Angela E. Douglas
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British entomologist
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Why Is Angela E. Douglas Influential?
(Suggest an Edit or Addition)According to Wikipedia, Angela Elizabeth Douglas is a British entomologist who researches insect nutrition, and is known for her research on symbiotic relationships between insects and microorganisms. She has been the Daljit S. and Elaine Sarkaria Professor of Insect Physiology and Toxicology at Cornell University, Ithaca, New York, since 2008, and previously held a chair at the University of York .
Angela E. Douglas's Published Works
Published Works
- Animals in a bacterial world, a new imperative for the life sciences (2013) (2005)
- Nutritional interactions in insect-microbial symbioses: aphids and their symbiotic bacteria Buchnera. (1998) (1265)
- Genome Sequence of the Pea Aphid Acyrthosiphon pisum (2010) (1176)
- Multiorganismal insects: diversity and function of resident microorganisms. (2015) (710)
- The microbial dimension in insect nutritional ecology (2009) (664)
- Phloem-sap feeding by animals: problems and solutions. (2006) (535)
- Coral bleaching--how and why? (2003) (489)
- MYCETOCYTE SYMBIOSIS IN INSECTS (1989) (480)
- Towards the elements of successful insect RNAi. (2013) (390)
- Low-diversity bacterial community in the gut of the fruitfly Drosophila melanogaster. (2011) (388)
- Photosynthetic symbioses in animals. (2008) (350)
- The Biology of Symbiosis (1992) (320)
- The Symbiotic Habit (2010) (281)
- Symbiotic bacteria enable insect to use a nutritionally inadequate diet (2009) (269)
- Holes in the Hologenome: Why Host-Microbe Symbioses Are Not Holobionts (2016) (268)
- Linking the bacterial community in pea aphids with host‐plant use and natural enemy resistance (2004) (266)
- The nutritional quality of phloem sap utilized by natural aphid populations (1993) (266)
- The inconstant gut microbiota of Drosophila species revealed by 16S rRNA gene analysis (2013) (264)
- Amino acid composition and nutritional quality of potato leaf phloem sap for aphids. (2002) (258)
- Gut microbiota dictates the metabolic response of Drosophila to diet (2014) (250)
- The Nutritional Physiology of Aphids (2003) (235)
- The secreted salivary proteome of the pea aphid Acyrthosiphon pisum characterised by mass spectrometry (2009) (235)
- The draft genome of whitefly Bemisia tabaci MEAM1, a global crop pest, provides novel insights into virus transmission, host adaptation, and insecticide resistance (2016) (234)
- Synthesis of the essential amino acid tryptophan in the pea aphid (Acyrthosiphon pisum) symbiosis (1992) (223)
- Genomic insight into the amino acid relations of the pea aphid, Acyrthosiphon pisum, with its symbiotic bacterium Buchnera aphidicola (2010) (219)
- A water-specific aquaporin involved in aphid osmoregulation. (2009) (215)
- Interspecies Interactions Determine the Impact of the Gut Microbiota on Nutrient Allocation in Drosophila melanogaster (2013) (209)
- Impact of the Resident Microbiota on the Nutritional Phenotype of Drosophila melanogaster (2012) (209)
- Comparative digestive physiology. (2013) (198)
- Lessons from studying insect symbioses. (2011) (188)
- Host benefit and the evolution of specialization in symbiosis (1998) (171)
- Conflict, cheats and the persistence of symbioses. (2008) (171)
- Making a microbiome: the many determinants of host-associated microbial community composition. (2017) (161)
- Symbiotic microorganisms: untapped resources for insect pest control. (2007) (150)
- Diversity of Bacteria Associated with Natural Aphid Populations (2003) (146)
- Metabolic Coevolution in the Bacterial Symbiosis of Whiteflies and Related Plant Sap-Feeding Insects (2015) (140)
