Over 1.5 million living animal species have been described, of which around 1.05 million are insects, over 85,000 are molluscs, and around 65,000 are vertebrates. Animals form a clade, meaning that they arose from a single common ancestor. Animals consume organic material, breathe oxygen, have muscle cells, can reproduce sexually, and grow from a hollow sphere of cells, the blastula, during embryonic development.
Everything you need to know about caring for dogs, cats, birds, fish, and exotic pets. Fresh content from wildlife researchers, zookeepers, and nature enthusiasts. EX Extinct EW Extinct in the Wild CR Critically Endangered EN Endangered VU Vulnerable NT Near Threatened LC Least Concern Oak Toad Oarfish Ocean Perch Ocean Pout Ocean Whitefish Oceanic Whitetip Shark Ocellated Turkey Ocelot Octopus Oenpelli python Oilfish Okapi Old English Sheepdog Old House Borer Oleander Hawk Moth Olingo Olive Baboon Olive python Olive Sea Snake Olm Olympic Marmot Onagadori Chicken Onager Opabinia Opah Opaleye (Rudderfish) Opossum Oranda Goldfish Orange Baboon Tarantula Orange Dream Ball Python Orange Roughy Orange Spider Orange Tanager (Orange-Headed Tanager) Orange-Crowned Warbler Orangutan Orb Weaver Orchard Oriole Orchid Dottyback Oregon Spotted Frog Ori-Pei Oribi Oriental Cockroach Oriental Dwarf Kingfisher Orinoco Crocodile Ornate Bichir Ornate Black-Tailed Rattlesnake Ornate Box Turtle Ornithocheirus Ornithomimus Ortolan Bunting Oscar Fish Osprey Ostracod Ostrich Otter Otterhound Ovenbird Oviraptor Owl Owl Butterfly Owlfly (Ascalaphidae) Ox Oxpecker Oyster Oyster Toadfish Ozark Bass A wide variety of animals are kept as pets, from invertebrates such as tarantulas, octopuses, and praying mantises, reptiles such as snakes and chameleons, and birds including canaries, parakeets, and parrots all finding a place.
The Porifera (sponges) have long been assumed to be sister to the rest of the animals, but there is evidence that the Ctenophora may be in that position. Animals are the sister group to the choanoflagellates, with which they form the Choanozoa. It is thought to be one of the earliest predators, catching small prey with its nematocysts as modern cnidarians do.
However, this suggestion has been contested, with other studies finding that xenacoelomorphs are more closely related to Ambulacraria than to other bilaterians. It is often suggested that the basalmost bilaterians are the Xenacoelomorpha, with all other bilaterians belonging to the subclade Nephrozoa. For example, adult echinoderms are radially symmetric (unlike their larvae), while some parasitic worms have extremely simplified body structures.
- The protozoa were later moved to the former kingdom Protista, leaving only the Metazoa as a synonym of Animalia.
- The digestive chamber has two openings, a mouth and an anus, and in the Nephrozoa there is an internal body cavity, a coelom or pseudocoelom.
- Selective pressures imposed on one another lead to an evolutionary arms race between predator and prey, resulting in various antagonistic/competitive coevolutions.
- Most members of Medusozoa, including jellyfish and most hydrozoans, have a polyp form as well, but also have a motile medusae stage.
- Vertebrates such as the lobe-finned fish Tiktaalik started to move on to land in the late Devonian, about 375 million years ago.
- In carnivorous or omnivorous species, predation is a consumer–resource interaction where the predator feeds on another organism, its prey, who often evolves anti-predator adaptations to avoid being fed upon.
Sponges lack the complex organisation found in most other animal phyla; their cells are differentiated, but in most cases not organised into distinct tissues, unlike all other animals. Despite their morphological dissimilarity with all other animals, genetic evidence suggests sponges may be more closely related to other animals than the comb jellies are. Sponges are physically very distinct from other animals, and were long thought to have diverged first, representing the oldest animal phylum and forming a sister clade to all other animals.
