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rabbit anti vasa  (Developmental Studies Hybridoma Bank)


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    Structured Review

    Developmental Studies Hybridoma Bank rabbit anti vasa
    (A-B) Either UAS-lexA RNAi or UAS-wun RNAi males were mated with nos-gal4 . virgin females carrying both the transgenes were mated with endogenous Hh-GFP males. Compared to control lexA M- (A), wun M- embryos show a higher number of Hh-GFP puncta (Yellow) in the mesoderm. (C) Individual Hh-GFP puncta were counted in 15 ROIs dorsal to the gut, per genotype (gut outline is marked in all the panels). The increase in Hh-GFP is quantified using an unpaired T-test, ****p<0.0001. (A1-B1). Magnified insets shown in (A1’-B1’), with arrowheads marking Hh-GFP puncta. (D-F) Compared to control, lexA M- (D) wun M- embryos show a higher number of Hh-GFP puncta in their PGCs (E and F), marked <t>with</t> <t>anti-Vasa</t> antibody (red) staining. Magnified insets (D2’-F2’), with arrowheads marking Hh-GFP puncta. (G) The total number of puncta was counted in 15 PGCS per genotype across three replicates, and the percentages of PGCs with 1-2, 3-5, 6-8 and 9+ Hh-GFP puncta are plotted. Significance was calculated using Two-way ANOVA and Tukey’s multiple comparison test (****p<0.0001, ***p<0.001, **p<0.01).
    Rabbit Anti Vasa, supplied by Developmental Studies Hybridoma Bank, used in various techniques. Bioz Stars score: 96/100, based on 328 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/rabbit+anti+vasa/anti-vasa/bio_rxiv__64898__2026__05__01__722161-286-9-19
    Average 96 stars, based on 328 article reviews
    rabbit anti vasa - by Bioz Stars, 2026-09
    96/100 stars

    Images

    1) Product Images from "Wunen(s) help navigate Primordial Germ Cells by attenuating Hedgehog signaling"

    Article Title: Wunen(s) help navigate Primordial Germ Cells by attenuating Hedgehog signaling

    Journal: bioRxiv

    doi: 10.64898/2026.05.01.722161

    (A-B) Either UAS-lexA RNAi or UAS-wun RNAi males were mated with nos-gal4 . virgin females carrying both the transgenes were mated with endogenous Hh-GFP males. Compared to control lexA M- (A), wun M- embryos show a higher number of Hh-GFP puncta (Yellow) in the mesoderm. (C) Individual Hh-GFP puncta were counted in 15 ROIs dorsal to the gut, per genotype (gut outline is marked in all the panels). The increase in Hh-GFP is quantified using an unpaired T-test, ****p<0.0001. (A1-B1). Magnified insets shown in (A1’-B1’), with arrowheads marking Hh-GFP puncta. (D-F) Compared to control, lexA M- (D) wun M- embryos show a higher number of Hh-GFP puncta in their PGCs (E and F), marked with anti-Vasa antibody (red) staining. Magnified insets (D2’-F2’), with arrowheads marking Hh-GFP puncta. (G) The total number of puncta was counted in 15 PGCS per genotype across three replicates, and the percentages of PGCs with 1-2, 3-5, 6-8 and 9+ Hh-GFP puncta are plotted. Significance was calculated using Two-way ANOVA and Tukey’s multiple comparison test (****p<0.0001, ***p<0.001, **p<0.01).
    Figure Legend Snippet: (A-B) Either UAS-lexA RNAi or UAS-wun RNAi males were mated with nos-gal4 . virgin females carrying both the transgenes were mated with endogenous Hh-GFP males. Compared to control lexA M- (A), wun M- embryos show a higher number of Hh-GFP puncta (Yellow) in the mesoderm. (C) Individual Hh-GFP puncta were counted in 15 ROIs dorsal to the gut, per genotype (gut outline is marked in all the panels). The increase in Hh-GFP is quantified using an unpaired T-test, ****p<0.0001. (A1-B1). Magnified insets shown in (A1’-B1’), with arrowheads marking Hh-GFP puncta. (D-F) Compared to control, lexA M- (D) wun M- embryos show a higher number of Hh-GFP puncta in their PGCs (E and F), marked with anti-Vasa antibody (red) staining. Magnified insets (D2’-F2’), with arrowheads marking Hh-GFP puncta. (G) The total number of puncta was counted in 15 PGCS per genotype across three replicates, and the percentages of PGCs with 1-2, 3-5, 6-8 and 9+ Hh-GFP puncta are plotted. Significance was calculated using Two-way ANOVA and Tukey’s multiple comparison test (****p<0.0001, ***p<0.001, **p<0.01).