- Essential amino acid synthesis and nitrogen recycling in an alga–invertebrate symbiosis (1999) (130)
- Simple animal models for microbiome research (2019) (127)
- Large-Scale Label-Free Quantitative Proteomics of the Pea aphid-Buchnera Symbiosis* (2011) (126)
- Living on a high sugar diet: the fate of sucrose ingested by a phloem-feeding insect, the pea aphid Acyrthosiphon pisum. (2000) (125)
- Quantifying nutrient production by the microbial symbionts in an aphid. (2001) (124)
- Phloem amino acids and the host plant range of the polyphagous aphid, Aphis fabae (2003) (123)
- Molecular diversity of symbiotic algae at the latitudinal margins of their distribution: dinoflagellates of the genus Symbiodinium in corals and sea anemones (2002) (122)
- Functional significance of genetically different symbiotic algae Symbiodinium in a coral reef symbiosis (2007) (119)
- Strategies for Enhanced Crop Resistance to Insect Pests. (2018) (115)
- Microbial community assembly in wild populations of the fruit fly Drosophila melanogaster (2018) (115)
- The aposymbiotic aphid: An analysis of chlortetracycline-treated pea aphid, Acyrthosiphon pisum (1991) (112)
- Symbiosis as a general principle in eukaryotic evolution. (2014) (112)
- A fragile metabolic network adapted for cooperation in the symbiotic bacterium Buchnera aphidicola (2009) (111)
- Metagenome-Wide Association of Microbial Determinants of Host Phenotype in Drosophila melanogaster (2014) (110)
- Reproductive failure and the free amino acid pools in pea aphids (Acyrthosiphon pisum) lacking symbiotic bacteria (1996) (110)
- The Host as the Driver of the Microbiota in the Gut and External Environment of Drosophila melanogaster (2015) (107)
- How multi-partner endosymbioses function (2016) (106)
- The Drosophila model for microbiome research (2018) (106)
- Metabolite comparisons and the identity of nutrients translocated from symbiotic algae to an animal host (2003) (104)
- An aphid-borne bacterium allied to the secondary symbionts of whitefly. (2001) (103)
- The impact of coral bleaching on the pigment profile of the symbiotic alga, Symbiodinium. (2006) (102)
- Host Genetic Control of the Microbiota Mediates the Drosophila Nutritional Phenotype (2015) (101)
- Correction: Corrigendum: Host genetic determinants of microbiota-dependent nutrition revealed by genome-wide analysis of Drosophila melanogaster (2015) (100)
- A test of the hypotheses that nitrogen is upgraded and recycled in an aphid (Acyrthosiphon pisum) symbiosis (1992) (100)
- Microbial Brokers of Insect-Plant Interactions Revisited (2013) (100)
- Elucidation of the Transmission Patterns of an Insect-Borne Bacterium (2003) (99)
- Shared Metabolic Pathways in a Coevolved Insect-Bacterial Symbiosis (2013) (94)
- The molecular basis of bacterial-insect symbiosis. (2014) (93)
- The green hydra symbiosis. VIII. Mechanisms in symbiont regulation (1984) (93)
- The mycetocyte symbiosis of aphids: Variation with age and morph in virginoparae of Megoura viciae and Acyrthosiphon pisum (1987) (89)
- Rearing the Fruit Fly Drosophila melanogaster Under Axenic and Gnotobiotic Conditions. (2016) (89)
- Impact of plant nutrients on the relationship between a herbivorous insect and its symbiotic bacteria (2008) (88)
- Host genetic determinants of microbiota-dependent nutrition revealed by genome-wide analysis of Drosophila melanogaster (2015) (88)
- On the functional significance of molecular variation in Symbiodinium, the symbiotic algae of Cnidaria: photosynthetic response to irradiance (2002) (87)
- The bacterial communities in plant phloem‐sap‐feeding insects (2014) (84)
- Are endosymbioses mutualistic? (1989) (84)
- How the microbiome challenges our concept of self (2018) (83)
- Facultative ‘secondary’ bacterial symbionts and the nutrition of the pea aphid, Acyrthosiphon pisum (2006) (82)
