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incucyte woundmaker tool  (Sartorius AG)


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    Structured Review

    Sartorius AG incucyte woundmaker tool
    Incucyte Woundmaker Tool, supplied by Sartorius AG, used in various techniques. Bioz Stars score: 99/100, based on 15895 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/analysis+tool/Live+Cell+Analysis+Instruments/pm42010747-44-5-8
    Average 99 stars, based on 15895 article reviews
    incucyte woundmaker tool - by Bioz Stars, 2026-09
    99/100 stars

    Images

    Related Articles

    Generated:

    Article Title: Asciminib Demonstrates Preserved Vascular and Endothelial Function Supporting a Favourable Cardiovascular Safety Profile.
    Article Snippet: Over the past two decades, tyrosine kinase inhibitors (TKIs) targeting the BCRABL1 fusion protein have transformed chronic myeloid leukaemia (CML) from a fatal disease into a chronic condition with nearnormal life expectancy [1].. Imatinib, dasatinib, nilotinib, bosutinib and ponatinib achieve deep molecular responses in most patients, providing multiple potent treatment options [1–3].. More recently, asciminib has expanded therapeutic strategies [4–6].

    Microscopy:

    Article Title: Integrated transcriptomic and proteomic analysis of cancer-suppressive Mesocestoides corti larvae.
    Article Snippet: The cells were washed twice and either complete medium (DMEM + 10% FBS and ciprofloxacin), complete medium with McKI-C1 at 4.6 or 46 μg/ml, or complete medium with Latrunculin A (Merck) was added, the latter serving as negative control. .. The plates were transferred into an Incucyte S3 microscope and imaged every 2 h for a total of 24 h. The healed area was calculated using Incucyte Scratch Wound Analysis Software (Sartorius) as relative wound density, shown in graph as a mean of ten wells for each condition and cell line. .. For the kinetic measurement of growth, the cells were seeded in 96-well plates (SPL LifeScientific) at 1x104 (B16F10) and 2x103 (ID8) cells in either complete medium (DMEM + 10% FBS and ciprofloxacin), or complete medium with McKI-C1 at a concentration of 46 μg/ml.

    Software:

    Article Title: Integrated transcriptomic and proteomic analysis of cancer-suppressive Mesocestoides corti larvae.
    Article Snippet: The cells were washed twice and either complete medium (DMEM + 10% FBS and ciprofloxacin), complete medium with McKI-C1 at 4.6 or 46 μg/ml, or complete medium with Latrunculin A (Merck) was added, the latter serving as negative control. .. The plates were transferred into an Incucyte S3 microscope and imaged every 2 h for a total of 24 h. The healed area was calculated using Incucyte Scratch Wound Analysis Software (Sartorius) as relative wound density, shown in graph as a mean of ten wells for each condition and cell line. .. For the kinetic measurement of growth, the cells were seeded in 96-well plates (SPL LifeScientific) at 1x104 (B16F10) and 2x103 (ID8) cells in either complete medium (DMEM + 10% FBS and ciprofloxacin), or complete medium with McKI-C1 at a concentration of 46 μg/ml.

    Article Title: Targeting VPS4 elicits STING-driven anti-tumor immunity to suppress rhabdomyosarcoma growth.
    Article Snippet: For live-cell quantification, cells seeded on clear-bottom 96-well plates were incubated with or without 1 μg/mL doxycycline (Sigma-Aldrich #D9891) in the presence of Incucyte® Cytotox NIR Dye (Sartorius [Bohemia, NY, USA], #4846, 1:2000). .. Fluorescent images were obtained every 2 h using the Incucyte SX5 Live-Cell Analysis System (Sartorius, 10X objective) and analyzed using the Cell-by-Cell Analysis Adherent module of the IncuCyte SX5 Software (Sartorius, Version 2022B Rev2). ..

    Article Title: Natural senolytic activity of Rhodiola rosea extract alleviates age-associated phenotypes via paraptosis
    Article Snippet: NIS-Elements AR (version 5.42.06 (buid 1821)) , Nikon, Japan , N/A. .. Incucyte software (version 2022B rev2) , Sartorius, Germany , N/A. ..

    Article Title: Nitric oxide-dependent stabilization of vimentin confers chemoresistance in ovarian cancer
    Article Snippet: Real-time monitoring of wound closure was performed using the IncuCyte Live-Cell Analysis System (Sartorius, Essen Bioscience), with images captured every 6 h over 3 days. .. Wound closure was quantified using the automated analysis algorithms provided in the IncuCyte S3 2022B Rev2 software (Sartorius, Essen Bioscience). .. Total RNA was extracted using RNeasy mini kit from QIAGEN (Cat. #74104) according to the manufacturer’s protocol.

