Hordeum vulgareBelow you will find antibodies with confirmed or predicted reactivity to Hordeum vulgare Protocols and Technical Information • Support • Western Blot Video Tutorials | ![]() |
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AS06 181 | Clonality: Polyclonal | Host: Rabbit | Reactivity: Arabidopsis thaliana, Catharanthus roseus,Glycine max, Hordeum vulgare, Medicago sativa, Nicotiana tabacum, Oryza sativa, Pisum sativum, Salicornia sp., Silene vulgaris, Scenedesmus quadricauda (algae), Solanum tuberosum, Zea mays
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AS06 183 | Clonality: Polyclonal | Host: Rabbit | Reactivity: Brassica campestris, Nicotiana tabacum, Phaeodactylum tricornutum, Solanum lycopersicum, Zea mays
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Benefits of using this antibody
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AS07 260 | Clonality: Polyclonal | Host: Rabbit | Reactivity: [global antibody] for di- and monocots, conifers, ferns, mosses, green algae | Cellular [compartment marker] for plasma membrane
Benefits of using this antibody
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AS07 260-ALP | Clonality: Polyclonal | Host: Rabbit | Reactivity: [global antibody] for di- and monocots, conifers, ferns, mosses, green algae | Cellular [compartment marker] for plasma membrane
Benefits of using this antibody
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AS07 260B | Clonality: Polyclonal | Host: Rabbit | Reactivity: [global antibody] for di- and monocots, conifers, ferns, mosses, green algae | Cellular [compartment marker] for plasma membrane
Benefits of using this antibody
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AS07 260-DL488 | Clonality: Polyclonal | Host: Rabbit | Reactivity: [global antibody] for di- and monocots, conifers, ferns, mosses, green algae | Cellular [compartment marker] for plasma membrane
Benefits of using this antibody
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AS07 260-DL594 | Clonality: Polyclonal | Host: Rabbit | Reactivity: [global antibody] for di- and monocots, conifers, ferns, mosses, green algae | Cellular [compartment marker] for plasma membrane
Benefits of using this antibody
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AS07 260-DL650 | Clonality: Polyclonal | Host: Rabbit | Reactivity: [global antibody] for di- and monocots, conifers, ferns, mosses, green algae | Cellular [compartment marker] for plasma membrane
Benefits of using this antibody
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AS07 260-HRP | Clonality: Polyclonal | Host: Rabbit | Reactivity: [global antibody] for di- and monocots, conifers, ferns, mosses, green algae | Cellular [compartment marker] for plasma membrane
Benefits of using this antibody
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AS10 710A | Clonality: Polyclonal | Host: Rabbit | Reactivity: A. thaliana, S. lycopersicum, V. faba, P. patens, S. europaea, Z. mays, Ch. reinhardtii | cellular [compartment marker] of nucleoplasm
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AS15 2855 | Clonality: Polyclonal | Host: Chicken | Reactivity: A. thaliana, C. reinhardtii, L. esculentum, T. aestivum | cellular [compartment marker] of nucleoplasm
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AS10 710 | Clonality: Polyclonal | Host: Rabbit | Reactivity: A. thaliana, B. cinerea, C. reinhardtii, H. vulgare, S. lycopersicum, V. faba, P. tricornutum, P. patens, S. europaea, Z. mays | cellular [compartment marker] of nucleoplasm
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AS10 710-ALP | Clonality: Polyclonal | Host: Rabbit | Reactivity: A. thaliana, S. lycopersicum, V. faba, P. patens, S. europaea, Z. mays, Ch. reinhardtii | cellular [compartment marker] of nucleoplasm
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AS10 710B | Clonality: Polyclonal | Host: Rabbit | Reactivity: A. thaliana, S. lycopersicum, V. faba, P. patens, S. europaea, Z. mays, Ch. reinhardtii | cellular [compartment marker] of nucleoplasm
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AS10 710-HRP | Clonality: Polyclonal | Host: Rabbit | Reactivity: A. thaliana, S. lycopersicum, V. faba, P. patens, S. europaea, Z. mays, Ch. reinhardtii | cellular [compartment marker] of nucleoplasm
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AS10 683-25 | Clonality: monoclonal | Host: Mouse | Reactivity:Barnyard Grass (E. crus-galli), B. vulgaris, G. hirsutum, H. vulgare, O. sativa, Sorghum sp., V. radiata, S. cerevisiae, D. melanogaster
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AS10 683 | Clonality: monoclonal | Host: Mouse | Reactivity:Barnyard Grass (E. crus-galli), B. vulgaris, G. hirsutum, H. vulgare, Sorghum sp., V. radiata, S. cerevisiae, D. melanogaster
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From the laboratory of Paul Knox, Phd, University of Leeds, United Kingdom
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From the laboratory of Paul Knox, Phd, University of Leeds, United Kingdom
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From the laboratory of Paul Knox, Phd, University of Leeds, United Kingdom
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From the laboratory of Paul Knox, Phd, University of Leeds, United Kingdom