Epiprocta in the context of "Odonata"

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⭐ Core Definition: Epiprocta

Epiprocta, also called Epiproctophora, is one of the two extant suborders of the Odonata, which contains living dragonflies (Anisoptera), as well as Epiophlebioptera, which has a single known living genus Epiophlebia. Crown group Epiprocta first appeared during the Early Jurassic. It was proposed in 1992 by Heinrich Lohmann to accommodate the inclusion of the Anisozygoptera. The latter has been shown to be not a natural suborder, but rather a paraphyletic collection of lineages, so it has been combined with the previous suborder Anisoptera, the well-known dragonflies, into the Epiprocta. The old suborder Anisoptera is proposed to become an infraorder within the Epiprocta, whereas the "anisozygopterans" included here form the infraorder Epiophlebioptera. In Lohmann's original circumscription of the Epiprocta he also included the Tarsophlebiidae in it but Rehn (2003) placed it among the Zygoptera.

Cladogram of Epiprocta after Rehn et al. 2003:

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Epiprocta in the context of Damselflies

Damselflies are flying insects of the suborder Zygoptera in the order Odonata. They are similar to dragonflies (which constitute the other odonatan suborder, Epiprocta) but are usually smaller and have slimmer bodies. Most species fold the wings along the body when at rest, unlike dragonflies which hold the wings flat and away from the body. Damselflies have existed since the Late Jurassic, and are found on every continent except Antarctica.

All damselflies are predatory insects: both nymphs and adults actively hunt and eat other insects. The nymphs are aquatic, with different species living in a variety of freshwater habitats including acidic bogs, ponds, lakes and rivers. The nymphs moult repeatedly, at the last moult climbing out of the water to undergo metamorphosis. The skin splits down the back, they emerge and inflate their wings and abdomen to gain their adult form. Their presence on a body of water indicates that it is relatively unpolluted, but their dependence on freshwater makes them vulnerable to damage to their wetland habitats.

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