- Community structure of the gut microbiota in sympatric species of wild Drosophila. (2017) (82)
- The mid‐season crash in aphid populations: why and how does it occur? (2004) (81)
- Molecular mechanism and functional significance of acid generation in the Drosophila midgut (2016) (81)
- The central role of the host cell in symbiotic nitrogen metabolism (2012) (79)
- The B vitamin nutrition of insects: the contributions of diet, microbiome and horizontally acquired genes. (2017) (78)
- The raison d'être of chemical ecology. (2015) (77)
- Nutrient regulation in the pea aphid Acyrthosiphon pisum: application of a novel geometric framework to sugar and amino acid consumption (1994) (76)
- Nutrients, Signals, and Photosynthate Release by Symbiotic Algae (The Impact of Taurine on the Dinoflagellate Alga Symbiodinium from the Sea Anemone Aiptasia pulchella) (1997) (76)
- Sulphate utilization in an aphid symbiosis (1988) (74)
- Microbial impacts on plant-herbivore interactions: the indirect effects of a birch pathogen on a birch aphid (2003) (74)
- Consumption of dietary sugar by gut bacteria determines Drosophila lipid content (2015) (73)
- The Ecology of Symbiotic Micro-organisms (1995) (72)
- The impact of host plant on the abundance and function of symbiotic bacteria in an aphid. (2001) (69)
- How the insect immune system interacts with an obligate symbiotic bacterium (2011) (67)
- The Insects by R. F. Chapman (2012) (66)
- The significance of gut sucrase activity for osmoregulation in the pea aphid, Acyrthosiphon pisum. (2005) (66)
- Importance of Time and Place: Patterns in Abundance of Symbiodinium Clades A and B in the Tropical Sea Anemone Condylactis gigantea (2008) (66)
- Microbe-Dependent and Nonspecific Effects of Procedures To Eliminate the Resident Microbiota from Drosophila melanogaster (2013) (66)
- The insecticidal activity of recombinant garlic lectins towards aphids. (2008) (66)
- Towards an understanding of the molecular basis of effective RNAi against a global insect pest, the whitefly Bemisia tabaci (2017) (66)
- In vivo function and comparative genomic analyses of the Drosophila gut microbiota identify candidate symbiosis factors (2014) (65)
- Requirement of pea aphids (Acyrthosiphon pisum) for their symbiotic bacteria (1992) (65)
- Intraguild predators and the spatial distribution of a parasitoid (2000) (63)
- Sweet problems: insect traits defining the limits to dietary sugar utilisation by the pea aphid, Acyrthosiphon pisum (2006) (63)
- Genomes at the interface between bacteria and organelles. (2003) (62)
- Response of the Pea Aphid (Acyrthosiphon pisum) to Variation in Dietary Levels of Sugar and Amino Acids: the Significance of Amino Acid Quality (1995) (61)
- The multi-tasking gut epithelium of insects. (2015) (59)
- Hyperthermic aphids: insights into behaviour and mortality. (2010) (59)
- The symbiotic interface in an alga—invertebrate symbiosis (1993) (58)
- Cooperative Metabolism in a Three-Partner Insect-Bacterial Symbiosis Revealed by Metabolic Modeling (2017) (58)
- Molecular diversity of symbiotic algae of the genus Symbiodinium (Zooxanthellae) in cnidarians of the Mediterranean Sea (2006) (58)
- Hype or opportunity? Using microbial symbionts in novel strategies for insect pest control. (2017) (57)
- How an aphid (Acyrthosiphon pisum) symbiosis responds to variation in dietary nitrogen (1992) (57)
- The microbiota influences the Drosophila melanogaster life history strategy (2018) (57)
- Aphid-Symbiotic Bacteria Cultured in Insect Cell Lines (2005) (57)
- Molecular characterisation of a candidate gut sucrase in the pea aphid, Acyrthosiphon pisum. (2007) (54)
- Targeting symbiosis-related insect genes by RNAi in the pea aphid-Buchnera symbiosis. (2018) (54)
