On the development of a predictive functional trait approach for studying terrestrial arthropods

被引:93
作者
Brousseau, Pierre-Marc [1 ]
Gravel, Dominique [2 ]
Handa, Ira Tanya [1 ]
机构
[1] Univ Quebec Montreal, Dept Sci Biol, Montreal, PQ, Canada
[2] Univ Sherbrooke, Canada Res Chair Integrat Ecol, Dept Biol, Sherbrooke, PQ, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
biotic interactions; food webs; functional ecology; insects; intraspecific trait variation; spiders; BODY-SIZE RELATIONSHIPS; COMMUNITY ECOLOGY; INTRASPECIFIC VARIABILITY; ECOSYSTEM PROCESSES; FLOWER VISITATION; PLANT-COMMUNITIES; SOIL PROCESSES; BIODIVERSITY; SPIDERS; DECOMPOSITION;
D O I
10.1111/1365-2656.12834
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
The characterization of ecological communities with functional traits allows to consider simultaneously the ability of a species to survive and reproduce in an environment, its interactions with other species and its effects on the ecosystem. Functional traits have been studied mainly by plant ecologists, but are increasingly common in the study of other taxa including arthropods. Arthropods represent a group for which a functional trait approach could be highly profitable because of their high diversity, abundance, ubiquity and role in many important ecological processes. This review synthesizes two decades of functional trait research on terrestrial arthropods. We show that while the approach has gained popularity, particularly in the last decade, the absence of clearly postulated hypotheses is a recurrent problem limiting generalization. Furthermore, studied traits are often poorly related to studied functions. To address these problems, we propose a step-by-step protocol to postulate clear hypotheses prior to trait selection and emphasize the need for a common set of more generalizable traits in future studies. Extending the functional trait approach to arthropods opens the door to improving our understanding of interspecific interactions and potential links between response and effect traits. We present the concept of trait-matching with several examples of arthropod traits known to be effective predictors of consumer-resource interactions. The development of a successful functional trait approach for terrestrial arthropods will necessitate an understanding of relevant traits, standardized measurement protocols and open access databases to share this information. Such progress will provide ecologists with a new set of tools to answer broad questions in several fields including the study of community assembly, ecological networks and multitrophic functionality.
引用
收藏
页码:1209 / 1220
页数:12
相关论文
共 98 条
  • [1] When and how should intraspecific variability be considered in trait-based plant ecology?
    Albert, Cecile H.
    Grassein, Fabrice
    Schurr, Frank M.
    Vieilledent, Ghislain
    Violle, Cyrille
    [J]. PERSPECTIVES IN PLANT ECOLOGY EVOLUTION AND SYSTEMATICS, 2011, 13 (03) : 217 - 225
  • [2] [Anonymous], 2010, PLANT TRAITS VEGETAT
  • [3] The geographic scaling of biotic interactions
    Araujo, Miguel B.
    Rozenfeld, Alejandro
    [J]. ECOGRAPHY, 2014, 37 (05) : 406 - 415
  • [4] Baird Donald J., 2011, Integrated Environmental Assessment and Management, V7, P209, DOI 10.1002/ieam.129
  • [5] A common framework for identifying linkage rules across different types of interactions
    Bartomeus, Ignasi
    Gravel, Dominique
    Tylianakis, Jason M.
    Aizen, Marcelo A.
    Dickie, Ian A.
    Bernard-Verdier, Maud
    [J]. FUNCTIONAL ECOLOGY, 2016, 30 (12) : 1894 - 1903
  • [6] Plasticity of life-cycle, physiological thermal traits and Hsp70 gene expression in an insect along the ontogeny: Effect of temperature variability
    Belen Arias, Maria
    Josefina Poupin, Maria
    Lardies, Marco A.
    [J]. JOURNAL OF THERMAL BIOLOGY, 2011, 36 (06) : 355 - 362
  • [7] The ecology of individuals:: Incidence and implications of individual specialization
    Bolnick, DI
    Svanbäck, R
    Fordyce, JA
    Yang, LH
    Davis, JM
    Hulsey, CD
    Forister, ML
    [J]. AMERICAN NATURALIST, 2003, 161 (01) : 1 - 28
  • [9] Brose U, 2006, ECOLOGY, V87, P2411, DOI 10.1890/0012-9658(2006)87[2411:CBRINF]2.0.CO
  • [10] 2