r212 01 yeastmaker yeast transformation system 2 clontech (TaKaRa)
96
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TaKaRa
r212 01 yeastmaker yeast transformation system 2 clontech
R212 01 Yeastmaker Yeast Transformation System 2 Clontech, supplied by TaKaRa, used in various techniques. Bioz Stars score: 96/100, based on 1232 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/r212+01+yeastmaker+yeast+transformation+system+2+clontech/Yeastmaker+Yeast+Transformation+System+2/pm40449490-251-171-177
Average 96 stars, based on 1232 article reviews
R212 01 Yeastmaker Yeast Transformation System 2 Clontech, supplied by TaKaRa, used in various techniques. Bioz Stars score: 96/100, based on 1232 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/r212+01+yeastmaker+yeast+transformation+system+2+clontech/Yeastmaker+Yeast+Transformation+System+2/pm40449490-251-171-177
Average 96 stars, based on 1232 article reviews
r212 01 yeastmaker yeast transformation system 2 clontech - by Bioz Stars,
2026-09
96/100 stars
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Virus:Article Title: Bifunctional transcription factor GhMYB4 orchestrates transition from elongation to secondary cell wall synthesis trade-off in cotton fiber. Article Snippet: Article Bifunctional transcription factor GhMYB4 orchestrates transition from elongation to secondary cell wall synthesis trade-off in cotton fiber Graphical abstract Highlights • Transition stage of cotton fiber coordinates fiber elongation and SCW synthesis • GhMYB4 represses fiber elongation through GhRAP2 and GhTCP15 • GhMYB4 and GhMYB52-GhFSN1-GhILR3 module hierarchically activate SCW synthesis • GhMYB4’s bifunctionality relies on different cis-elements and regulation motifs Authors Lu Qiao, Haozhe Tan, Mengling Sun, ..., Zhiwei Chen, Xianlong Zhang, Lili Tu Correspondence xlzhang@mail.hzau.edu.cn (X.Z.), lilitu@mail.hzau.edu.cn (L.T.). In brief Qiao et al. demonstrate that GhMYB4, a transcription factor during the transition stage of fiber development, suppresses fatty acid and brassinosteroid biosynthesis while activating cellulose synthesis.. The study highlights the dual transcriptional activities of GhMYB4 in inhibiting fiber elongation and promoting secondary cell wall synthesis. Recombinant:Article Title: Bifunctional transcription factor GhMYB4 orchestrates transition from elongation to secondary cell wall synthesis trade-off in cotton fiber. Article Snippet: Article Bifunctional transcription factor GhMYB4 orchestrates transition from elongation to secondary cell wall synthesis trade-off in cotton fiber Graphical abstract Highlights • Transition stage of cotton fiber coordinates fiber elongation and SCW synthesis • GhMYB4 represses fiber elongation through GhRAP2 and GhTCP15 • GhMYB4 and GhMYB52-GhFSN1-GhILR3 module hierarchically activate SCW synthesis • GhMYB4’s bifunctionality relies on different cis-elements and regulation motifs Authors Lu Qiao, Haozhe Tan, Mengling Sun, ..., Zhiwei Chen, Xianlong Zhang, Lili Tu Correspondence xlzhang@mail.hzau.edu.cn (X.Z.), lilitu@mail.hzau.edu.cn (L.T.). In brief Qiao et al. demonstrate that GhMYB4, a transcription factor during the transition stage of fiber development, suppresses fatty acid and brassinosteroid biosynthesis while activating cellulose synthesis.. The study highlights the dual transcriptional activities of GhMYB4 in inhibiting fiber elongation and promoting secondary cell wall synthesis. Protease Inhibitor:Article Title: Bifunctional transcription factor GhMYB4 orchestrates transition from elongation to secondary cell wall synthesis trade-off in cotton fiber. Article Snippet: Article Bifunctional transcription factor GhMYB4 orchestrates transition from elongation to secondary cell wall synthesis trade-off in cotton fiber Graphical abstract Highlights • Transition stage of cotton fiber coordinates fiber elongation and SCW synthesis • GhMYB4 represses fiber elongation