- Molecular Quantification of Symbiotic Dinoflagellate Algae of the Genus Symbiodinium (2007) (53)
- How symbiotic bacteria influence plant utilisation by the polyphagous aphid, Aphis fabae (1997) (53)
- Different Levels of Transcriptional Regulation Due to Trophic Constraints in the Reduced Genome of Buchnera aphidicola APS (2006) (53)
- Cellular and molecular remodelling of a host cell for vertical transmission of bacterial symbionts (2016) (52)
- Plant penetration by pea aphids (Acyrthosiphon pisum) of different plant range (1998) (50)
- Sugar transporters of the major facilitator superfamily in aphids; from gene prediction to functional characterization (2010) (50)
- Maternal Inheritance of a Single Somatic Animal Cell Displayed by the Bacteriocyte in the Whitefly Bemisia tabaci (2018) (50)
- How Varroa Parasitism Affects the Immunological and Nutritional Status of the Honey Bee, Apis mellifera (2012) (49)
- Interactions between a luteovirus and the GroEL chaperonin protein of the symbiotic bacterium Buchnera aphidicola of aphids. (2011) (49)
- Molecular diversity of dinoflagellate symbionts of Cnidaria: the psbA minicircle of Symbiodinium. (2006) (48)
- RNA interference against gut osmoregulatory genes in phloem-feeding insects. (2015) (48)
- Plant sterols and host plant suitability for a phloem-feeding insect (2011) (47)
- Genomic evidence for complementary purine metabolism in the pea aphid, Acyrthosiphon pisum, and its symbiotic bacterium Buchnera aphidicola (2010) (46)
- Matching the supply of bacterial nutrients to the nutritional demand of the animal host (2014) (45)
- Aphid responses to plants with genetically manipulated phloem nutrient levels (2007) (45)
- Partitioning of Symbiotic Bacteria between Generations of an Insect: a Quantitative Study of a Buchnera sp. in the Pea Aphid (Acyrthosiphon pisum) Reared at Different Temperatures (1997) (43)
- A genomic investigation of ecological differentiation between free‐living and Drosophila‐associated bacteria (2017) (43)
- On the processes shaping reproductive isolation in aphids of the Aphis fabae (Scop.) complex (Aphididae: Homoptera) (2001) (41)
- The causes and processes of the mid-summer population crash of the potato aphids Macrosiphum euphorbiae and Myzus persicae (Hemiptera: Aphididae) (2003) (41)
- The Cost of Metabolic Interactions in Symbioses between Insects and Bacteria with Reduced Genomes (2018) (40)
- Fundamentals of Microbiome Science: How Microbes Shape Animal Biology (2018) (40)
- A metabolic study of Buchnera, the intracellular bacterial symbionts of the pea aphid Acyrthosiphon pisum (1993) (40)
- Algal genotype and photoacclimatory responses of the symbiotic alga Symbiodiniumin natural populations of the sea anemone Anemonia viridis (1997) (39)
- The Rhetorica ad Herennium (1973) (38)
- On the source of sterols in the green peach aphid, Myzus persicae, reared on holidic diets (1988) (38)
- The microbial exometabolome: ecological resource and architect of microbial communities (2020) (37)
- Host cell allometry and regulation of the symbiosis between pea aphids, Acyrthosiphon pisum, and bacteria, Buchnera. (1998) (37)
- Why pea aphids (Acyrthosiphon pisum) lacking symbiotic bacteria have elevated levels of the amino acid glutamine (1995) (37)
- A rapid method to isolate symbiotic bacteria from aphids (1989) (36)
- Provenance, experience and plant utilisation by the polyphagous aphid, Aphis fabae (1997) (36)
- The impact of aposymbiosis on amino acid metabolism of pea aphids (1996) (34)
- Populations of symbiotic bacteria in the parthenogenetic pea aphid (Acyrthosiphon pisum) symbiosis (1993) (34)
- Buchnera Bacteria And Other Symbionts Of Aphids (2003) (33)
- The Drosophila transcriptional network is structured by microbiota (2016) (33)
