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The trait that is common to all invertebrates is the absence of a vertebral column (backbone): this creates a distinction between invertebrates and vertebrates. The distinction is one of convenience only; it is not based on any clear biologically homologous trait, any more than the common trait of having wings functionally unites insects, bats ...
The vertebrates share one body plan, while invertebrates have many. This term, usually applied to animals, envisages a "blueprint" encompassing aspects such as symmetry, layers, segmentation, nerve, limb, and gut disposition. Evolutionary developmental biology seeks to explain the origins of diverse body plans.
In most fish, and a number of other aquatic animals (both vertebrates and invertebrates), the respiratory system consists of gills, which are either partially or completely external organs, bathed in the watery environment. This water flows over the gills by a variety of active or passive means.
Chordates (Vertebrates and closely related invertebrates) 530 Olfactores: Excludes cephalochordates (Lancelets) Subphylum: Vertebrata: Fish / Vertebrates: 505 Infraphylum: Gnathostomata: Jawed fish: 460 Teleostomi: Bony fish: 420 Sarcopterygii: Lobe finned fish Superclass: Tetrapoda: Tetrapods (animals with four limbs) 395 Amniota
Invertebrates represent 97% of all named animal species, [1] and because of that fact, this subdivision of zoology has many further subdivisions, including but not limited to: Arthropodology - the study of arthropods, which includes; Arachnology - the study of spiders and other arachnids; Entomology - the study of insects; Carcinology - the ...
Balanoglossus, an example of a Hemichordata, represents an "evolutionary link" between invertebrates and vertebrates. In addition to the simple observation that the dorsoventral axes of protostomes and chordates appear to be inverted with respect to each other, molecular biology provides some support for the inversion hypothesis.
The biological systematics and taxonomy of invertebrates as proposed by Richard C. Brusca and Gary J. Brusca in 2003 is a system of classification of invertebrates, as a way to classify animals without backbones. [1]
Cephalopods are widely regarded as the most intelligent of the invertebrates and have well-developed senses and large brains (larger than those of gastropods). [13] The nervous system of cephalopods is the most complex of the invertebrates [14] [15] and their brain-to-body-mass ratio falls between that of endothermic and ectothermic vertebrates.
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