Animals in a bacterial world, a new imperative for the life sciences

Животные в бактериальном мире: новый императив для наук о жизни
Hannah V. Carey, Kenneth H. Nealson, Nicole King, Jon G. Sanders, Jessica L. Metcalf, Staffan Kjelleberg, Sarkis K. Mazmanian, Edward G. Ruby, Diethard Tautz, Angela E. Douglas, John F. Rawls, Ute Hentschel, Gérard Eberl, Margaret McFall‐Ngai, Michael G.‏ Hadfield, Thomas C. G. Bosch, Tomislav Domazet‐Lošo, Nicole Dubilier, Tadashi Fukami, Scott F. Gilbert, Andrew H. Knoll, Natacha Kremer, Naomi E. Pierce, Ann Reid, Mary E. Rumpho, Jennifer J. Wernegreen
2013-02-07

animal symbiosisanimal-bacterial interactionseco-evolutionary dynamics of host-microbe relationshipshost-microbe genome interactionsmicrobiome and animal development
In the last two decades, the widespread application of genetic and genomic approaches has revealed a bacterial world astonishing in its ubiquity and diversity. This review examines how a growing knowledge of the vast range of animal-bacterial interactions, whether in shared ecosystems or intimate symbioses, is fundamentally altering our understanding of animal biology. Specifically, we highlight recent technological and intellectual advances that have changed our thinking about five questions: how have bacteria facilitated the origin and evolution of animals; how do animals and bacteria affect each other's genomes; how does normal animal development depend on bacterial partners; how is homeostasis maintained between animals and their symbionts; and how can ecological approaches deepen our understanding of the multiple levels of animal-bacterial interaction. As answers to these fundamental questions emerge, all biologists will be challenged to broaden their appreciation of these interactions and to include investigations of the relationships between and among bacteria and their animal partners as we seek a better understanding of the natural world.
1
Animals and bacteria mutually influence each other's genomes.
2
Bacteria have played facilitating roles in the origin and evolution of animals.
3
Genetic and genomic approaches have revealed bacterial ubiquity and diversity, fundamentally altering understanding of animal biology.
4
Homeostasis in animals is maintained through interactions with their symbiotic bacteria, requiring ecological approaches to understand multiple interaction levels.
5
Normal animal development depends on bacterial partners.

Animal–bacterial interactions (including shared ecosystems and intimate symbioses)

How bacterial diversity and associations influence animal biology: roles in origin and evolution of animals, genome interactions, development dependence, host–symbiont homeostasis, and multilevel ecological interactions

Publication Details
Publication Date
2013-02-07
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Hannah V. Carey
Kenneth H. Nealson
Nicole King
Jon G. Sanders
Jessica L. Metcalf
Staffan Kjelleberg
Sarkis K. Mazmanian
Edward G. Ruby
Diethard Tautz
Angela E. Douglas
John F. Rawls
Ute Hentschel
Gérard Eberl
Margaret McFall‐Ngai
Michael G.‏ Hadfield
Thomas C. G. Bosch
Tomislav Domazet‐Lošo
Nicole Dubilier
Tadashi Fukami
Scott F. Gilbert
Andrew H. Knoll
Natacha Kremer
Naomi E. Pierce
Ann Reid
Mary E. Rumpho
Jennifer J. Wernegreen
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%