    Article Title: The neural transdifferentiation potential of bone marrow mesenchymal stem cells.
    Article Snippet: Plates were incubated in Sartorius IncuCyte S3 Live-Cell Analysis System (available through the Molecular Imaging Center at University of Bergen), and images were captured every hour for 48 hours. .. Migration was analyzed using the Sartorius IncuCyte analysis software. ..

    Article Title: Immune evasion in primary central nervous system lymphoma: macrophage and T cell roles in response to immunotherapy.
    Article Snippet: .. Whole-well phase contrast and green-channel imaging was performed every 8 h for 156 h (~6.5 days) using an Incucyte S3 (Sartorius), with automated analysis via Incucyte software. ..

    Article Title: Protocol for Seahorse 3D Mito Stress assay in patient-derived atypical teratoid rhabdoid tumor CHLA-05-ATRT single neurospheres
    Article Snippet: Seahorse XFe96 Analyzer , Agilent , S7800B. .. Incucyte Organoid Analysis Software Module , Sartorius , 9600–0034. .. 96 well ultra-low attachment plates , Corning , 7007.

    Migration:

    Article Title: The neural transdifferentiation potential of bone marrow mesenchymal stem cells.
    Article Snippet: Plates were incubated in Sartorius IncuCyte S3 Live-Cell Analysis System (available through the Molecular Imaging Center at University of Bergen), and images were captured every hour for 48 hours. .. Migration was analyzed using the Sartorius IncuCyte analysis software. ..

    Imaging:

    Article Title: Immune evasion in primary central nervous system lymphoma: macrophage and T cell roles in response to immunotherapy.
    Article Snippet: .. Whole-well phase contrast and green-channel imaging was performed every 8 h for 156 h (~6.5 days) using an Incucyte S3 (Sartorius), with automated analysis via Incucyte software. ..



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    Image Search Results


    a , b , Schematic representation of J2 ( a ) and EJ2 ( b ) with location of the CRISPR-Cas9 target sites and mutant alleles in domestic ( S. lycopersicum acc. S100) and wild ( S. pimpinellifolium acc. LA1589) tomato. c , d , Quantification of inflorescence branching in j2 null ej2 null segregating populations in domestic ( c ) and wild ( d ) tomato. e , f , Representative images of domestic ( e ) and wild ( f ) inflorescences with different strengths of branching from genotypes segregating j2 null ej2 null alleles. g , h , Quantification of inflorescence branching in j2 null ej2 null/hypo segregating populations in domestic ( g ) and wild ( h ) tomato. i , j , Representative images of domestic ( i ) and wild ( j ) inflorescences with different strengths of branching from genotypes segregating j2 null ej2 null/hypo alleles. Gene models in a and b : exons, untranslated regions, and Cas9 cleavage sites for guide RNAs are indicated by light gray boxes, dark gray boxes, and gray arrowheads, respectively. Per genotype, the number of individual plants for which 5 inflorescences were counted in c , d , g , and h is indicated by n . Scalebars and arrowheads in e , f , i , and j represent 1 cm and indicate inflorescence branching events, respectively. J2 , JOINTLESS2 ; EJ2 , ENHANCER OF J2 ; WT, wild-type.

    Journal: bioRxiv

    Article Title: Cryptic variation alters gene dosage sensitivity to shape inflorescence architecture in tomato

    doi: 10.64898/2026.05.07.722400

    Figure Lengend Snippet: a , b , Schematic representation of J2 ( a ) and EJ2 ( b ) with location of the CRISPR-Cas9 target sites and mutant alleles in domestic ( S. lycopersicum acc. S100) and wild ( S. pimpinellifolium acc. LA1589) tomato. c , d , Quantification of inflorescence branching in j2 null ej2 null segregating populations in domestic ( c ) and wild ( d ) tomato. e , f , Representative images of domestic ( e ) and wild ( f ) inflorescences with different strengths of branching from genotypes segregating j2 null ej2 null alleles. g , h , Quantification of inflorescence branching in j2 null ej2 null/hypo segregating populations in domestic ( g ) and wild ( h ) tomato. i , j , Representative images of domestic ( i ) and wild ( j ) inflorescences with different strengths of branching from genotypes segregating j2 null ej2 null/hypo alleles. Gene models in a and b : exons, untranslated regions, and Cas9 cleavage sites for guide RNAs are indicated by light gray boxes, dark gray boxes, and gray arrowheads, respectively. Per genotype, the number of individual plants for which 5 inflorescences were counted in c , d , g , and h is indicated by n . Scalebars and arrowheads in e , f , i , and j represent 1 cm and indicate inflorescence branching events, respectively. J2 , JOINTLESS2 ; EJ2 , ENHANCER OF J2 ; WT, wild-type.

