Shelter-Building Insects and Their Role as Ecosystem Engineers
暂无分享,去创建一个
[1] Louie H. Yang,et al. Ecosystem engineering by a gall-forming wasp indirectly suppresses diversity and density of herbivores on oak trees. , 2016, Ecology.
[2] L. R. Santiago-Fernandes,et al. Structure and development of 'witches' broom' galls in reproductive organs of Byrsonima sericea (Malpighiaceae) and their effects on host plants. , 2015, Plant biology.
[3] M. Almeida,et al. Senescent stem-galls in trees of Eremanthus erythropappus as a resource for arboreal ants , 2014 .
[4] M. Özdemir,et al. Contribution to knowledge of the leafroller fauna (Lepidoptera: Tortricidae) of Turkey , 2014 .
[5] H. Kreft,et al. Environmental heterogeneity as a universal driver of species richness across taxa, biomes and spatial scales. , 2014, Ecology letters.
[6] Nian‐Feng Wan,et al. Testing the Enemies Hypothesis in Peach Orchards in Two Different Geographic Areas in Eastern China: The Role of Ground Cover Vegetation , 2014, PloS one.
[7] R. R. Zanini,et al. Diversidade de artrópodes nos abrigos foliares produzidos por Gonioterma sp. (Lepidoptera) em ramos de Roupala montana Aubl. (Proteaceae) no cerrado do Brasil central , 2014 .
[8] S. Cruz,et al. Structure of floral galls of Byrsonima sericea (Malpighiaceae) induced by Bruggmanniella byrsonimae (Cecidomyiidae, Diptera) and their effects on host plants. , 2014, Plant biology.
[9] J. Takabayashi,et al. Herbivore-constructed leaf shelters on Salix eriocarpa shoots affect arthropod communities , 2014 .
[10] G. Fernandes,et al. Neotropical Insect Galls: Status of Knowledge and Perspectives , 2014 .
[11] I. Kaplan,et al. Are exotic herbivores better competitors? A meta-analysis. , 2014, Ecology.
[12] R. Wirth,et al. Leaf‐cutting ants as ecosystem engineers: topsoil and litter perturbations around Atta cephalotes nests reduce nutrient availability , 2013 .
[13] G. Romero,et al. Ecosystem engineers on plants: indirect facilitation of arthropod communities by leaf-rollers at different scales. , 2013, Ecology.
[14] G. Romero,et al. Contrasting engineering effects of leaf‐rolling caterpillars on a tropical mite community , 2013 .
[15] H. G. Wang,et al. Both host plant and ecosystem engineer identity influence leaf-tie impacts on the arthropod community of Quercus. , 2012, Ecology.
[16] H. Greeney,et al. Shelter-building caterpillars in the cerrado: seasonal variation in relative abundance, parasitism, and the influence of extra-floral nectaries , 2012, Arthropod-Plant Interactions.
[17] H. Greeney,et al. Shelter-building caterpillars in the cerrado: seasonal variation in relative abundance, parasitism, and the influence of extra-floral nectaries , 2012, Arthropod-Plant Interactions.
[18] M. Cramer,et al. Benefits of photosynthesis for insects in galls , 2012, Oecologia.
[19] V. Zverev,et al. Delayed local responses of downy birch to damage by leafminers and leafrollers , 2012 .
[20] V. Maia. Coleopterous galls from the Neotropical region , 2012 .
[21] P. Mehalingam. Morphological and Anatomical Studies of the Ovary Galls of Sesamum indicum l. Induced by the Gall Midge, Asphondylia sesami Felt , 2012 .
[22] G. Fernandes,et al. Stem galls drain nutrients and decrease shoot performance in Diplusodon orbicularis (Lythraceae) , 2012, Arthropod-Plant Interactions.
[23] F. V. van Veen,et al. Ecosystem engineering and predation: the multi-trophic impact of two ant species. , 2011, Journal of Animal Ecology.
[24] M. Quesada,et al. Insects as Stem Engineers: Interactions Mediated by the Twig-Girdler Oncideres albomarginata chamela Enhance Arthropod Diversity , 2011, PloS one.
[25] M. Daniels,et al. The River Discontinuum: Applying Beaver Modifications to Baseline Conditions for Restoration of Forested Headwaters , 2010 .
[26] D. Doak,et al. Termites create spatial structure and govern ecosystem function by affecting N2 fixation in an East African savanna. , 2010, Ecology.
