Organization and distribution of glomeruli in the bowhead whale olfactory bulb.

Although modern baleen whales (Mysticeti) retain a functional olfactory system that includes olfactory bulbs, cranial nerve I and olfactory receptor genes, their olfactory capabilities have been reduced to a great degree. This reduction likely occurred as a selective response to their fully aquatic...

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Main Authors: Kishida, Takushi, Thewissen, JGM, Usip, Sharon, Suydam, Robert S., George, John C.
Other Authors: 岸田, 拓士
Format: Article in Journal/Newspaper
Language:English
Published: PeerJ 2015
Subjects:
Online Access:http://hdl.handle.net/2433/218222
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record_format openpolar
spelling ftkyotouniv:oai:repository.kulib.kyoto-u.ac.jp:2433/218222 2023-05-15T15:35:59+02:00 Organization and distribution of glomeruli in the bowhead whale olfactory bulb. Kishida, Takushi Thewissen, JGM Usip, Sharon Suydam, Robert S. George, John C. 岸田, 拓士 2015-04-28 application/pdf http://hdl.handle.net/2433/218222 eng eng PeerJ 10.7717/peerj.897 2167-8359 http://hdl.handle.net/2433/218222 PeerJ 2015 3 e897 25945304 © 2015 Kishida et al. Distributed under Creative Commons CC-BY 4.0 CC-BY Brain Baleen whale Cetacea Olfactory marker protein Mysticeti Olfactory receptor Journal Article 2015 ftkyotouniv 2017-10-28T22:59:54Z Although modern baleen whales (Mysticeti) retain a functional olfactory system that includes olfactory bulbs, cranial nerve I and olfactory receptor genes, their olfactory capabilities have been reduced to a great degree. This reduction likely occurred as a selective response to their fully aquatic lifestyle. The glomeruli that occur in the olfactory bulb can be divided into two non-overlapping domains, a dorsal domain and a ventral domain. Recent molecular studies revealed that all modern whales have lost olfactory receptor genes and marker genes that are specific to the dorsal domain. Here we show that olfactory bulbs of bowhead whales (Balaena mysticetus) lack glomeruli on the dorsal side, consistent with the molecular data. In addition, we estimate that there are more than 4, 000 glomeruli elsewhere in the bowhead whale olfactory bulb, which is surprising given that bowhead whales possess only 80 intact olfactory receptor genes. Olfactory sensory neurons that express the same olfactory receptors in rodents generally project to two specific glomeruli in an olfactory bulb, implying an approximate 1:2 ratio of the number of olfactory receptors to the number of glomeruli. Here we show that this ratio does not apply to bowhead whales, reiterating the conceptual limits of using rodents as model organisms for understanding the initial coding of odor information among mammals. Article in Journal/Newspaper Balaena mysticetus baleen whale baleen whales bowhead whale Kyoto University Research Information Repository (KURENAI)
institution Open Polar
collection Kyoto University Research Information Repository (KURENAI)
op_collection_id ftkyotouniv
language English
topic Brain
Baleen whale
Cetacea
Olfactory marker protein
Mysticeti
Olfactory receptor
spellingShingle Brain
Baleen whale
Cetacea
Olfactory marker protein
Mysticeti
Olfactory receptor
Kishida, Takushi
Thewissen, JGM
Usip, Sharon
Suydam, Robert S.
George, John C.
Organization and distribution of glomeruli in the bowhead whale olfactory bulb.
topic_facet Brain
Baleen whale
Cetacea
Olfactory marker protein
Mysticeti
Olfactory receptor
description Although modern baleen whales (Mysticeti) retain a functional olfactory system that includes olfactory bulbs, cranial nerve I and olfactory receptor genes, their olfactory capabilities have been reduced to a great degree. This reduction likely occurred as a selective response to their fully aquatic lifestyle. The glomeruli that occur in the olfactory bulb can be divided into two non-overlapping domains, a dorsal domain and a ventral domain. Recent molecular studies revealed that all modern whales have lost olfactory receptor genes and marker genes that are specific to the dorsal domain. Here we show that olfactory bulbs of bowhead whales (Balaena mysticetus) lack glomeruli on the dorsal side, consistent with the molecular data. In addition, we estimate that there are more than 4, 000 glomeruli elsewhere in the bowhead whale olfactory bulb, which is surprising given that bowhead whales possess only 80 intact olfactory receptor genes. Olfactory sensory neurons that express the same olfactory receptors in rodents generally project to two specific glomeruli in an olfactory bulb, implying an approximate 1:2 ratio of the number of olfactory receptors to the number of glomeruli. Here we show that this ratio does not apply to bowhead whales, reiterating the conceptual limits of using rodents as model organisms for understanding the initial coding of odor information among mammals.
author2 岸田, 拓士
format Article in Journal/Newspaper
author Kishida, Takushi
Thewissen, JGM
Usip, Sharon
Suydam, Robert S.
George, John C.
author_facet Kishida, Takushi
Thewissen, JGM
Usip, Sharon
Suydam, Robert S.
George, John C.
author_sort Kishida, Takushi
title Organization and distribution of glomeruli in the bowhead whale olfactory bulb.
title_short Organization and distribution of glomeruli in the bowhead whale olfactory bulb.
title_full Organization and distribution of glomeruli in the bowhead whale olfactory bulb.
title_fullStr Organization and distribution of glomeruli in the bowhead whale olfactory bulb.
title_full_unstemmed Organization and distribution of glomeruli in the bowhead whale olfactory bulb.
title_sort organization and distribution of glomeruli in the bowhead whale olfactory bulb.
publisher PeerJ
publishDate 2015
url http://hdl.handle.net/2433/218222
genre Balaena mysticetus
baleen whale
baleen whales
bowhead whale
genre_facet Balaena mysticetus
baleen whale
baleen whales
bowhead whale
op_relation 10.7717/peerj.897
2167-8359
http://hdl.handle.net/2433/218222
PeerJ
2015
3
e897
25945304
op_rights © 2015 Kishida et al. Distributed under Creative Commons CC-BY 4.0
op_rightsnorm CC-BY
_version_ 1766366329468616704