- Integrated metabonomic-proteomic analysis of an insect-bacterial symbiotic system. (2010) (33)
- How gut transcriptional function of Drosophila melanogaster varies with the presence and composition of the gut microbiota (2018) (32)
- Molecular diversity of symbiotic algae (zooxanthellae) in scleractinian corals of Kenya (2006) (32)
- Nitrogen recycling in the pea aphid (Acyrthosiphon pisum) symbiosis (1992) (32)
- Impact of Host Developmental Age on the Transcriptome of the Symbiotic Bacterium Buchnera aphidicola in the Pea Aphid (Acyrthosiphon pisum) (2009) (32)
- Insects as leaf engineers: can leaf‐miners alter leaf structure for birch aphids? (2002) (32)
- Impact of a parasitoid on the bacterial symbiosis of its aphid host (2003) (31)
- Functional variation in the gut microbiome of wild Drosophila populations (2018) (31)
- The olfactory responses of coccinellids to aphids on plants (2000) (30)
- The Cost Of Symbionts To Their Host In Green Hydra (1983) (30)
- On the characteristics and taxonomic position of symbiotic Chlorella (1986) (30)
- Aphid feeding, as influenced by disruption of the symbiotic bacteria: an analysis of the pea aphid (Acyrthosiphon pisum) (1995) (30)
- Relating genotype and phenotype for tryptophan synthesis in an aphid–bacterial symbiosis (2002) (30)
- The hemolymph microbiome of insects. (2019) (30)
- Reproductive diapause and the bacterial symbiosis in the sycamore aphid Drepanosiphum platanoidis (2000) (30)
- Spatiotemporally Heterogeneous Population Dynamics of Gut Bacteria Inferred from Fecal Time Series Data (2018) (30)
- Symbiotic dinoflagellates in marine Cnidaria: diversity and function (2001) (30)
- The significance of a facultative bacterium to natural populations of the pea aphid Acyrthosiphon pisum (2003) (29)
- Bacteria abundance and diversity of different life stages of Plutella xylostella (Lepidoptera: Plutellidae), revealed by bacteria culture‐dependent and PCR‐DGGE methods (2015) (29)
- The genome sequence of the grape phylloxera provides insights into the evolution, adaptation, and invasion routes of an iconic pest (2020) (28)
- Parallels and contrasts between symbiotic bacteria and bacterial-derived organelles: evidence from Buchnera, the bacterial symbiont of aphids (1997) (27)
- Low genetic diversity among pea aphid (Acyrthosiphon pisum) biotypes of different plant affiliation (1999) (27)
- Microbial brokers of insect-plant interactions (1992) (27)
- Nutrient factories: metabolic function of beneficial microorganisms associated with insects. (2018) (27)
- Omics and the metabolic function of insect-microbial symbioses. (2018) (27)
- On the Origin of the Eukaryotes (2012) (27)
- Physiological responses of insects to microbial fermentation products: Insights from the interactions between Drosophila and acetic acid. (2017) (27)
- The inherited bacterial symbiont Hamiltonella influences the sex ratio of an insect host (2019) (24)
- The physiology of sterol nutrition in the pea aphid Acyrthosiphon pisum. (2012) (24)
- The Insects: Alimentary canal, digestion and absorption (2012) (24)
- Resilience and acclimation to bleaching stressors in the scleractinian coral Porites cylindrica (2007) (24)
- Making the Most of “Omics” for Symbiosis Research (2012) (23)
- Which experimental systems should we use for human microbiome science? (2018) (23)
- Experimental studies on the mycetome symbiosis in the leafhopper Euscelis incisus (1988) (23)
- Host determinants of among-species variation in microbiome composition in drosophilid flies (2019) (23)
- Patterns in aphid honeydew production parallel diurnal shifts in phloem sap composition (2012) (22)
- Origin, local experience, and the impact of biotic interactions on native and introduced Senecio species (2009) (22)
- BuchneraBASE: a post-genomic resource for Buchnera sp. APS (2006) (22)