    Article Snippet: The PCR amplicons were either subjected to amplicon deep sequencing, or they were purified using ExoSAP-IT (Thermo Fisher Scientific) and analyzed by Sanger sequencing of the purified PCR amplicons, followed by decomposition of quantitative sequence trace data using Inference of CRISPR Editing (ICE) CRISPR Analysis Tool ( https://ice.synthego.com/ #/).

    Techniques: CRISPR, Mutagenesis

    a , Quantitative trait locus (QTL) sequencing using bulked segregants of plants with branched and suppressed inflorescences from a s2 x LA1589 F2 population showed two suppressor of branching ( sb ) loci from wild tomato (acc. LA1589) on chromosomes 1 and 2. The sb1 QTL contains a copy number variant of the MADS-box gene SISTER OF TM3 ( STM3 ). b , Physical positions of the QTL regions shown in ( a ) in wild (LA1589) and domestic (SL4.0) tomato. c , The sb2 locus was fine-mapped to an interval of ∼160 Kb between markers 43.46 Mb and 43.62 Mb (SL4.0 coordinates) on chromosome 2 in subsequent generations of sb2 segregating populations. Blue boxes indicate the fine-mapped sb2 locus in each population. d , The sb2 locus was fine-mapped to an interval of ∼83 Kb between markers 43.51 Mb and 43.59 Mb (SL4.0 coordinates) on chromosome 2. Each distinctive genotype is represented by a horizontal bar. Green and pink shading indicates homozygosity for s2 and LA1589, respectively. Per genotype, the number of individual plants for which 5 inflorescences were counted is indicated by n . e , Gene models and coordinates of the 15 genes in the sb2 locus including ANANTHA and 3βHSD2 . f , Representative images of strongly branched and suppressed inflorescences from plants with genotype 3 and 4 from ( d ), respectively. g , Schematic representation of ANANTHA with location of the CRISPR-Cas9 target sites and mutant alleles in domestic ( S. lycopersicum acc. S100) tomato. Gene model: exon, region encoding F-box, and Cas9 cleavage sites for guide RNAs are indicated by a light gray box, a lavender box, and gray arrowheads, respectively. g , h , Representative images of cauliflower inflorescences from anantha mutants in domestic (acc. S100) ( h ) and wild (acc. LA1589) ( i ) tomato. Scalebars and arrowheads in f , h , and i represent 1 cm and indicate inflorescence branching events, respectively. WT, wild-type; AN , ANANTHA ; 3βHSD2 , 3β-hydroxysteroid dehydrogenase/C4-decarboxylase 2 .

    Journal: bioRxiv

    Article Title: Cryptic variation alters gene dosage sensitivity to shape inflorescence architecture in tomato

    doi: 10.64898/2026.05.07.722400

    Figure Lengend Snippet: a , Quantitative trait locus (QTL) sequencing using bulked segregants of plants with branched and suppressed inflorescences from a s2 x LA1589 F2 population showed two suppressor of branching ( sb ) loci from wild tomato (acc. LA1589) on chromosomes 1 and 2. The sb1 QTL contains a copy number variant of the MADS-box gene SISTER OF TM3 ( STM3 ). b , Physical positions of the QTL regions shown in ( a ) in wild (LA1589) and domestic (SL4.0) tomato. c , The sb2 locus was fine-mapped to an interval of ∼160 Kb between markers 43.46 Mb and 43.62 Mb (SL4.0 coordinates) on chromosome 2 in subsequent generations of sb2 segregating populations. Blue boxes indicate the fine-mapped sb2 locus in each population. d , The sb2 locus was fine-mapped to an interval of ∼83 Kb between markers 43.51 Mb and 43.59 Mb (SL4.0 coordinates) on chromosome 2. Each distinctive genotype is represented by a horizontal bar. Green and pink shading indicates homozygosity for s2 and LA1589, respectively. Per genotype, the number of individual plants for which 5 inflorescences were counted is indicated by n . e , Gene models and coordinates of the 15 genes in the sb2 locus including ANANTHA and 3βHSD2 . f , Representative images of strongly branched and suppressed inflorescences from plants with genotype 3 and 4 from ( d ), respectively. g , Schematic representation of ANANTHA with location of the CRISPR-Cas9 target sites and mutant alleles in domestic ( S. lycopersicum acc. S100) tomato. Gene model: exon, region encoding F-box, and Cas9 cleavage sites for guide RNAs are indicated by a light gray box, a lavender box, and gray arrowheads, respectively. g , h , Representative images of cauliflower inflorescences from anantha mutants in domestic (acc. S100) ( h ) and wild (acc. LA1589) ( i ) tomato. Scalebars and arrowheads in f , h , and i represent 1 cm and indicate inflorescence branching events, respectively. WT, wild-type; AN , ANANTHA ; 3βHSD2 , 3β-hydroxysteroid dehydrogenase/C4-decarboxylase 2 .