[27] G. Fernandes,et al. Are gall midge species (Diptera, Cecidomyiidae) host-plant specialists? , 2009 .
[28] S. Diamond,et al. Testing the nutrition hypothesis for the adaptive nature of insect galls: does a non‐adapted herbivore perform better in galls? , 2008 .
[29] T. Cornelissen,et al. Clumped distribution of oak leaf miners between and within plants , 2008 .
[30] G. Fernandes,et al. How Many Species of Gall-Inducing Insects Are There on Earth, and Where Are They? , 2009 .
[31] Ian Kaplan,et al. Interspecific interactions in phytophagous insects revisited: a quantitative assessment of competition theory. , 2007, Ecology letters.
[32] N. Sanders,et al. Host-plant genotypic diversity mediates the distribution of an ecosystem engineer. , 2007, Ecology.
[33] P. Marquet,et al. Ecosystem engineering facilitates invasions by exotic plants in high‐Andean ecosystems , 2007 .
[34] A. Hastings,et al. Ecosystem engineering in space and time. , 2007, Ecology letters.
[35] R. Marquis,et al. 6 - Microhabitat Manipulation: Ecosystem Engineering by Shelter-Building Insects , 2007 .
[36] Kim Cuddington,et al. Ecosystem engineers : plants to protists , 2007 .
[37] A. Classen,et al. Galling by Rhopalomyia solidaginis alters Solidago altissima architecture and litter nutrient dynamics in an old-field ecosystem , 2007, Plant and Soil.
[38] Clive G. Jones,et al. 1 - On the Purpose, Meaning, and Usage of the Physical Ecosystem Engineering Concept , 2007 .
[39] G. Fernandes,et al. Influence of Apion sp. (Brentidae, Apioninae) stem-galls on induced resistance and leaf area of Diospyros hispida (Ebenaceae) , 2006 .
[40] Michel Lepage,et al. Soil invertebrates as ecosystem engineers: Intended and accidental effects on soil and feedback loops , 2006 .
[41] T. Cornelissen,et al. Does low nutritional quality act as a plant defence? An experimental test of the slow‐growth, high‐mortality hypothesis , 2006 .
[42] J. D. Shorthouse,et al. Gall-inducing insects – Nature's most sophisticated herbivores , 2005 .
[43] M. Nair,et al. Phenylpropenoid phenolics in sweetbay magnolia as chemical determinants of host use in saturniid silkmoths (Callosamia) , 1996, Journal of Chemical Ecology.
[44] M. Berenbaum,et al. Leaf-tying by tortricid larvae as an adaptation for feeding on phototoxicHypericum perforatum , 1989, Journal of Chemical Ecology.
[45] C. Schaefer,et al. Biology, ecology, and evolution of gall-inducing arthropods , 2005 .
[46] S. Florentine,et al. Effects of Gall Induction by Epiblema Strenuana on Gas Exchange, Nutrients, and Energetics in Parthenium Hysterophorus , 2005, BioControl.
[47] T. Ohgushi,et al. Leaf Miner as a Physical Ecosystem Engineer: Secondary Use of Vacant Leaf Mines by Other Arthropods , 2004 .
[48] R. Marquis,et al. Leaf ties as colonization sites for forest arthropods: an experimental study , 2004 .
[49] M. Weiss,et al. Uniformity of Leaf Shelter Construction by Larvae of Epargyreus clarus (Hesperiidae), the Silver-Spotted Skipper , 2003, Journal of Insect Behavior.
[50] T. Whitham,et al. Manipulation of food resources by a gall-forming aphid: the physiology of sink-source interactions , 1991, Oecologia.
[51] K. Schönrogge,et al. The adaptive significance of insect gall morphology , 2003 .
[52] Masahiro Nakamura,et al. Positive and negative effects of leaf shelters on herbivorous insects: linking multiple herbivore species on a willow , 2003, Oecologia.
[53] V. Fournier,et al. Herbivorous mites as ecological engineers: indirect effects on arthropods inhabiting papaya foliage , 2003, Oecologia.
[54] R. Marquis,et al. ECOSYSTEM ENGINEERING BY CATERPILLARS INCREASES INSECT HERBIVORE DIVERSITY ON WHITE OAK , 2003 .
[55] E. M. Varanda,et al. Building of Leaf Shelters by Stenoma scitiorella Walker (Lepidoptera: Elachistidae): Manipulation of Host Plant Quality? , 2002 .