- Molecular dissection of nutrient exchange at the insect-microbial interface. (2014) (22)
- Response of Wild Spotted Wing Drosophila (Drosophila suzukii) to Microbial Volatiles (2019) (22)
- Tusculan Disputations, I (1985) (22)
- The role of the microbiome in host evolution (2020) (22)
- Correlation and causation between the microbiome, Wolbachia and host functional traits in natural populations of drosophilid flies (2019) (21)
- Avoidance of Hypoxia in a Cnidarian Symbiosis by Algal Photosynthetic Oxygen. (1992) (21)
- Cicero: Tusculan Disputations I (1988) (20)
- Uric acid utilization in Platymonas convolutae and symbiotic Convoluta roscoffensis (1983) (20)
- New Synthesis: Animal Communication Mediated by Microbes: Fact or Fantasy? (2013) (18)
- Microbial symbioses in the midgut of insects (1996) (18)
- CycADS: an annotation database system to ease the development and update of BioCyc databases (2011) (18)
- M. Tullii Ciceronis Brutus (2008) (18)
- Nutrition and symbiosis (2007) (18)
- Contradictory Results in Microbiome Science Exemplified by Recent Drosophila Research (2018) (18)
- Housing microbial symbionts: evolutionary origins and diversification of symbiotic organs in animals (2020) (17)
- Establishment of the symbiosis in Convoluta roscoffensis (1983) (17)
- Amino acids as respiratory substrates in aphids: an analysis of Aphis fabae reared on plants and diets (2001) (17)
- Evolutionary conservation of candidate osmoregulation genes in plant phloem sap‐feeding insects (2016) (17)
- Symbiosis in Convoluta roscoffensis (1981) (16)
- A Dietary Test of Putative Deleterious Sterols for the Aphid Myzus persicae (2014) (15)
- The ecological significance of symbiotic microorganisms in animals: perspectives from the microbiota of aphids. (2003) (14)
- Experimental studies on symbiotic Chlorella in the Neorhabdocoel Turbellaria Dalyellia viridis and Typhloplana viridata (1987) (14)
- On the mechanistic basis of plant affiliation in the black bean aphid (Aphis fabae) species complex (2001) (13)
- Algal symbiosis in Cnidaria (1993) (13)
- B-vitamin nutrition in the pea aphid-Buchnera symbiosis. (2020) (13)
- The Insects: Circulatory system, blood and the immune system (2012) (13)
- Match and mismatch between dietary switches and microbial partners in plant sap-feeding insects (2019) (13)
- Growth and Reproduction of Convoluta Roscoffensis Containing Different Naturally Occurring Algal Symbionts (1985) (12)
- The molecular correlates of organ loss: the case of insect Malpighian tubules (2015) (12)
- MAGNAMWAR: an R package for genome-wide association studies of bacterial orthologs (2018) (12)
- Host and symbiont genetic determinants of nutritional phenotype in a natural population of the pea aphid (2020) (12)
- The pH of the perisymbiont space in the green hydra-Chlorella symbiosis (1992) (12)
- The special case of symbioses: mutualisms with persistent contact (2015) (12)
- Erratum to: The Drosophila transcriptional network is structured by microbiota (2016) (11)
- Patterns of host cell inheritance in the bacterial symbiosis of whiteflies (2019) (11)
- The aphid‐bacterial symbiosis: a comparison between pea aphids and black bean aphids (1996) (11)
- How gut microbiome interactions affect nutritional traits of Drosophila melanogaster (2020) (11)
- What will it take to understand the ecology of symbiotic microorganisms? (2018) (11)
- The draft genome of whitefly Bemisia tabaci MEAM1, a global crop pest, provides novel insights into virus transmission, host adaptation, and insecticide resistance (2016) (11)
- The impact of the gut microbiome on memory and sleep in Drosophila (2020) (10)
- Microbial genotype and insect fitness in an aphid–bacterial symbiosis (2004) (10)