    Article Snippet: The PCR amplicons were either subjected to amplicon deep sequencing, or they were purified using ExoSAP-IT (Thermo Fisher Scientific) and analyzed by Sanger sequencing of the purified PCR amplicons, followed by decomposition of quantitative sequence trace data using Inference of CRISPR Editing (ICE) CRISPR Analysis Tool ( https://ice.synthego.com/ #/).

    Techniques: Sequencing, Variant Assay, CRISPR, Mutagenesis

    a , Sequence encoding the F-box of the ANANTHA protein with location of the CRISPR-Cas9 target site (arrowhead) and mutant alleles in wild ( S. pimpinellifolium acc. LA1589) tomato. b , A 6.2 Kb and 929 bp region upstream and downstream, respectively, of the ANANTHA coding region showing open chromatin, conserved non-coding sequences (CNSs), predicted transcription factor binding sites (TFBSs), and genetic variants between the natural j2 TE ej2 W mutant ( s2 ) in domestic tomato ( S. lycopersicum ) and wild tomato ( S. pimpinellifolium acc. LA1589). A region 486–369 bp upstream of ANANTHA harbors a predicted AP2/ERF binding site (green) in s2 that is disrupted by an 8-bp deletion (bold) in wild tomato acc. LA1589. c , CRISPR genome editing with a PAM-less Cas9 variant (SpRY) to target the predicted AP2/ERF binding site (green) in a recombinant inbred line (RIL) homozygous for the domestic s2 mutant at the SB2 locus. d , Sequence logo for the predicted AP2/ERF binding site upstream of ANANTHA in the domestic s2 mutant. e , Representative images of inflorescences of the SB2 RIL and an reg lines. Scalebar represents 1 cm. f , Semi-quantification of inflorescence branching in an reg lines. Per genotype, the number of individual plants for which the level of inflorescence branching was quantified is indicated by n . Sequences targeted with CRISPR-Cas in a and c : Cas9 cleavage sites for guide RNAs, PAMs, and CRISPR-Cas edits are indicated by gray arrowheads, underlining, and pink-marked text, respectively.

    Journal: bioRxiv

    Article Title: Cryptic variation alters gene dosage sensitivity to shape inflorescence architecture in tomato

    doi: 10.64898/2026.05.07.722400

    Figure Lengend Snippet: a , Sequence encoding the F-box of the ANANTHA protein with location of the CRISPR-Cas9 target site (arrowhead) and mutant alleles in wild ( S. pimpinellifolium acc. LA1589) tomato. b , A 6.2 Kb and 929 bp region upstream and downstream, respectively, of the ANANTHA coding region showing open chromatin, conserved non-coding sequences (CNSs), predicted transcription factor binding sites (TFBSs), and genetic variants between the natural j2 TE ej2 W mutant ( s2 ) in domestic tomato ( S. lycopersicum ) and wild tomato ( S. pimpinellifolium acc. LA1589). A region 486–369 bp upstream of ANANTHA harbors a predicted AP2/ERF binding site (green) in s2 that is disrupted by an 8-bp deletion (bold) in wild tomato acc. LA1589. c , CRISPR genome editing with a PAM-less Cas9 variant (SpRY) to target the predicted AP2/ERF binding site (green) in a recombinant inbred line (RIL) homozygous for the domestic s2 mutant at the SB2 locus. d , Sequence logo for the predicted AP2/ERF binding site upstream of ANANTHA in the domestic s2 mutant. e , Representative images of inflorescences of the SB2 RIL and an reg lines. Scalebar represents 1 cm. f , Semi-quantification of inflorescence branching in an reg lines. Per genotype, the number of individual plants for which the level of inflorescence branching was quantified is indicated by n . Sequences targeted with CRISPR-Cas in a and c : Cas9 cleavage sites for guide RNAs, PAMs, and CRISPR-Cas edits are indicated by gray arrowheads, underlining, and pink-marked text, respectively.

