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Probe Set Ag.2R.1233.1_a_at Expression Report
Probe Information
Probe ID Associated gene(s) Probe annotation Location(s)
Ag.2R.1233.1_a_at AGAP001111 Probe sequence aligns to 3 genomic locations, 1 gene and 3 transcript. Anopheles gambiae genome
Expression summary
Experiment P-value Test Experimental factor Summary
Blood meal time series (Marinotti et al., 2006)
Microarray experiment info
Plots and data
2.0e-07
ANOVA
Growth condition
Significant differential expression
↑ blood-fed 15d
↓ blood_fed 72h
Click here for more results from Blood meal time series (Marinotti et al., 2006)
Alimentary canal compartments (Neira Oviedo et al., 2008)
Microarray experiment info
Plots and data
8.0e-07
ANOVA
Organism part
Significant differential expression
↑ hindgut
↓ anterior midgut
Blood-fed adult female tissues (Marinotti et al., 2006)
Microarray experiment info
Plots and data
7.2e-06
ANOVA
Organism part
Significant differential expression
↑ midgut
↓ ovaries
Adult tissues (Baker et al., 2011)
Microarray experiment info
Plots and data
1.0e-05
ANOVA
Organism part and sex
Significant differential expression
↑ midgut:male
↓ whole body:female
Desiccation stress (Wang et al., 2011)
Microarray experiment info
Plots and data
0.0033
ANOVA
Growth condition
Significant differential expression
↑ Exposed to 70% RH 36hr
↓ Exposed to 30% RH 36hr
Embryonic development (Goltsev et al., 2009)
Microarray experiment info
Plots and data
0.0038
ANOVA
Age
Significant differential expression
↑ 43h
↓ 7h
Click here for more results from Embryonic development (Goltsev et al., 2009)
Circadian rhythm: bodies, dark-dark (Rund et al., 2011)
Microarray experiment info
Plots and data
0.014
ANOVA
Time
Significant differential expression
↑ 20.0 h
↓ 12.0 h
Two consecutive blood meals (Marinotti et al., 2006)
Microarray experiment info
Plots and data
0.021
ANOVA
Growth condition
Significant differential expression
↑ Non-blood-fed
↓ blood-fed twice
Click here for more results from Two consecutive blood meals (Marinotti et al., 2006)
Hemolymph, carcass and head (Pinto et al., 2009)
Microarray experiment info
Plots and data
0.027
ANOVA
Organism part
Significant differential expression
↑ head
↓ hemolymph
M and S form virgin females (Cassone et al., 2008)
Microarray experiment info
Plots and data
0.052
ANOVA
Genotype and strain or line
Non-significant differential expression
↑ S form:Pimperena
↓ M form:Mali-NIH
Click here for more results from M and S form virgin females (Cassone et al., 2008)
M and S form gravid females (Cassone et al., 2008)
Microarray experiment info
Plots and data
0.053
ANOVA
Genotype and strain or line
Non-significant differential expression
↑ S form:Pimperena
↓ S form:KIST
Click here for more results from M and S form gravid females (Cassone et al., 2008)
Blood meal after 15 days (Marinotti et al., 2006)
Microarray experiment info
Plots and data
0.064
ANOVA
Growth condition
Non-significant differential expression
↑ blood-fed 15d
↓ Non-blood-fed 18d
Hemocyte response to Plasmodium berghei infection (Pinto et al., 2009)
Microarray experiment info
Plots and data
0.092
Neighbour t-test
Disease state
Non-significant 1.1-fold downward change between:
← invasion-deficient parasite infection
→ wild-type parasite infection
Larval and adult stages (Marinotti et al., 2006)
Microarray experiment info
Plots and data
0.11
ANOVA
Developmental stage
Non-significant differential expression
↑ adult
↓ larva
Circadian rhythm: heads, dark-dark (Rund et al., 2011)
Microarray experiment info
Plots and data
0.12
ANOVA
Time
Non-significant differential expression
↑ 40.0 h
↓ 0.0 h
Mated females (Rogers et al., 2009)
Microarray experiment info
Plots and data
0.17
ANOVA
Growth condition
Non-significant differential expression
↑ virgin 0h
↓ mated 6h
Click here for more results from Mated females (Rogers et al., 2009)
M and S form 4th instar larvae (Cassone et al., 2008)
Microarray experiment info
Plots and data
0.31
ANOVA
Genotype and strain or line
Non-significant differential expression
↑ M form:Mali-NIH
↓ M form:M-GA-CAM
Click here for more results from M and S form 4th instar larvae (Cassone et al., 2008)
Embryonic serosa (Goltsev et al., 2009)
Microarray experiment info
Plots and data
0.33
ANOVA
Organism part
Non-significant differential expression
↑ embryonic serosa
↓ embryo
Larval salivary glands (Neira Oviedo et al., 2009)
Microarray experiment info
Plots and data
0.34
ANOVA
Organism part
Non-significant differential expression
↑ salivary gland
↓ whole_organism
Circadian rhythm: bodies, light-dark (Rund et al., 2011)
Microarray experiment info
Plots and data
0.43
ANOVA
Time
Non-significant differential expression
↑ 12.0 h
↓ 60.0 h
Male vs. female (Marinotti et al., 2006)
Microarray experiment info
Plots and data
0.61
ANOVA
Sex
Non-significant differential expression
↑ female
↓ male
Circadian rhythm: heads, light-dark (Rund et al., 2011)
Microarray experiment info
Plots and data
0.80
ANOVA
Time
Non-significant differential expression
↑ 36.0 h
↓ 60.0 h
Microarrays using this probe set
Microarrays Experiments
Affymetrix Plasmodium Anopheles
Larval and adult stages (Marinotti et al., 2006)
Blood meal time series (Marinotti et al., 2006)
Blood meal after 15 days (Marinotti et al., 2006)
Two consecutive blood meals (Marinotti et al., 2006)
Male vs. female (Marinotti et al., 2006)
Blood-fed adult female tissues (Marinotti et al., 2006)
Larval salivary glands (Neira Oviedo et al., 2009)
Alimentary canal compartments (Neira Oviedo et al., 2008)
M and S form virgin females (Cassone et al., 2008)
M and S form 4th instar larvae (Cassone et al., 2008)
M and S form gravid females (Cassone et al., 2008)
Mated females (Rogers et al., 2009)
Embryonic development (Goltsev et al., 2009)
Embryonic serosa (Goltsev et al., 2009)
Hemolymph, carcass and head (Pinto et al., 2009)
Hemocyte response to Plasmodium berghei infection (Pinto et al., 2009)
Circadian rhythm: heads, dark-dark (Rund et al., 2011)
Circadian rhythm: bodies, dark-dark (Rund et al., 2011)
Circadian rhythm: heads, light-dark (Rund et al., 2011)
Circadian rhythm: bodies, light-dark (Rund et al., 2011)
Adult tissues (Baker et al., 2011)
Desiccation stress (Wang et al., 2011)