Biological mechanisms of marine invasions

被引:54
|
作者
Papacostas, Katherine J. [1 ]
Rielly-Carroll, Elizabeth W. [1 ]
Georgian, Samuel E. [1 ]
Long, Dustin J. [1 ]
Princiotta, Sarah D. [1 ]
Quattrini, Andrea M. [1 ]
Reuter, Kim E. [1 ]
Freestone, Amy L. [1 ]
机构
[1] Temple Univ, Dept Biol, Philadelphia, PA 19122 USA
基金
美国国家科学基金会;
关键词
Species invasion; Non-native; Negative interactions; Competition; Consumer pressure; Positive interactions; Invader traits; Evolution; DARWINS NATURALIZATION HYPOTHESIS; ALGA CAULERPA-TAXIFOLIA; BIOTIC RESISTANCE; PROPAGULE PRESSURE; CONCEPTUAL FRAMEWORKS; FUNCTIONAL DIVERSITY; RECONCILING PATTERN; SPECIES RICHNESS; NONNATIVE OYSTER; CARCINUS-MAENAS;
D O I
10.3354/meps12001
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
With expanding trade resulting in increased global transport of non-native species, a broader understanding of the mechanisms of marine invasions is becoming increasingly crucial. Yet our understanding of marine invasions lags behind that of terrestrial invasions, and this includes our understanding of fundamental biological mechanisms that influence marine invasion success. We used a systematic search of over 3000 peer-reviewed papers to review the marine invasion literature, identify overarching patterns, and help direct future research. We focus on 4 biological mechanisms: negative interactions (e.g. limiting similarity, biotic resistance, enemy release, novel weapons), positive interactions, invader traits, and post-introduction evolution, as they relate to understanding marine invasion success. A total of 470 studies (264 non-native species) were reviewed, resulting in the largest review of biological mechanisms of marine invasions to date. Negative interactions and invader traits received the majority of attention in the literature. Most negative interaction studies documented an increase in invasion success resulting from avoidance or release from competitors or consumer pressure. Consumer pressure, and predation in particular, compared to competition was more commonly documented as a mechanism that can limit invasion success. Despite limited evaluation, positive interactions and post-introduction evolution showed potential for enhancing invasion success. Invader trait studies highlighted the importance of life history and stress tolerance traits. Future studies that examine interactions at multiple scales and utilize multi-faceted approaches, molecular techniques, and predictive modeling will enhance our knowledge and ability to develop strategies to protect native ecosystems.
引用
收藏
页码:251 / 268
页数:18
相关论文
共 50 条
  • [31] PREDICTION AND BIOLOGICAL INVASIONS
    DAEHLER, CC
    STRONG, DR
    TRENDS IN ECOLOGY & EVOLUTION, 1993, 8 (10) : 380 - 380
  • [34] Crypticity in Biological Invasions
    Jaric, Ivan
    Heger, Tina
    Monzon, Federico Castro
    Jeschke, Jonathan M.
    Kowarik, Ingo
    McConkey, Kim R.
    Pysek, Petr
    Sagouis, Alban
    Essl, Franz
    TRENDS IN ECOLOGY & EVOLUTION, 2019, 34 (04) : 291 - 302
  • [35] The economics of biological invasions
    Edwards-Jones, G
    ENVIRONMENTAL VALUES, 2003, 12 (01) : 138 - 140
  • [37] THE ECOLOGY OF BIOLOGICAL INVASIONS
    MOONEY, HA
    DRAKE, JA
    ENVIRONMENT, 1987, 29 (05): : 10 - &
  • [38] The round goby genome provides insights into mechanisms that may facilitate biological invasions
    Adrian-Kalchhauser, Irene
    Blomberg, Anders
    Larsson, Tomas
    Musilova, Zuzana
    Peart, Claire R.
    Pippel, Martin
    Solbakken, Monica Hongroe
    Suurvaeli, Jaanus
    Walser, Jean-Claude
    Wilson, Joanna Yvonne
    Alm Rosenblad, Magnus
    Burguera, Demian
    Gutnik, Silvia
    Michiels, Nico
    Toepel, Mats
    Pankov, Kirill
    Schloissnig, Siegfried
    Winkler, Sylke
    BMC BIOLOGY, 2020, 18 (01)
  • [39] Marine protected communities against biological invasions: A case study from an offshore island
    Gestoso, I.
    Ramalhosa, P.
    Oliveira, P.
    Canning-Clode, J.
    MARINE POLLUTION BULLETIN, 2017, 119 (01) : 72 - 80
  • [40] The round goby genome provides insights into mechanisms that may facilitate biological invasions
    Irene Adrian-Kalchhauser
    Anders Blomberg
    Tomas Larsson
    Zuzana Musilova
    Claire R. Peart
    Martin Pippel
    Monica Hongroe Solbakken
    Jaanus Suurväli
    Jean-Claude Walser
    Joanna Yvonne Wilson
    Magnus Alm Rosenblad
    Demian Burguera
    Silvia Gutnik
    Nico Michiels
    Mats Töpel
    Kirill Pankov
    Siegfried Schloissnig
    Sylke Winkler
    BMC Biology, 18