- Candidate genetic determinants of intraspecific variation in pea aphid susceptibility to RNA interference. (2020) (10)
- On the evolutionary origins of host–microbe associations (2021) (9)
- The behaviour of algal cells towards egg capsules of Convoluta roscoffensis and its role in the persistence of the Convoluta-alga symbiosis (1982) (9)
- Is the Regulation of Insulin Signaling Multi-Organismal? (2011) (9)
- Crop growth stage and the phenology of aphid populations on potato. (2000) (8)
- Functional traits of the gut microbiome correlated with host lipid content in a natural population of Drosophila melanogaster (2020) (7)
- The Metabolome of Associations between Xylem-Feeding Insects and their Bacterial Symbionts (2019) (7)
- Drosophila and its gut microbes: a model for drug-microbiome interactions. (2018) (7)
- Non-Target Effects of dsRNA Molecules in Hemipteran Insects (2021) (7)
- Nutritional Interactions as Signals in the Green Hydra Symbiosis (1988) (7)
- The significance of overlapping plant range to a putative adaptive trade‐off in the black bean aphid Aphis fabae Scop (2004) (7)
- Impact of Facultative Bacteria on the Metabolic Function of an Obligate Insect-Bacterial Symbiosis (2020) (6)
- The impact of the gut microbiome on memory and sleep in Drosophila. (2020) (6)
- Gut microbes alter the walking activity of fruit flies (2018) (5)
- Predicted Metabolic Function of the Gut Microbiota of Drosophila melanogaster (2021) (5)
- The Predicted Metabolic Function of the Gut Microbiota of Drosophila melanogaster (2021) (5)
- Experimental studies on egg production by Convoluta roscoffensis: Graff, 1882 (Turbellaria, Acoela) (1983) (4)
- Editorial overview: Insect microbial symbionts. (2014) (4)
- Chapter 122 – Honeydew (2009) (4)
- Endosymbionts and Intracellular Parasites (2009) (4)
- Correction: Genome Sequence of the Pea Aphid Acyrthosiphon pisum (2018) (4)
- The influence of host contamination on maltose release by symbiotic Chlorella1 (1987) (3)
- Syntrophic splitting of central carbon metabolism in host cells bearing functionally different symbiotic bacteria (2020) (3)
- Succinate: A microbial product that modulates Drosophila nutritional physiology (2021) (3)
- Strategies in Antagonistic and Cooperative Interactions (2004) (3)
- Good Daphnia parents do not control the offspring microbiome. (2018) (3)
- The microbiome and the human: A reply to Parke and colleagues (2018) (3)
- Review Coral bleaching--how and why? (2003) (3)
- Relationship between sediment characteristics and size of the acoel turbellarian Convoluta roscoffensis graff (1984) (3)
- Evaluation of RNA Interference for Control of the Grape Mealybug Pseudococcus maritimus (Hemiptera: Pseudococcidae) (2020) (2)
- On fate (De fato) . &, The Consolation of philosophy (Philosophiae consolationis) IV. 5-7, V (1991) (2)
- Molecular diversity of symbiotic algae Symbiodinium (Zooxanthellae) in Cnidarians of the Mediterranean Sea (2007) (2)
- Tusculan Disputations Ii & V with a Summary of Iii & Iv (1990) (2)
- Genome-Inferred Correspondence between Phylogeny and Metabolic Traits in the Wild Drosophila Gut Microbiome (2021) (2)
- Greek and Roman Critics (2015) (2)
- The Functions of Symbiotic Micro-Organisms in Insects (2001) (2)
- “Can't Live without You:” Essential Animal-Bacterial Relationships: The resident bacteria that animals require contribute metabolic capabilities and signaling networks that shape host health (2012) (2)
- Relationship between chlorophyll a content and protein content of invertebrate symbioses with algae or chloroplasts (1985) (2)
- Reproductive system: male (1998) (2)
- Symbiosis research, technology, and education: Proceedings of the 6th International Symbiosis Society Congress held in Madison Wisconsin, USA, August 2009 (2010) (1)