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Extant phyla in these rocks include molluscs, brachiopods, onychophorans, tardigrades, arthropods, echinoderms and hemichordates, along with numerous now-extinct forms such as the predatory Anomalocaris. The first body fossils of animals appear in the Ediacaran, represented by forms such as Charnia and Spriggina. Other animals may have very specific feeding behaviours, such as hawksbill sea turtles which mainly eat sponges. In sponges, blastula larvae swim to a new location, attach to the seabed, and develop into a new sponge. These fuse to form zygotes, which develop via mitosis into a hollow sphere, called a blastula. Animals may be listed or indexed by many criteria, including taxonomy, status as endangered species, their geographical location, and their portrayal and/or naming in human culture.
Typically, there is an internal digestive chamber with either one opening (in Ctenophora, Cnidaria, and flatworms) or two openings (in most bilaterians). Non-human animals are also an important element of human culture, having appeared in cave arts and totems since the earliest times, and are frequently featured in mythology, religion, arts, literature, heraldry, politics, and sports. In 1874, Ernst Haeckel divided the animal kingdom into the multicellular Metazoa (now synonymous with Animalia) and the Protozoa, single-celled organisms no longer considered animals. Nearly all modern animal phyla first appeared in the fossil record as marine species during the Cambrian explosion, which began around 539 million years ago (Mya), and most classes during the Ordovician radiation 485.4 Mya. Animals first appeared in the fossil record in the late Cryogenian period and diversified in the subsequent Ediacaran period in what is known as the Avalon explosion. They have complex ecologies and interactions with each other and their environments, forming intricate food webs.
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Interactions between animals of each biome form complex food webs within that ecosystem. It first invaginates to form a gastrula with a digestive chamber and two separate germ layers, an external ectoderm and an internal endoderm. In contrast, the cells of other multicellular organisms (primarily algae, taika spinni plants, and fungi) are held in place by cell walls, and so develop by progressive growth. The extracellular matrix may be calcified, forming structures such as shells, bones, and spicules. Development in Bilateria and Cnidaria is controlled by Hox genes, which signal the times and places to develop structures such as body segments and limbs.
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Animals range in size from 8.5 millionths of a metre to 33.6 metres (110 ft) long and have complex interactions with each other and their environments, forming intricate food webs. A fish is adapted to its life in water and a crab is adapted to a life catching and eating insects. Animals that eat both plants and meat are called omnivores. Other animals eat only meat and are called carnivores. Some animals eat only plants; they are called herbivores.
- It is often suggested that the basalmost bilaterians are the Xenacoelomorpha, with all other bilaterians belonging to the subclade Nephrozoa.
- People have used hunting dogs to help chase down and retrieve animals, and birds of prey to catch birds and mammals, while tethered cormorants have been used to catch fish.
- For example, adult echinoderms are radially symmetric (unlike their larvae), while some parasitic worms have extremely simplified body structures.
- Animals that eat both plants and meat are called omnivores.
- Species estimates shown here are based on numbers described scientifically; much larger estimates have been calculated based on various means of prediction, and these can vary wildly.
- The first body fossils of animals appear in the Ediacaran, represented by forms such as Charnia and Spriggina.
- The apparent suddenness of the event may however be an artefact of the fossil record, rather than showing that all these animals appeared simultaneously.
The protostomes include the Ecdysozoa, named after their shared trait of ecdysis, growth by moulting, Among the largest ecdysozoan phyla are the arthropods and the nematodes. In deuterostomes, the mesoderm forms by enterocoelic pouching, through invagination of the endoderm. In deuterostomes, the anus forms first while the mouth develops secondarily. Animals from both groups possess a complete digestive tract, but in protostomes the first opening of the embryonic gut develops into the mouth, and the anus forms secondarily.
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The apparent suddenness of the event may however be an artefact of the fossil record, rather than showing that all these animals appeared simultaneously. Analyses of pelagophyte algae consistently recover a Phanerozoic origin, while analyses of sponges recover a Neoproterozoic origin, consistent with the appearance of 24-ipc in the fossil record. Its likely origin is from sponges based on molecular clock estimates for the origin of 24-ipc production in both groups. 24-Isopropylcholestane (24-ipc) has been found in rocks from roughly 650 million years ago; it is only produced by sponges and pelagophyte algae. Species estimates shown here are based on numbers described scientifically; much larger estimates have been calculated based on various means of prediction, and these can vary wildly.
