nymphalid butterflies, the caterpillars feed on stinging nettles
(Urtica dioica) and small nettle (Urtica urens). Adults feed on nectar. The
species has one of the longest seasons of any Eurasian butterfly, extending from
early spring to late autumn. Adults overwinter in hibernation, emerging on the
first warm sunny days of the year to mate and breed. In southern parts of the
range there may be two broods each year, but northern insects are inhibited by
long length of summer days from breeding a second time. Small tortoiseshell 4
butterfly
Hatching
Tortoiseshell butterflies usually began to emerge from their pupa from mid-June
into August. They began hibernation sometime in October and immediately show
territorial behaviour after hibernation. Small tortoiseshell 5 butterfly The
tortoiseshell butterflies that are found in the north usually have one brood a
season, whereas further south these butterflies can have two broods. The ability
to go through three generations of butterflies in a year is due to the
tortoiseshell butterflies' decreased thermal requirement. The larvae of this
butterfly are social. Small tortoiseshell 6 butterfly These larvae can be found
on Urtica dioica, which have a high nitrogen content and lots of water in the
leaves. Small tortoiseshell 7 butterfly
Hibernation
The small tortoiseshell butterfly tends to enter hibernation by mid to late
September. Small tortoiseshell 5 butterfly Typically this butterfly will try to
hibernate in dark sheltered locations. Because of this hibernation, they need to
accumulate a lot of fat to survive the winter. The tortoiseshell needs at least
20% of its body weight in lipids in order to survive, making them much slower.
Small tortoiseshell 8 butterfly Towards the end of their foraging for
hibernation, they are much more susceptible to attacks by birds because of their
low muscle to body mass ratio. During the first few weeks of hibernation,
tortoiseshell butterflies are very susceptible to predator attacks. Up to 50% of
the population hibernating in any given area can be eaten. The butterflies that
hibernate in areas containing more light, and that are accessible to rodents who
can climb, are the most susceptible to this type of predation. Small
tortoiseshell 9 butterfly During hibernation tortoiseshell butterflies are able
to supercool in order to keep from freezing. In sheltered areas, these
butterflies can stand up to −21 degrees Celsius without freezing. However, they
experience rapid weight loss during unusually mild winters. Small tortoiseshell
10 butterfly
Developmental stages
Young caterpillars live in groups
Older caterpillars are solitary
Caterpillar on a stinging nettle in Oberursel, Germany
Chrysalis shortly before hatching
During oviposition
After hibernation: mid-March at Otmoor, Oxfordshire
On Echinacea in Havré, Belgium
Underside of wings
Behaviour
Predator defence
The wings of tortoiseshell butterflies help conceal them extremely well from
predators. When closed, their wings look like leaves, helping them to hide from
predators. On the ground, it may take birds up to 30 minutes to see them. In
addition to this, when discovered, tortoiseshell butterflies will flick their
wings open to reveal bright colours. While they don’t have eyespots like many
other butterflies, these bright contrasting colours can often scare a predator,
giving the tortoiseshell butterfly ample time to escape. Small tortoiseshell 11
butterfly Not only does this colouration tend to frighten birds, it can also act
as a warning. The bright red colouration serves as a cautionary sign to the
predator about the poor taste of the butterfly. Tortoiseshell butterflies tend
to be unpalatable to birds. If a bird sees this bright red colouring, then they
will be less likely to eat the butterfly. Small tortoiseshell 12 butterfly
The tortoiseshell butterfly is particularly fast. When discovered and attacked
by a predator the tortoiseshell butterfly will fly away in a straight line in
order to outrun the predator. Small tortoiseshell 13 butterfly
Territorial defence
Most butterflies fail to display any territorial behaviour, probably due to
selective environmental pressures. The female tortoiseshell butterflies
generally are found in concentrated areas, so it is advantageous for males to
stay in that particular area to increase their mating opportunities. Male
butterflies usually bask and feed until mid-day and then display territorial
behaviour until roosting. Males typically defend a certain territory for up to
90 minutes, unless they attempt to follow a female or are ousted by another
male. The next day they find a new territory to defend. These territories tend
to be in direct sunlight in areas that females choose to lay their eggs. More
often than not, two or more males may end up sharing territory if the cost of
defending the territory is greater than the benefit gained from monopolising the
females. Small tortoiseshell 5 butterfly
Male-male interaction
In order for one male butterfly to gain dominance over the other, he must reach
a position slightly above the other butterfly. The non-dominant male will then
attempt a series of dives and climbs to escape the pursuer. After a certain
distance travelled from the nest, one butterfly will return to the territory
while the other flies along in search of another suitable location. Small
tortoiseshell 5 butterfly
Feeding
For most adult butterflies, including the small tortoiseshell butterfly, nectar
is one of the main sources of nutrients. In order to obtain the nectar, the
butterfly must be able to recognize distinct floral aromas and colours. The
small tortoiseshell butterfly is able to differentiate between various flowers
through visual signals. Small tortoiseshell 14 butterfly Tortoiseshell
butterflies in particular tend to prefer colours at both ends of the visible
light spectrum for humans, 400 nm and 600 nm. Small tortoiseshell 15 butterfly
These correspond to the colours violet and red respectively. This ability comes
from their compound eye. The flowers depend on the butterflies for pollination,
so it is a mutually beneficial relationship. Small tortoiseshell 14 butterfly
Migratory patterns
During migration, tortoiseshell butterflies position themselves in accordance
with air currents; they only start migration at certain wind speeds. They are
able to do this because of an extra sensory organ in their antennae. These
butterflies have a developed Johnston's organ in their second antennae
responsible for determining air currents in a number of other insects. Small
tortoiseshell 16 butterfly Because their host plants, Urtica dioica, grow in
widely distributed areas, tortoiseshell butterflies tend to move around more
than some other butterflies. These areas tend to be short thickets and shrubs.
Small tortoiseshell 13 butterfly
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