    Techniques Used: Control, Staining, Comparison

    All embryos shown are at Stage 10 (A-D) PGCs in control lexA M- embryo (A) exit the gut through its side and enter the mesoderm. In contrast, PGCs in wun M- embryos either clump precociously (B) or are delayed while migrating through the gut (C). PGCs of wun Z- (D) show a similar phenotype, although, as expected, the penetrance is lower. (E) PGC migration defects on depleting wun are quantified (n=15, 3 replicates) and significance determined using Ordinary one-way ANOVA and Tukey’s multiple comparison test (n=15, 3 replicates), ****p<0.0001, ***p<0.001. (F-G) wun2 M- leads to a highly penetrant precocious clumping phenotype in stage 10 (E) . wun2 Z- embryos also show similar phenotype (F) although not as penetrant. Arrowheads mark mis-migrated PGCs. Additionally, dying PGCs, marked by a star, are observed (H) . PGC migration defects on depleting wun2 are quantified (n=10, 2 replicates) and significance determined using Ordinary one-way ANOVA and Tukey’s multiple comparison test (n=10, 2 replicates) **p<0.01. Hatches represent the percentage of embryos that have PGCs that have not individualized by stage10. Embryos were stained with Hoechst to mark DNA (A1-D1 and E1-F1) and anti-Vasa (A2-D2 and E1-F1). (A3-D3 and E3-F3) display merged images.
    Figure Legend Snippet: All embryos shown are at Stage 10 (A-D) PGCs in control lexA M- embryo (A) exit the gut through its side and enter the mesoderm. In contrast, PGCs in wun M- embryos either clump precociously (B) or are delayed while migrating through the gut (C). PGCs of wun Z- (D) show a similar phenotype, although, as expected, the penetrance is lower. (E) PGC migration defects on depleting wun are quantified (n=15, 3 replicates) and significance determined using Ordinary one-way ANOVA and Tukey’s multiple comparison test (n=15, 3 replicates), ****p<0.0001, ***p<0.001. (F-G) wun2 M- leads to a highly penetrant precocious clumping phenotype in stage 10 (E) . wun2 Z- embryos also show similar phenotype (F) although not as penetrant. Arrowheads mark mis-migrated PGCs. Additionally, dying PGCs, marked by a star, are observed (H) . PGC migration defects on depleting wun2 are quantified (n=10, 2 replicates) and significance determined using Ordinary one-way ANOVA and Tukey’s multiple comparison test (n=10, 2 replicates) **p<0.01. Hatches represent the percentage of embryos that have PGCs that have not individualized by stage10. Embryos were stained with Hoechst to mark DNA (A1-D1 and E1-F1) and anti-Vasa (A2-D2 and E1-F1). (A3-D3 and E3-F3) display merged images.

    Techniques Used: Control, Migration, Comparison, Staining

    Related Articles

    Fluorescence:

    Article Title: Bourbon and Mycbp function with Otu to promote Sxl protein expression in the Drosophila female germline
    Article Snippet: .. The following primary antibodies were used: Rat anti-Vasa (1:20) DSHB, rabbit anti-Vasa (1:1,000) (Lehmann lab), mouse anti-Hts (1:20) DSHB 1B1, mouse anti-Sxl (1:10) DSHB M18 and M114, Rabbit anti-C(3)G (1:300) (Hawley lab), Rat anti-HA (1:100), Guinea Pig anti-Rbfox1 (1:5,000) , Rabbit anti-GFP (1:1,000) (Invitrogen), mouse anti-GFP (1:1,000) (Abcam), mouse anti-Orb (1:10) (DSHB), and fluorescence-conjugated secondary antibodies (1:300) (Jackson Laboratories and Invitrogen). ..

    other:

    Article Title: TORC1-dependent translation drives chromatin remodeling during the germ-cell-to-maternal transition in Drosophila.
    Article Snippet: Primary antibodies utilized were: mouse anti-1B1 (1:20; DSHB), Rabbit anti-Vasa (1:5000; Rangan Laboratory), Chicken anti-Vasa (1:5000; Rangan Laboratory), Rabbit anti-GFP (1:2000; abcam, ab6556), Rabbit anti-H3K9me3 (1:500; Active Motif, AB_2532132), Mouse anti-H3K27me3 (1:500; abcam, ab6002), Rabbit anti-Egl (1:1000; Lehmann Laboratory), Rabbit anti-Blanks (1:2000; Sontheimer lab), Mouse anti-NPC (1:2000; BioLegend, AB_2565026).

