A Text-book of Entomology: Including the Anatomy, Physiology, Embryology and Metamorphoses of Insects for Use in Agricultural and Technical Schools and Colleges as Well as by the Working EntomologistPackard, A. S. (Alpheus Spring)
Science
A Text-book of Entomology: Including the Anatomy, Physiology, Embryology and Metamorphoses of Insects for Use in Agricultural and Technical Schools and Colleges as Well as by the Working Entomologist
Packard, A. S. (Alpheus Spring)
Insects
The fore wings of Orthoptera are thicker than the hinder ones, and serve
to protect the hind-body when the wings are folded; they are sometimes
called _tegmina_. It is noteworthy, that, according to Scudder, in all
the paleozoic cockroaches the fore wings (tegmina) were as distinctly
veined as the hinder pair, “and could not in any sense be called
coriaceous.” (Pretertiary Insects of N. A., p. 39.) Scudder also
observes that in the paleozoic insects as a rule the fore and hind wings
were similar in shape and venation, “heterogeneity making its appearance
in mesozoic times.” In the heteropterous Hemiptera, also, the basal half
of the fore wings is thick and coriaceous or parchment-like, and also
protects the body when they are folded; these wings are called
_hemelytra_. In the Dermaptera the small short fore wings are thickened
and elytriform.
=The elytra.=—This thickening of the fore wings is carried out to its
fullest extent in the fore wings of beetles, where they form the
sheaths, shards, or _elytra_, under which the hind wings are folded. The
indexed costal edge is called the _epipleurum_, being wide in the
Tenebrionidæ. During flight “the elytra are opened so as to form an
angle with the body and admit of the free play of the wings” (Kirby and
Spence). In the running beetles (Carabidæ), also in the weevils and in
many Ptinidae, the hind wings are wanting, through disuse, and often the
elytra are firmly united, forming a single hard shell or case. The
firmness of the elytra is due both to the thickness of the chitinous
deposit and to the presence of minute chitinous rods or pillars
connecting the upper and lower chitinous surfaces.
[Illustration:
FIG. 139.—Longitudinal section through the edge of the elytrum of
_Lina ænea_: _gl_, glands; _r_, reservoir; _fb_, fat-body; _m_,
matrix; _u_, upper,—_l_, lower, lamella.—After Hoffbauer.
]
Hoffbauer finds that in the elytra of beetles of different families the
venation characteristic of the hind wings is wanting, the main tracheæ
being irregular or arranged in closely parallel longitudinal lines, and
nerve-fibres pass along near them, sense-organs being also present. The
fat-bodies in the cavity of the elytra, which is lined with a matrix
layer, besides nerves, tracheæ, and blood, contain secretory vesicles
filled with uric-acid concretions such as occur in the fat-body of
Lampyris. There are also a great many glands varying much in structure
and position, such occurring also in the pronotum (Fig. 139).
Meinert considers the elytra of Coleoptera to be the homologues of
the tegulæ of Lepidoptera and of Hymenoptera. He also calls
attention to the alula observed in Dyticus, situated at the base of
the elytra, but which is totally covered by the latter. The alulæ of
these beetles he regards as the homologues of the anterior wings of
Hymenoptera and Diptera. No details are given in support of these
views. (Ent. Tidskrift, i, 1880, p. 168.)
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