through GhRAP2 and GhTCP15 • GhMYB4 and GhMYB52-GhFSN1-GhILR3 module hierarchically activate SCW synthesis • GhMYB4’s bifunctionality relies on different cis-elements and regulation motifs Authors Lu Qiao, Haozhe Tan, Mengling Sun, ..., Zhiwei Chen, Xianlong Zhang, Lili Tu Correspondence xlzhang@mail.hzau.edu.cn (X.Z.), lilitu@mail.hzau.edu.cn (L.T.). In brief Qiao et al. demonstrate that GhMYB4, a transcription factor during the transition stage of fiber development, suppresses fatty acid and brassinosteroid biosynthesis while activating cellulose synthesis.. The study highlights the dual transcriptional activities of GhMYB4 in inhibiting fiber elongation and promoting secondary cell wall synthesis. Lysis:Article Title: Bifunctional transcription factor GhMYB4 orchestrates transition from elongation to secondary cell wall synthesis trade-off in cotton fiber. Article Snippet: Article Bifunctional transcription factor GhMYB4 orchestrates transition from elongation to secondary cell wall synthesis trade-off in cotton fiber Graphical abstract Highlights • Transition stage of cotton fiber coordinates fiber elongation and SCW synthesis • GhMYB4 represses fiber elongation through GhRAP2 and GhTCP15 • GhMYB4 and GhMYB52-GhFSN1-GhILR3 module hierarchically activate SCW synthesis • GhMYB4’s bifunctionality relies on different cis-elements and regulation motifs Authors Lu Qiao, Haozhe Tan, Mengling Sun, ..., Zhiwei Chen, Xianlong Zhang, Lili Tu Correspondence xlzhang@mail.hzau.edu.cn (X.Z.), lilitu@mail.hzau.edu.cn (L.T.). In brief Qiao et al. demonstrate that GhMYB4, a transcription factor during the transition stage of fiber development, suppresses fatty acid and brassinosteroid biosynthesis while activating cellulose synthesis.. The study highlights the dual transcriptional activities of GhMYB4 in inhibiting fiber elongation and promoting secondary cell wall synthesis. cDNA Synthesis:Article Title: Bifunctional transcription factor GhMYB4 orchestrates transition from elongation to secondary cell wall synthesis trade-off in cotton fiber. Article Snippet: Article Bifunctional transcription factor GhMYB4 orchestrates transition from elongation to secondary cell wall synthesis trade-off in cotton fiber Graphical abstract Highlights • Transition stage of cotton fiber coordinates fiber elongation and SCW synthesis • GhMYB4 represses fiber elongation through GhRAP2 and GhTCP15 • GhMYB4 and GhMYB52-GhFSN1-GhILR3 module hierarchically activate SCW synthesis • GhMYB4’s bifunctionality relies on different cis-elements and regulation motifs Authors Lu Qiao, Haozhe Tan, Mengling Sun, ..., Zhiwei Chen, Xianlong Zhang, Lili Tu Correspondence xlzhang@mail.hzau.edu.cn (X.Z.), lilitu@mail.hzau.edu.cn (L.T.). In brief Qiao et al. demonstrate that GhMYB4, a transcription factor during the transition stage of fiber development, suppresses fatty acid and brassinosteroid biosynthesis while activating cellulose synthesis.. The study highlights the dual transcriptional activities of GhMYB4 in inhibiting fiber elongation and promoting secondary cell wall synthesis. Transformation Assay:Article Title: Bifunctional transcription factor GhMYB4 orchestrates transition from elongation to secondary cell wall synthesis trade-off in cotton fiber. Article Snippet: Article Bifunctional transcription factor GhMYB4 orchestrates transition from elongation to secondary cell wall synthesis trade-off in cotton fiber Graphical abstract Highlights • Transition stage of cotton fiber coordinates fiber elongation and SCW synthesis • GhMYB4 represses fiber elongation through GhRAP2 and GhTCP15 • GhMYB4 and GhMYB52-GhFSN1-GhILR3 module hierarchically activate SCW synthesis • GhMYB4’s bifunctionality relies on different cis-elements and regulation motifs Authors Lu Qiao, Haozhe Tan, Mengling Sun, ..., Zhiwei Chen, Xianlong Zhang, Lili Tu Correspondence xlzhang@mail.hzau.edu.cn (X.Z.), lilitu@mail.hzau.edu.cn (L.T.). In