[56] A. Douglas,et al. Insects as leaf engineers: can leaf‐miners alter leaf structure for birch aphids? , 2002 .
[57] H. Danks. Modification of adverse conditions by insects , 2002 .
[58] A. Flecker,et al. An ecosystem engineer, the beaver, increases species richness at the landscape scale , 2002, Oecologia.
[59] H. P. Romanowski,et al. Natural enemies of the gall-maker Eugeniamyia dispar (Diptera, Cecidomyiidae): predatory ants and parasitoids. , 2002, Brazilian journal of biology = Revista brasleira de biologia.
[60] M. Weiss,et al. Ontogenetic changes in leaf shelter construction by larvae of Epargyreus clarus (Hesperiidae), the Silver-spotted Skipper. , 2001 .
[61] M. Kéry,et al. The effect of plant population size on the interactions between the rare plant Gentiana cruciata and its specialized herbivore Maculinea rebeli , 2001 .
[62] A. Fukui. Indirect interactions mediated by leaf shelters in animal–plant communities , 2001, Population Ecology.
[63] T. Jones,et al. Host-plant mediated effects of root herbivory on insect seed predators and their parasitoids , 2001, Oecologia.
[64] J. Stachowicz. Mutualism, Facilitation, and the Structure of Ecological Communities , 2001 .
[65] T. Sunahara,et al. Effects of nonhost and host plants on insect herbivory covarying with plant size in the cruciferous plant Turritis glabra , 2000, Population Ecology.
[66] K. Fiedler,et al. Response of the copper butterfly Lycaena tityrus to increased leaf nitrogen in natural food plants: evidence against the nitrogen limitation hypothesis , 2000, Oecologia.
[67] P. Doak. HABITAT PATCHINESS AND THE DISTRIBUTION, ABUNDANCE, AND POPULATION DYNAMICS OF AN INSECT HERBIVORE , 2000 .
[68] S. Leather. Herbivory, phenology, morphology and the expression of sex in trees: who is in the driver's seat? , 2000 .
[69] Andrea F. Huberty,et al. Feeding-induced changes in plant quality mediate interspecific competition between sap-feeding herbivores. , 2000 .
[70] T. Whitham,et al. Positive interactions between leafrollers and other arthropods enhance biodiversity on hybrid cottonwoods , 2000, Oecologia.
[71] N. Stamp,et al. Effects of plant phenology, nutrients and herbivory on growth and defensive chemistry of plantain, Plantago lanceolata. , 2000 .
[72] W. Carson,et al. HERBIVORY AND PLANT SPECIES COEXISTENCE: COMMUNITY REGULATION BY AN OUTBREAKING PHYTOPHAGOUS INSECT , 2000 .
[73] B. D. Campbell,et al. Population differences in Trifolium repens L. response to ultraviolet-B radiation: foliar chemistry and consequences for two lepidopteran herbivores , 2000, Oecologia.
[74] S. Hartley,et al. Direct and indirect competitive effects of foliage feeding guilds on the performance of the birch leaf‐miner Eriocrania , 2000 .
[75] B. A. Hawkins,et al. Galls as habitats: the inquiline communities of insect galls , 2000 .
[76] P. Hatcher,et al. Inter‐ and intra‐ species differences in plants as hosts to Tyria jacobaeae , 1998 .
[77] G. Fernandes,et al. Natural History of a Gall-Inducing Weevil Collabismus clitellae (Coleoptera: Curculionidae) and Some Effects on its Host Plant Solanum lycocarpum (Solanaceae) in Southeastern Brazil , 1998 .
[78] K. Larson. The impact of two gall-forming arthropods on the photosynthetic rates of their hosts , 1998, Oecologia.
[79] R. Denno,et al. Preference for protected feeding sites by larvae of the willow‐feeding leaf beetle Galerucella lineola , 1997 .
[80] Bradford A. Hawkins,et al. PREDATORS, PARASITOIDS, AND PATHOGENS AS MORTALITY AGENTS IN PHYTOPHAGOUS INSECT POPULATIONS , 1997 .
[81] T. Whitham,et al. Plant development affects arthropod communities: Opposing impacts of species removal , 1997 .
[82] E. Connor,et al. The evolution and adaptive significance of the leaf-mining habit , 1997 .
