Recent advances in vertebrate and invertebrate transgenerational immunity in the light of ecology and evolution

被引:0
|
作者
Olivia Roth
Anne Beemelmanns
Seth M. Barribeau
Ben M. Sadd
机构
[1] GEOMAR Helmholtz Centre for Ocean Research Kiel,Marine Ecology
[2] Memorial University of Newfoundland,Department of Ocean Sciences
[3] University of Liverpool,Institute of Integrative Biology
[4] Illinois State University,School of Biological Sciences
来源
Heredity | 2018年 / 121卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Parental experience with parasites and pathogens can lead to increased offspring resistance to infection, through a process known as transgenerational immune priming (TGIP). Broadly defined, TGIP occurs across a wide range of taxa, and can be viewed as a type of phenotypic plasticity, with hosts responding to the pressures of relevant local infection risk by altering their offspring’s immune defenses. There are ever increasing examples of both invertebrate and vertebrate TGIP, which go beyond classical examples of maternal antibody transfer. Here we critically summarize the current evidence for TGIP in both invertebrates and vertebrates. Mechanisms underlying TGIP remain elusive in many systems, but while it is unlikely that they are conserved across the range of organisms with TGIP, recent insight into epigenetic modulation may challenge this view. We place TGIP into a framework of evolutionary ecology, discussing costs and relevant environmental variation. We highlight how the ecology of species or populations should affect if, where, when, and how TGIP is realized. We propose that the field can progress by incorporating evolutionary ecology focused designs to the study of the so far well chronicled, but mostly descriptive TGIP, and how rapidly developing -omic methods can be employed to further understand TGIP across taxa.
引用
收藏
页码:225 / 238
页数:13
相关论文
共 50 条
  • [41] RECENT ADVANCES IN IMMUNITY TO HUMAN SCHISTOSOMIASIS
    HAGAN, P
    ABATH, FGC
    MEMORIAS DO INSTITUTO OSWALDO CRUZ, 1992, 87 : 95 - 98
  • [42] Molecular detection of invertebrate prey in vertebrate diets: trophic ecology of Caribbean island lizards
    Kartzinel, Tyler R.
    Pringle, Robert M.
    MOLECULAR ECOLOGY RESOURCES, 2015, 15 (04) : 903 - 914
  • [43] Recent molecular advances in understanding vertebrate limb development
    Robertson, KE
    Tickle, C
    BRITISH JOURNAL OF PLASTIC SURGERY, 1997, 50 (02): : 109 - 115
  • [45] Light adaptation and the evolution of vertebrate photoreceptors
    Morshedian, Ala
    Fain, Gordon L.
    JOURNAL OF PHYSIOLOGY-LONDON, 2017, 595 (14): : 4947 - 4960
  • [46] INTRINSIC AND EXTRINSIC SIGNALS IN THE DEVELOPING VERTEBRATE AND FLY EYES - VIEWING VERTEBRATE AND INVERTEBRATE EYES IN THE SAME LIGHT
    REH, TA
    CAGAN, RL
    PERSPECTIVES ON DEVELOPMENTAL NEUROBIOLOGY, 1994, 2 (02) : 183 - 190
  • [47] A single vertebrate DNA virus protein disarms invertebrate immunity to RNA virus infection
    Gammon, Don B.
    Duraffour, Sophie
    Rozelle, Daniel K.
    Hehnly, Heidi
    Sharma, Rita
    Sparks, Michael E.
    West, Cara C.
    Chen, Ying
    Moresco, James J.
    Andrei, Graciela
    Connor, John H.
    Conte, Darryl, Jr.
    Gundersen-Rindal, Dawn E.
    Marshall, William L.
    Yates, John R., III
    Silverman, Neal
    Mello, Craig C.
    ELIFE, 2014, 3
  • [48] The zebrafish: A research model to understand the evolution of vertebrate immunity
    Garcia-Moreno, Diana
    Tyrkalska, Sylwia D.
    Valera-Perez, Ana
    Gomez-Abenza, Elena
    Perez-Oliva, Ana B.
    Mulero, Victoriano
    FISH & SHELLFISH IMMUNOLOGY, 2019, 90 : 215 - 222
  • [49] Recent Vertebrate and Invertebrate Burrows in Lowland and Mountain Fluvial Environments (SE Poland)
    Mikus, Pawel
    WATER, 2020, 12 (12) : 1 - 19
  • [50] Recent Advances in Data Logging for Intertidal Ecology
    Judge, Richard
    Choi, Francis
    Helmuth, Brian
    FRONTIERS IN ECOLOGY AND EVOLUTION, 2018, 6