    Article Snippet: The PCR amplicons were either subjected to amplicon deep sequencing, or they were purified using ExoSAP-IT (Thermo Fisher Scientific) and analyzed by Sanger sequencing of the purified PCR amplicons, followed by decomposition of quantitative sequence trace data using Inference of CRISPR Editing (ICE) CRISPR Analysis Tool ( https://ice.synthego.com/ #/).

    Techniques: Sequencing, CRISPR, Mutagenesis, Binding Assay, Variant Assay, Recombinant

    a , Number of differentially expressed genes (DEGs; log₂ fold change |≥| 0.585 and FDR ≤ 0.05) between plants harboring the domestic SB2 and wild sb2 haplotype, based on RNA sequencing of dissected meristems at the transition and floral stage. b , Heatmap depicting z-score normalized expression of DEGs (n=488) between SB2 and sb2 plants. c , Z-score normalized expression profiles of DEG clusters with similar expression patterns identified by hierarchical clustering in ( b ). d , The 10 most enriched gene ontology (GO) categories for DEGs in clusters 1 and 4. No GO enrichment was detected for clusters 2 and 3. P values were obtained using the Benjamini-Hochberg (BH) method in clusterProfiler. e , f Volcano plots displaying downregulation of sterol-related genes in transition ( e ) and floral ( f ) meristems of sb2 compared with SB2 plants. g , h , Volcano plots displaying expression patterns for genes at the sb2 locus between SB2 and sb2 plants in transition ( g ) and floral ( h ) meristems. i , Schematic representation of 3βHSD2 with location of the CRISPR-Cas9 target sites and mutant alleles in domestic ( S. lycopersicum acc. S100) tomato. Gene model: exons, untranslated regions, and Cas9 cleavage sites for guide RNAs are indicated by light gray boxes, dark gray boxes, and gray arrowheads, respectively. j , Representative images of inflorescences from 3bhsd2 null1 , j2 null2 ej2 hypo1 /+, and j2 null2 ej2 hypo1 /+ 3bhsd2 null1 plants. Scalebars and arrowheads represent 1 cm and indicate inflorescence branching events, respectively. k , Quantification of inflorescence branching for 3bhsd2 null1 , j2 null2 ej2 hypo1 /+, and j2 null2 ej2 hypo1 /+ 3bhsd2 null1 plants. Dotted lines represent mean number of branching events for each genotype. Error bars denote standard deviation ( n =24–35). Circle areas represent the number of inflorescences per genotype. Statistical significance was determined by ANOVA followed by Tukey’s post-hoc analysis ( P < 0.05; indicated by different letters). suppressor of branching 2, sb2; DWF , DWARF ; SSR2 , STEROL SIDE CHAIN REDUCTASE 2 ; ROT3 , ROTUNDIFOLIA 3 ; GAME4 , GLYCOALKALOID METABOLISM 4 ; SMO , C-4 STEROL METHYL OXIDASE ; C5-SD2 , STEROL C-5 DESATURASE 2 ; MVK , MEVALONATE KINASE ; 8,7-SI , STEROL 8,7 ISOMERASE ; 3βHSD2 , 3β-hydroxysteroid dehydrogenase/C4-decarboxylase 2 ; AN , ANANTHA; J2 , JOINTLESS2 ; EJ2 , ENHANCER OF J2 ; WT, wild-type.