    Article Title: TORC1-dependent translation drives chromatin remodeling during the germ-cell-to-maternal transition in Drosophila
    Article Snippet: Primary antibodies utilized were: mouse anti-1B1 (1:20; DSHB), Rabbit anti-Vasa (1:5000; Rangan Laboratory), Chicken anti-Vasa (1:5000; Rangan Laboratory), Rabbit anti-GFP (1:2000; abcam, ab6556), Rabbit anti-H3K9me3 (1:500; Active Motif, AB_2532132), Mouse anti-H3K27me3 (1:500; abcam, ab6002), Rabbit anti-Egl (1:1000; Lehmann Laboratory), Rabbit anti-Blanks (1:2000; Sontheimer lab), Mouse anti-NPC (1:2000; BioLegend, AB_2565026).



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    (A-B) Either UAS-lexA RNAi or UAS-wun RNAi males were mated with nos-gal4 . virgin females carrying both the transgenes were mated with endogenous Hh-GFP males. Compared to control lexA M- (A), wun M- embryos show a higher number of Hh-GFP puncta (Yellow) in the mesoderm. (C) Individual Hh-GFP puncta were counted in 15 ROIs dorsal to the gut, per genotype (gut outline is marked in all the panels). The increase in Hh-GFP is quantified using an unpaired T-test, ****p<0.0001. (A1-B1). Magnified insets shown in (A1’-B1’), with arrowheads marking Hh-GFP puncta. (D-F) Compared to control, lexA M- (D) wun M- embryos show a higher number of Hh-GFP puncta in their PGCs (E and F), marked <t>with</t> <t>anti-Vasa</t> antibody (red) staining. Magnified insets (D2’-F2’), with arrowheads marking Hh-GFP puncta. (G) The total number of puncta was counted in 15 PGCS per genotype across three replicates, and the percentages of PGCs with 1-2, 3-5, 6-8 and 9+ Hh-GFP puncta are plotted. Significance was calculated using Two-way ANOVA and Tukey’s multiple comparison test (****p<0.0001, ***p<0.001, **p<0.01).
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    Image Search Results


    (A-B) Either UAS-lexA RNAi or UAS-wun RNAi males were mated with nos-gal4 . virgin females carrying both the transgenes were mated with endogenous Hh-GFP males. Compared to control lexA M- (A), wun M- embryos show a higher number of Hh-GFP puncta (Yellow) in the mesoderm. (C) Individual Hh-GFP puncta were counted in 15 ROIs dorsal to the gut, per genotype (gut outline is marked in all the panels). The increase in Hh-GFP is quantified using an unpaired T-test, ****p<0.0001. (A1-B1). Magnified insets shown in (A1’-B1’), with arrowheads marking Hh-GFP puncta. (D-F) Compared to control, lexA M- (D) wun M- embryos show a higher number of Hh-GFP puncta in their PGCs (E and F), marked with anti-Vasa antibody (red) staining. Magnified insets (D2’-F2’), with arrowheads marking Hh-GFP puncta. (G) The total number of puncta was counted in 15 PGCS per genotype across three replicates, and the percentages of PGCs with 1-2, 3-5, 6-8 and 9+ Hh-GFP puncta are plotted. Significance was calculated using Two-way ANOVA and Tukey’s multiple comparison test (****p<0.0001, ***p<0.001, **p<0.01).

    Journal: bioRxiv

    Article Title: Wunen(s) help navigate Primordial Germ Cells by attenuating Hedgehog signaling

    doi: 10.64898/2026.05.01.722161

    Figure Lengend Snippet: (A-B) Either UAS-lexA RNAi or UAS-wun RNAi males were mated with nos-gal4 . virgin females carrying both the transgenes were mated with endogenous Hh-GFP males. Compared to control lexA M- (A), wun M- embryos show a higher number of Hh-GFP puncta (Yellow) in the mesoderm. (C) Individual Hh-GFP puncta were counted in 15 ROIs dorsal to the gut, per genotype (gut outline is marked in all the panels). The increase in Hh-GFP is quantified using an unpaired T-test, ****p<0.0001. (A1-B1). Magnified insets shown in (A1’-B1’), with arrowheads marking Hh-GFP puncta. (D-F) Compared to control, lexA M- (D) wun M- embryos show a higher number of Hh-GFP puncta in their PGCs (E and F), marked with anti-Vasa antibody (red) staining. Magnified insets (D2’-F2’), with arrowheads marking Hh-GFP puncta. (G) The total number of puncta was counted in 15 PGCS per genotype across three replicates, and the percentages of PGCs with 1-2, 3-5, 6-8 and 9+ Hh-GFP puncta are plotted. Significance was calculated using Two-way ANOVA and Tukey’s multiple comparison test (****p<0.0001, ***p<0.001, **p<0.01).