- Specificity in the Convoluta Roscoffensis/Tetraselmis Symbiosis (1988) (1)
- Insects and Their Beneficial Microbes (2022) (1)
- The Drosophila transcriptional network is structured by microbiota (2016) (1)
- Correction to: The genome sequence of the grape phylloxera provides insights into the evolution, adaptation, and invasion routes of an iconic pest (2020) (1)
- The Insects: Nutrition (2012) (1)
- Cicero, Laelius, on Friendship & the Dream of Scipio = Laelius de Amicitia & Somnium Scipionis (1990) (1)
- Interactions between insects and their symbiotic microorganisms (2007) (1)
- 5. Microbial Drivers of Animal Behavior (2018) (1)
- Syntrophic splitting of central carbon metabolism in host cells bearing functionally different symbiotic bacteria (2020) (1)
- Waste not, want not: Nitrogen recycling by metabolic pathways shared between an animal and its symbiotic bacteria (2013) (1)
- 16SpeB: Towards defining bacterial species boundaries by intra-species gene sequence identity (2016) (0)
- The Drosophila model for microbiome research (2018) (0)
- Symbiosis: An Introduction to Biological Associations.@@@The Biology of Symbiosis. (1987) (0)
- Big Role for a Tiny Genome (2017) (0)
- Contents (2016) (0)
- Microbial Brokers of Insect-Plant Interactions Revisited (2013) (0)
- Nutrients, Signals, and Photosynthate Release by Symbiotic Algae' The lmpact of Taurine on the Dinoflagellate Alga Symbiodinium from the Sea Anemone (2002) (0)
- Gut microbes alter the walking activity of fruit flies (2018) (0)
- Microbial community assembly in wild populations of the fruit fly Drosophila melanogaster (2018) (0)
- Correction to: The genome sequence of the grape phylloxera provides insights into the evolution, adaptation, and invasion routes of an iconic pest (2020) (0)
- Beneficial microbes have changed the course of evolutionary history (2009) (0)
- Buchnera aphidicola: evidences for transcriptional regulation in a degenerated genome (2005) (0)
- Microbial nutrient factories in insects on extreme diets (2019) (0)
- The gut microbiota and host function inDrosophila (2016) (0)
- Intracellular Symbionts and Parasites (2019) (0)
- Supplementary material from "Functional traits of the gut microbiome correlated with host lipid content in a natural population of Drosophila melanogaster " (2020) (0)
- melanogaster Resident Microbiota from Drosophila Effects of Procedures To Eliminate the Microbe-Dependent and Nonspecific (2013) (0)
- Erratum to: The Drosophila transcriptional network is structured by microbiota (2017) (0)
- New Synthesis: Animal Communication Mediated by Microbes: Fact or Fantasy? (2013) (0)
- Book Review: The Symbiotic Habit (2011) (0)
- The Insects: Preface (2012) (0)
- Simple animal models for microbiome research (2019) (0)
- Sir David Cecil Smith. 21 May 1930—29 June 2018 (2019) (0)
- RESISTANCE TO GRAPEVINE LEAFROLL-ASSOCIATED VIRUS 3 AND THE GRAPE MEALYBUG Principal Investigator: Co-Principal Investigator: Co-Principal Investigator: (2019) (0)
- 2. The Ancient Roots of the Animal Microbiomes (2018) (0)
- Editorial Board (2016) (0)
- Annotation of metabolism genes: towads the implementation of an Acyrthosiphon pisum Cyc database (ApsCyc) to perform metabolic network analyses (2008) (0)
- The power of combining genome annotation and systems level modeling. (2009) (0)
- Supplementary material from "SIR DAVID CECIL SMITH. 21 May 1930 — 29 June 2018" (2019) (0)
- Host determinants of among-species variation in microbiome composition in drosophilid flies (2019) (0)
- The Legislation of Spurius Thorius: Corrigenda (1957) (0)
- The Acyrthosiphon pisum Cyc database (AcypiCyc) created using a novel BioCyc Annotation Database System (CycADS): a useful tool to explore and study the pea aphid metabolism (2009) (0)
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