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Development of Monoclonal Antibodies for Identifying Plant-Parasitic Nematodes

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19 lug 2025
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Alving, C. R. 2006. Antibodies to lipids and liposomes: immunology and safety. Journal of Liposome Research 16:157–166. AlvingC. R. 2006 Antibodies to lipids and liposomes: immunology and safety Journal of Liposome Research 16 157 166 Search in Google Scholar

Arie, T., Hayashi, Y., Nagatani, A., Furuya, M., and Yamaguchi, I. 1991. Production and partial characterization of monoclonal antibodies against Fusarium oxysporum 860926a. Japanese Journal of Phytopathology 57:696–701. ArieT. HayashiY. NagataniA. FuruyaM. YamaguchiI. 1991 Production and partial characterization of monoclonal antibodies against Fusarium oxysporum 860926a Japanese Journal of Phytopathology 57 696 701 Search in Google Scholar

Arie, T., Hayashi, Y., Yoneyama, K., Nagatani, A., Furuya, M., and Yamaguchi, I. 1995. Detection of Fusarium spp. in plants with monoclonal antibody. Japanese Journal of Phytopathology 61:311–317. ArieT. HayashiY. YoneyamaK. NagataniA. FuruyaM. YamaguchiI. 1995 Detection of Fusarium spp. in plants with monoclonal antibody Japanese Journal of Phytopathology 61 311 317 Search in Google Scholar

Bird, A. F. 1964. Serological studies on the plant parasitic nematode, Meloidogyne javanica. Experimental Parasitology 15:350–360. BirdA. F. 1964 Serological studies on the plant parasitic nematode, Meloidogyne javanica Experimental Parasitology 15 350 360 Search in Google Scholar

Bogale, M., Baniya, A., and DiGennaro, P. 2020. Nematode identification techniques and recent advances. Plants 9:1260. BogaleM. BaniyaA. DiGennaroP. 2020 Nematode identification techniques and recent advances Plants 9 1260 Search in Google Scholar

Decraemer, W., and Hunt, D. J. 2006. Structure and classification. Pp. 3–32 in R.N. Perry and M. Moens, eds. Plant Nematology. Wallingford UK: CABI. DecraemerW. HuntD. J. 2006 Structure and classification 3 32 in PerryR.N. MoensM. eds. Plant Nematology Wallingford UK CABI Search in Google Scholar

Gong, F., Wei, H. X., Li, Q., Liu, L., and Li, B. 2021. Evaluation and comparison of serological methods for COVID-19 diagnosis. Frontiers in Molecular Biosciences 8:682405. GongF. WeiH. X. LiQ. LiuL. LiB. 2021 Evaluation and comparison of serological methods for COVID-19 diagnosis Frontiers in Molecular Biosciences 8 682405 Search in Google Scholar

Haji-Ghassemi, O., Blackler, R. J., Martin Young, N., and Evans, S. V. 2015. Antibody recognition of carbohydrate epitopes. Glycobiology 25:920–952. Haji-GhassemiO. BlacklerR. J. Martin YoungN. EvansS. V. 2015 Antibody recognition of carbohydrate epitopes Glycobiology 25 920 952 Search in Google Scholar

Hodda, M. 2022. Phylum Nematoda: trends in species descriptions, the documentation of diversity, systematics, and the species concept. Zootaxa 5114:290–317. HoddaM. 2022 Phylum Nematoda: trends in species descriptions, the documentation of diversity, systematics, and the species concept Zootaxa 5114 290 317 Search in Google Scholar

Jones, J. T., Haegeman, A., Danchin, E. G. J., Gaur, H. S., Helder, J., Jones, M. G. K., Kikuchi, T., Manzanilla-López, R., Palomares-Rius, J. E., Wesemael, W. M. L., and Perry, R. N. 2013. Top 10 plant-parasitic nematodes in molecular plant pathology. Molecular Plant Pathology 14:946–961. JonesJ. T. HaegemanA. DanchinE. G. J. GaurH. S. HelderJ. JonesM. G. K. KikuchiT. Manzanilla-LópezR. Palomares-RiusJ. E. WesemaelW. M. L. PerryR. N. 2013 Top 10 plant-parasitic nematodes in molecular plant pathology Molecular Plant Pathology 14 946 961 Search in Google Scholar

Köhler, G., and Milstein, C. 1975. Continuous cultures of fused cells secreting antibody of predefined specificity. Nature 256:495–497. KöhlerG. MilsteinC. 1975 Continuous cultures of fused cells secreting antibody of predefined specificity Nature 256 495 497 Search in Google Scholar