    Journal: bioRxiv

    Article Title: Cryptic variation alters gene dosage sensitivity to shape inflorescence architecture in tomato

    doi: 10.64898/2026.05.07.722400

    Figure Lengend Snippet: a , Number of differentially expressed genes (DEGs; log₂ fold change |≥| 0.585 and FDR ≤ 0.05) between plants harboring the domestic SB2 and wild sb2 haplotype, based on RNA sequencing of dissected meristems at the transition and floral stage. b , Heatmap depicting z-score normalized expression of DEGs (n=488) between SB2 and sb2 plants. c , Z-score normalized expression profiles of DEG clusters with similar expression patterns identified by hierarchical clustering in ( b ). d , The 10 most enriched gene ontology (GO) categories for DEGs in clusters 1 and 4. No GO enrichment was detected for clusters 2 and 3. P values were obtained using the Benjamini-Hochberg (BH) method in clusterProfiler. e , f Volcano plots displaying downregulation of sterol-related genes in transition ( e ) and floral ( f ) meristems of sb2 compared with SB2 plants. g , h , Volcano plots displaying expression patterns for genes at the sb2 locus between SB2 and sb2 plants in transition ( g ) and floral ( h ) meristems. i , Schematic representation of 3βHSD2 with location of the CRISPR-Cas9 target sites and mutant alleles in domestic ( S. lycopersicum acc. S100) tomato. Gene model: exons, untranslated regions, and Cas9 cleavage sites for guide RNAs are indicated by light gray boxes, dark gray boxes, and gray arrowheads, respectively. j , Representative images of inflorescences from 3bhsd2 null1 , j2 null2 ej2 hypo1 /+, and j2 null2 ej2 hypo1 /+ 3bhsd2 null1 plants. Scalebars and arrowheads represent 1 cm and indicate inflorescence branching events, respectively. k , Quantification of inflorescence branching for 3bhsd2 null1 , j2 null2 ej2 hypo1 /+, and j2 null2 ej2 hypo1 /+ 3bhsd2 null1 plants. Dotted lines represent mean number of branching events for each genotype. Error bars denote standard deviation ( n =24–35). Circle areas represent the number of inflorescences per genotype. Statistical significance was determined by ANOVA followed by Tukey’s post-hoc analysis ( P < 0.05; indicated by different letters). suppressor of branching 2, sb2; DWF , DWARF ; SSR2 , STEROL SIDE CHAIN REDUCTASE 2 ; ROT3 , ROTUNDIFOLIA 3 ; GAME4 , GLYCOALKALOID METABOLISM 4 ; SMO , C-4 STEROL METHYL OXIDASE ; C5-SD2 , STEROL C-5 DESATURASE 2 ; MVK , MEVALONATE KINASE ; 8,7-SI , STEROL 8,7 ISOMERASE ; 3βHSD2 , 3β-hydroxysteroid dehydrogenase/C4-decarboxylase 2 ; AN , ANANTHA; J2 , JOINTLESS2 ; EJ2 , ENHANCER OF J2 ; WT, wild-type.

    Article Snippet: The PCR amplicons were either subjected to amplicon deep sequencing, or they were purified using ExoSAP-IT (Thermo Fisher Scientific) and analyzed by Sanger sequencing of the purified PCR amplicons, followed by decomposition of quantitative sequence trace data using Inference of CRISPR Editing (ICE) CRISPR Analysis Tool ( https://ice.synthego.com/ #/).

    Techniques: RNA Sequencing, Expressing, CRISPR, Mutagenesis, Standard Deviation

    a , Sequence of 3βHSD2 targeted by genome editing with location of the CRISPR-Cas9 target sites (arrowheads) and mutant alleles in domestic ( S. lycopersicum acc. S100) tomato. b , Representative images of inflorescences from 3bhsd2 null2 , j2 null2 ej2 hypo1 /+ 3bhsd2 null /+, and j2 null2 ej2 hypo1 3bhsd2 null plants. Scalebars represent 1 cm.

    Journal: bioRxiv

    Article Title: Cryptic variation alters gene dosage sensitivity to shape inflorescence architecture in tomato

    doi: 10.64898/2026.05.07.722400

    Figure Lengend Snippet: a , Sequence of 3βHSD2 targeted by genome editing with location of the CRISPR-Cas9 target sites (arrowheads) and mutant alleles in domestic ( S. lycopersicum acc. S100) tomato. b , Representative images of inflorescences from 3bhsd2 null2 , j2 null2 ej2 hypo1 /+ 3bhsd2 null /+, and j2 null2 ej2 hypo1 3bhsd2 null plants. Scalebars represent 1 cm.

    Article Snippet: The PCR amplicons were either subjected to amplicon deep sequencing, or they were purified using ExoSAP-IT (Thermo Fisher Scientific) and analyzed by Sanger sequencing of the purified PCR amplicons, followed by decomposition of quantitative sequence trace data using Inference of CRISPR Editing (ICE) CRISPR Analysis Tool ( https://ice.synthego.com/ #/).

    Techniques: Sequencing, CRISPR, Mutagenesis