    Article Snippet: The following primary antibodies in specified dilutions were used: Rabbit anti-Vasa (1:1000, Gift from Trudi Schüpbach), Mouse anti-En (1:50, DSHB), Mouse anti-Wg (1:20, DSHB), Chicken anti-GFP (1:500, Invitrogen), Mouse anti-Smo (1:50, DSHB), Mouse (1:20), and Chicken anti-βgal (1:1000, Abcam).

    Techniques: Control, Staining, Comparison

    All embryos shown are at Stage 10 (A-D) PGCs in control lexA M- embryo (A) exit the gut through its side and enter the mesoderm. In contrast, PGCs in wun M- embryos either clump precociously (B) or are delayed while migrating through the gut (C). PGCs of wun Z- (D) show a similar phenotype, although, as expected, the penetrance is lower. (E) PGC migration defects on depleting wun are quantified (n=15, 3 replicates) and significance determined using Ordinary one-way ANOVA and Tukey’s multiple comparison test (n=15, 3 replicates), ****p<0.0001, ***p<0.001. (F-G) wun2 M- leads to a highly penetrant precocious clumping phenotype in stage 10 (E) . wun2 Z- embryos also show similar phenotype (F) although not as penetrant. Arrowheads mark mis-migrated PGCs. Additionally, dying PGCs, marked by a star, are observed (H) . PGC migration defects on depleting wun2 are quantified (n=10, 2 replicates) and significance determined using Ordinary one-way ANOVA and Tukey’s multiple comparison test (n=10, 2 replicates) **p<0.01. Hatches represent the percentage of embryos that have PGCs that have not individualized by stage10. Embryos were stained with Hoechst to mark DNA (A1-D1 and E1-F1) and anti-Vasa (A2-D2 and E1-F1). (A3-D3 and E3-F3) display merged images.

    Journal: bioRxiv

    Article Title: Wunen(s) help navigate Primordial Germ Cells by attenuating Hedgehog signaling

    doi: 10.64898/2026.05.01.722161

    Figure Lengend Snippet: All embryos shown are at Stage 10 (A-D) PGCs in control lexA M- embryo (A) exit the gut through its side and enter the mesoderm. In contrast, PGCs in wun M- embryos either clump precociously (B) or are delayed while migrating through the gut (C). PGCs of wun Z- (D) show a similar phenotype, although, as expected, the penetrance is lower. (E) PGC migration defects on depleting wun are quantified (n=15, 3 replicates) and significance determined using Ordinary one-way ANOVA and Tukey’s multiple comparison test (n=15, 3 replicates), ****p<0.0001, ***p<0.001. (F-G) wun2 M- leads to a highly penetrant precocious clumping phenotype in stage 10 (E) . wun2 Z- embryos also show similar phenotype (F) although not as penetrant. Arrowheads mark mis-migrated PGCs. Additionally, dying PGCs, marked by a star, are observed (H) . PGC migration defects on depleting wun2 are quantified (n=10, 2 replicates) and significance determined using Ordinary one-way ANOVA and Tukey’s multiple comparison test (n=10, 2 replicates) **p<0.01. Hatches represent the percentage of embryos that have PGCs that have not individualized by stage10. Embryos were stained with Hoechst to mark DNA (A1-D1 and E1-F1) and anti-Vasa (A2-D2 and E1-F1). (A3-D3 and E3-F3) display merged images.

    Article Snippet: The following primary antibodies in specified dilutions were used: Rabbit anti-Vasa (1:1000, Gift from Trudi Schüpbach), Mouse anti-En (1:50, DSHB), Mouse anti-Wg (1:20, DSHB), Chicken anti-GFP (1:500, Invitrogen), Mouse anti-Smo (1:50, DSHB), Mouse (1:20), and Chicken anti-βgal (1:1000, Abcam).

    Techniques: Control, Migration, Comparison, Staining