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Homo (from Latin homō 'human') is a genus of great ape (family Hominidae) that emerged from the genus Australopithecus and encompasses only a single extant species, Homo sapiens (modern humans), along with a number of extinct species (collectively called archaic humans) classified as either ancestral or closely related to modern humans; these include Homo erectus and Homo neanderthalensis.
Homo erectus derives from early Homo or late Australopithecus. Homo habilis, although significantly different of anatomy and physiology, is thought to be the ancestor of Homo ergaster, or African Homo erectus; but it is also known to have coexisted with H. erectus for almost half a million years
The genus Homo has been taken to originate some two million years ago, since the discovery of stone tools in Olduvai Gorge, Tanzania, in the 1960s. Homo habilis (Leakey et al., 1964) would be the first "human" species (member of genus Homo) by definition, its type specimen being the OH 7 fossils.
Homininae (the hominines), is a subfamily of the family Hominidae (hominids). (The Homininae— / h ɒ m ɪ ˈ n aɪ n iː / —encompass humans, and are also called "African hominids" or "African apes".) [1] [2] This subfamily includes two tribes, Hominini and Gorillini, both having extant (or living) species as well as extinct species.
Most of them were coined since the mid 20th century in imitation of Homo sapiens in order to make some philosophical point (either serious or ironic), but some go back to the 18th to 19th century, as in Homo aestheticus vs. Homo oeconomicus; Homo loquens is a serious suggestion by Herder, taking the human species as defined by the use of ...
It is most likely that the australopithecines, dating from 4.4 to 3 Mya, evolved into the earliest members of genus Homo. [ 22 ] [ 23 ] In the year 2000, the discovery of Orrorin tugenensis , dated as early as 6.2 Mya, briefly challenged critical elements of that hypothesis, [ 24 ] as it suggested that Homo did not in fact derive from ...
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The period that followed was marked by a strong increase in cranial capacity, promoting speculation that the loss of the gene may have removed an evolutionary constraint on brain size in the genus Homo. [21] Another estimate for the loss of the MYH16 gene is 5.3 million years ago, long before Homo appeared. [22]