Behaviour and indirect interactions in food webs of plant-inhabiting arthropods

被引:125
作者
Janssen, A [1 ]
Pallini, A [1 ]
Venzon, M [1 ]
Sabelis, MW [1 ]
机构
[1] Univ Amsterdam, Inst Systemat & Populat Biol, NL-1098 SM Amsterdam, Netherlands
关键词
food web; intraguild predation; apparent competition; indirect interactions; biological control; semiochemicals; searching behaviour; odour-mediated avoidance;
D O I
10.1023/A:1006089924336
中图分类号
Q96 [昆虫学];
学科分类号
摘要
With the increased use of biological control agents, artificial food webs are created in agricultural crops and the interactions between plants, herbivores and natural enemies change from simple tritrophic interactions to more complex food web interactions. Therefore, herbivore densities will not only be determined by direct predator-prey interactions and direct and indirect defence of plants against herbivores, but also by other direct and indirect interactions such as apparent competition, intraguild predation, resource competition, etc. Although these interactions have received considerable attention in theory and experiments, little is known about their impact on biological control. In this paper, we first present a review of indirect food web interactions in biological control systems. We propose to distinguish between numerical indirect interactions, which are interactions where one species affects densities of another species through an effect on the numbers of an intermediate species and functional indirect interactions, defined as changes in the way that two species interact through the presence of a third species. It is argued that functional indirect interactions are important in food webs and deserve more attention. Subsequently, we discuss experimental results on interactions in an artificial food web consisting of pests and natural enemies on greenhouse cucumber. The two pest species are the two-spotted spider mite Tetranychus urticae and the western flower thrips, Frankliniella occidentalis. Their natural enemies are the predatory mite Phytoseiulus persimilis, which is commonly used for spider mite control and the predatory mites Neoseiulus cucumeris and Iphiseius degenerans and the predatory bug Orius laevigatus, all natural enemies of thrips. First, we analyse the possible interactions between these seven species and we continue by discussing how functional indirect interactions, particularly the behaviour of arthropods, may change the significance and impact of direct interactions and numerical indirect interactions. It was found that a simple food web of only four species already gives rise to some quite complicated combinations of interactions. Spider mites and thrips interact indirectly through resource competition, but thrips larvae are intraguild predators of spider mites. Some of the natural enemies used for control of the two herbivore species are also intraguild predators. Moreover, spider mites produce a web that is subsequently used by thrips to hide from their predators. We discuss these and other results obtained so far and we conclude with a discussion of the potential impact of functional indirect and direct interactions on food webs and their significance for biological control. Exp Appl Acarol 22: 497-521 (C) 1998 Kluwer Academic Publishers.
引用
收藏
页码:497 / 521
页数:25
相关论文
共 86 条
[1]   Positive indirect effects between prey species that share predators [J].
Abrams, PA ;
Matsuda, H .
ECOLOGY, 1996, 77 (02) :610-616
[3]   FORAGING TIME OPTIMIZATION AND INTERACTIONS IN FOOD WEBS [J].
ABRAMS, PA .
AMERICAN NATURALIST, 1984, 124 (01) :80-96
[4]   INFLUENCE OF CHEMICALLY MEDIATED BEHAVIOR ON HOST TREE COLONIZATION BY 4 COHABITING SPECIES OF BARK BEETLES [J].
BIRCH, MC ;
SVIHRA, P ;
PAINE, TD ;
MILLER, JC .
JOURNAL OF CHEMICAL ECOLOGY, 1980, 6 (02) :395-414
[5]   Apparent competition structures ecological assemblages [J].
Bonsall, MB ;
Hassell, MP .
NATURE, 1997, 388 (6640) :371-373
[7]  
Brodsgaard HF, 1995, MEDEDELINGEN VAN DE FACULTEIT LANDBOUWWETENSCHAPPEN - UNIVERSITEIT GENT, VOL 60, NOS 2A-3B, 1995, P893
[8]   The evolution of chemical alarm signals: Attracting predators benefits alarm signal senders [J].
Chivers, DP ;
Brown, GE ;
Smith, RJF .
AMERICAN NATURALIST, 1996, 148 (04) :649-659
[9]   PREDATION BY ORIUS-TRISTICOLOR (HEMIPTERA, ANTHOCORIDAE) ON PHYTOSEIULUS-PERSIMILIS (ACARINA, PHYTOSEIIDAE) - TESTING FOR COMPATIBILITY BETWEEN BIOCONTROL AGENTS [J].
CLOUTIER, C ;
JOHNSON, SG .
ENVIRONMENTAL ENTOMOLOGY, 1993, 22 (02) :477-482
[10]  
COLLYER ELSIE, 1964, ENTOMOL EXP APPL, V7, P120, DOI 10.1007/BF00305047