[83] C. Alonso. Choosing a place to grow. Importance of within‐plant abiotic microenvironment for Yponomeuta mahalebella , 1997 .
[84] R. Norris. Impact of leaf mining on the growth of Portulaca oleracea (common purslane) and its competitive interaction with Beta vulgaris (sugarbeet) , 1997 .
[85] G. Fernandes,et al. Parasitic Relationships between a Gall-forming Insect Tomoplagia rudolphi (Diptera: Tephritidae) and its Host Plant (Vernonia polyanthes, Asteraceae) , 1996 .
[86] C. Loeffler. Caterpillar leaf folding as a defense against predation and dislodgment: Staged encounters using Dichomeris (Gelechiidae) larvae on Goldenrods , 1996 .
[87] S. Graham. Gall makers on flowers of Cuphea (Lythraceae). , 1995 .
[88] G. Fernandes,et al. Utilization of Apion sp. (Coleoptera Apionidae) galls by an ant community in southeastern Brazil , 1995 .
[89] J. R. Ott,et al. Interspecific interactions in phytophagous insects : competition reexamined and resurrected , 1995 .
[90] A. Traveset. Reproductive biology of Phillyrea angustifolia L. (Oleaceae) and effect of galling‐insects on its reproductive output , 1994 .
[91] E. Bernays,et al. Host-Plant Selection by Phytophagous Insects , 1994, Contemporary Topics in Entomology.
[92] G. Fernandes,et al. Impact of a Neolasioptera (Diptera: Cecidomyiidae) stem galler on its host plant, Mirabilis linearis (Nyctaginaceae). , 1993 .
[93] C. Sagers. Manipulation of Host Plant Quality: Herbivores Keep Leaves in the Dark , 1992 .
[94] S. Faeth. Effect of Oak Leaf Size on Abundance, Dispersion, and Survival of the Leafminer Cameraria sp. (Lepidoptera: Gracillariidae) , 1991 .
[95] H A Hespenheide,et al. Bionomics of Leaf-Mining Insects , 1991 .
[96] S. P. Ribeiro. PLANT RESPONSE TO HERBIVORY: TWO EXAMPLES FROM THE NEOTROPICS RESPUESTA DE LAS PLANTAS ALA HERBIVORIA DOS EJEMPLOS DEL NEOTRÓPICO , 2007 .
[97] M. Hunter,et al. The potential for interspecific competition between two abundant defoliators on oak: leaf damage and habitat quality , 1989 .
[98] G. Fernandes,et al. Ants associated with a coleopterous leaf-bud gall on Xylopia aromatica (Annonaceae) , 1989 .
[99] Timothy P. Craig,et al. Impact of Shoot Galler Attack on Sexual Reproduction in the Arroyo Willow , 1988 .
[100] J. Wheeler. Arthropods in live oak galls in Texas , 1988 .
[101] Fernandes,et al. Adaptive Nature of Insect Galls , 1987 .
[102] A. E. Weis,et al. Goldenrod Ball Gall Effects on Solidago altissima: 14C Translocation and Growth , 1985 .
[103] A. E. Weis,et al. Goldenrod ball gall effects on Solidago altissima: /sup 14/C translocation and growth. [Eurosta solidaginis] , 1985 .
[104] J. Lawton,et al. INSECTS ON PLANTS. COMMUNITY PATTERNS AND MECHANISMS. , 1987 .
[105] J. P. Brown,et al. Herbivory, foliar enzyme inhibitors, nitrogen and leaf structure of young and mature leaves in a tropical forest , 1984 .
[106] J. Lawton. Plant Architecture and the Diversity of Phytophagous Insects , 1983 .
[107] D. Hartnett,et al. The effects of stem gall insects on life history patterns in Solidago canadensis L. (Compositae) , 1979 .
[108] D. S. F. L. S. M. S. Mani M. A.. Ecology of Plant Galls , 1964, Monographiae Biologicae.
[109] W. R. Henson. SOME ECOLOGICAL IMPLICATIONS OF THE LEAF-ROLLING HABIT IN COMPSOLECHIA NIVEOPULVELLA CHAMB. , 1958 .
[110] W. R. Henson. THE EFFECTS OF RADIATION ON THE HABITAT TEMPERATURES OF SOME POPLAR-INHABITING INSECTS , 1958 .
[111] P. E. Hering. Biology of the Leaf Miners , 2012, Springer Netherlands.