Montarry, J., Mimee, B., Danchin, E. G., Koutsovoulos, G. D., Ste-Croix, D. T., and Grenier, E. 2021. Recent advances in population genomics of plant-parasitic nematodes. Phytopathology 111:40–48. MontarryJ. MimeeB. DanchinE. G. KoutsovoulosG. D. Ste-CroixD. T. GrenierE. 2021 Recent advances in population genomics of plant-parasitic nematodes Phytopathology 111 40 48 Search in Google Scholar

Niblack, T. L., Arelli, P. R., Noel, G. R., Opperman, C. H., Orf, J. H., Schmitt, D. P., Shannon, J. G., and Tylka, G. 2002. A revised classification scheme for genetically diverse populations of Heterodera glycines. Journal of Nematology 34:279. NiblackT. L. ArelliP. R. NoelG. R. OppermanC. H. OrfJ. H. SchmittD. P. ShannonJ. G. TylkaG. 2002 A revised classification scheme for genetically diverse populations of Heterodera glycines Journal of Nematology 34 279 Search in Google Scholar

Nicol, J., Turner, S., Coyne, D., den Nijs, L., Hockland, S., Maafi, Z. T., Jones, J., Gheysen, G., and Fenoll, C. 2011. Genomics and molecular genetics of plant-nematode interactions. Pp. 21–43 in J. Jones, G. Gheysen, and C. Fenoll, eds. Current nematode threats to world agriculture. Springer. NicolJ. TurnerS. CoyneD. den NijsL. HocklandS. MaafiZ. T. JonesJ. GheysenG. FenollC. 2011 Genomics and molecular genetics of plant-nematode interactions 21 43 in JonesJ. GheysenG. FenollC. eds. Current nematode threats to world agriculture Springer Search in Google Scholar

Ojima-Kato, T., Nagai, S., and Nakano, H. 2017. Ecobody technology: rapid monoclonal antibody screening method from single B cells using cell-free protein synthesis for antigen-binding fragment formation. Scientific Reports 7:13979. Ojima-KatoT. NagaiS. NakanoH. 2017 Ecobody technology: rapid monoclonal antibody screening method from single B cells using cell-free protein synthesis for antigen-binding fragment formation Scientific Reports 7 13979 Search in Google Scholar

Schots, A., Hermsen, T., Schouten, S., Gommers, F. J., and Egberts, E. 1989. Serological differentiation of the potato-cyst nematodes Globodera pallida and G. rostochiensis: II. Preparation and characterization of species specific monoclonal antibodies. Hybridoma 8:401–413. SchotsA. HermsenT. SchoutenS. GommersF. J. EgbertsE. 1989 Serological differentiation of the potato-cyst nematodes Globodera pallida and G. rostochiensis: II. Preparation and characterization of species specific monoclonal antibodies Hybridoma 8 401 413 Search in Google Scholar

Shi, Z., Zhang, Q., Yan, H., Yang, Y., Wang, P., Zhang, Y., Deng, Z., Yu, M., Zhou, W., Wang, Q., Yang, X., Mo, X., Zhang, C., Huang, J., Dai, H., Sun, B., Zhao, Y., Zhang, L., Yang, Y. G., and Qiu, X. 2019. More than one antibody of individual B cells revealed by single-cell immune profiling. Cell Discovery 5:64. ShiZ. ZhangQ. YanH. YangY. WangP. ZhangY. DengZ. YuM. ZhouW. WangQ. YangX. MoX. ZhangC. HuangJ. DaiH. SunB. ZhaoY. ZhangL. YangY. G. QiuX. 2019 More than one antibody of individual B cells revealed by single-cell immune profiling Cell Discovery 5 64 Search in Google Scholar

Sturhan, D. 1971. Biological races. Plant Parasitic Nematodes 2:51–71. SturhanD. 1971 Biological races Plant Parasitic Nematodes 2 51 71 Search in Google Scholar

Thornton, C. R. 2008. Tracking fungi in soil with monoclonal antibodies. European Journal of Plant Pathology 121:347. ThorntonC. R. 2008 Tracking fungi in soil with monoclonal antibodies European Journal of Plant Pathology 121 347 Search in Google Scholar

Visan, I. 2018. Antibodies and metabolites. Nature Immunology 19:1148. VisanI. 2018 Antibodies and metabolites Nature Immunology 19 1148 Search in Google Scholar

Westphal, A., and Xing, L. 2006. Diseases of soybean; root knot nematodes. Botany Plant Pathology, Purdue University. WestphalA. XingL. 2006 Diseases of soybean; root knot nematodes Botany Plant Pathology, Purdue University Search in Google Scholar

Lingua:
Inglese
Frequenza di pubblicazione:
1 volte all'anno
Argomenti della rivista:
Scienze biologiche, Scienze della vita, altro