brief Qiao et al. demonstrate that GhMYB4, a transcription factor during the transition stage of fiber development, suppresses fatty acid and brassinosteroid biosynthesis while activating cellulose synthesis.. The study highlights the dual transcriptional activities of GhMYB4 in inhibiting fiber elongation and promoting secondary cell wall synthesis. Reporter Assay:Article Title: Bifunctional transcription factor GhMYB4 orchestrates transition from elongation to secondary cell wall synthesis trade-off in cotton fiber. Article Snippet: Article Bifunctional transcription factor GhMYB4 orchestrates transition from elongation to secondary cell wall synthesis trade-off in cotton fiber Graphical abstract Highlights • Transition stage of cotton fiber coordinates fiber elongation and SCW synthesis • GhMYB4 represses fiber elongation through GhRAP2 and GhTCP15 • GhMYB4 and GhMYB52-GhFSN1-GhILR3 module hierarchically activate SCW synthesis • GhMYB4’s bifunctionality relies on different cis-elements and regulation motifs Authors Lu Qiao, Haozhe Tan, Mengling Sun, ..., Zhiwei Chen, Xianlong Zhang, Lili Tu Correspondence xlzhang@mail.hzau.edu.cn (X.Z.), lilitu@mail.hzau.edu.cn (L.T.). In brief Qiao et al. demonstrate that GhMYB4, a transcription factor during the transition stage of fiber development, suppresses fatty acid and brassinosteroid biosynthesis while activating cellulose synthesis.. The study highlights the dual transcriptional activities of GhMYB4 in inhibiting fiber elongation and promoting secondary cell wall synthesis. Protein Purification:Article Title: Bifunctional transcription factor GhMYB4 orchestrates transition from elongation to secondary cell wall synthesis trade-off in cotton fiber. Article Snippet: Article Bifunctional transcription factor GhMYB4 orchestrates transition from elongation to secondary cell wall synthesis trade-off in cotton fiber Graphical abstract Highlights • Transition stage of cotton fiber coordinates fiber elongation and SCW synthesis • GhMYB4 represses fiber elongation through GhRAP2 and GhTCP15 • GhMYB4 and GhMYB52-GhFSN1-GhILR3 module hierarchically activate SCW synthesis • GhMYB4’s bifunctionality relies on different cis-elements and regulation motifs Authors Lu Qiao, Haozhe Tan, Mengling Sun, ..., Zhiwei Chen, Xianlong Zhang, Lili Tu Correspondence xlzhang@mail.hzau.edu.cn (X.Z.), lilitu@mail.hzau.edu.cn (L.T.). In brief Qiao et al. demonstrate that GhMYB4, a transcription factor during the transition stage of fiber development, suppresses fatty acid and brassinosteroid biosynthesis while activating cellulose synthesis.. The study highlights the dual transcriptional activities of GhMYB4 in inhibiting fiber elongation and promoting secondary cell wall synthesis. RNA sequencing:Article Title: Bifunctional transcription factor GhMYB4 orchestrates transition from elongation to secondary cell wall synthesis trade-off in cotton fiber. Article Snippet: Article Bifunctional transcription factor GhMYB4 orchestrates transition from elongation to secondary cell wall synthesis trade-off in cotton fiber Graphical abstract Highlights • Transition stage of cotton fiber coordinates fiber elongation and SCW synthesis • GhMYB4 represses fiber elongation through GhRAP2 and GhTCP15 • GhMYB4 and GhMYB52-GhFSN1-GhILR3 module hierarchically activate SCW synthesis • GhMYB4’s bifunctionality relies on different cis-elements and regulation motifs Authors Lu Qiao, Haozhe Tan, Mengling Sun, ..., Zhiwei Chen, Xianlong Zhang, Lili Tu Correspondence xlzhang@mail.hzau.edu.cn (X.Z.), lilitu@mail.hzau.edu.cn (L.T.). In brief Qiao et al. demonstrate that GhMYB4, a transcription factor during the transition stage of fiber development, suppresses fatty acid and brassinosteroid biosynthesis while activating cellulose synthesis.. The study highlights the dual transcriptional activities of GhMYB4 in inhibiting fiber elongation and promoting secondary cell wall synthesis. |