Cite

Bofill-De Ros, X., Yang, A., Gu, S. (2020). IsomiRs: Expanding the miRNA repression toolbox beyond the seed. Biochim. Biophys. Acta Gene Regul. Mech., 1863 (4), 194373. Search in Google Scholar

Bystrzejewska-Piotrowska, G., Asztemborska, M., Stęborowski, R., Polkowska-Motrenko, H., Danko, B., Ryniewicz, J. (2012). Application of neutron activation for investigation of Fe3O4 nanoparticles accumulation by plants. Nukleonika, 57 (3), 427–430. Search in Google Scholar

Cabrera, L., Gutierrez, S., Menendez, N., Morales, M., Herrasti, P. (2008). Magnetite nanoparticles: Electrochemical synthesis and characterization. Electrochim. Acta, 53 (8), 3436–3441. Search in Google Scholar

Cools, T. L., Struyfs, C., Cammue, B. P., Thevissen, K. (2017). Antifungal plant defensins: Increased insight in their mode of action as a basis for their use to combat fungal infections. Future Microbiol., 12 (5), 441–454. Search in Google Scholar

Fincheira, P., Tortella, G., Duran, N., Seabra, A. B., Rubilar, O. (2020). Current applications of nanotechnology to develop plant growth inducer agents as an innovation strategy. Crit. Rev. Biotechnol., 40 (1), 15–30. Search in Google Scholar

Frazier, T. P., Burklew, C. E., Zhang, B. (2014). Titanium dioxide nano-particles affect the growth and microRNA expression of tobacco (Nicotiana tabacum). Funct. Integr. Genomics, 14 (1), 75–83. Search in Google Scholar

Gehan, M. A., Greenham, K., Mockler, T. C., McClung, C. R. (2015). Transcriptional networks: Crops, clocks, and abiotic stress. Curr. Opin. Plant Biol., 24, 39–46. Search in Google Scholar

Kantar, M., Lucas, S. J., Budak, H. (2011). miRNA expression patterns of Triticum dicoccoides in response to shock drought stress. Planta, 233 (3), 471–484. Search in Google Scholar

Khraiwesh, B., Zhu, J.-K., Zhu, J. (2012). Role of miRNAs and siRNAs in biotic and abiotic stress responses of plants. Biochim. Biophys. Acta Gene Regul. Mech., 1819 (2), 137–148. Search in Google Scholar

Kokina, I., Mickeviča, I., Jahundoviča, I., Ogurcovs, A., Krasovska, M., Jermaļonoka, M., Mihailova, I., Tamanis, E., Gerbreders, V. (2017). Plant explants grown on medium supplemented with Fe3O4 nanoparticles have a significant increase in embryogenesis. J. Nanomater., 2017, 4587147. Search in Google Scholar

Kokina, I., Sļedevskis, Ç., Gerbreders, V., Grauda, D., Jermaļonoka, M., Valaine, K., Gavarāne, I., Pigiņka, I., Filipovičs, M., Rashal, I. (2012). Reaction of flax (Linum usitatissimum L.) calli culture to supplement of medium by carbon nanoparticles. Proc. Latvian Acad. Sci., Section B, 66 (4/5), 200–209. Search in Google Scholar

Konate, A., Wang, Y., He, X., Adeel, M., Zhang, P., Ma, Y., Ding, Y., Zhang, J., Yang, J., Kizito, S. (2018). Comparative effects of nano and bulk-Fe3O4 on the growth of cucumber (Cucumis sativus). Ecotoxicol. Environ. Safety, 165, 547–554. Search in Google Scholar

Kumar, A., Lorand, D. (2021). Robust Δ Δct estimate. Genomics, 113 (1), 420–427. Search in Google Scholar

Li, C., Zhang, B. (2016). MicroRNAs in control of plant development. J. Cellul. Physiol., 231 (2), 303–313. Search in Google Scholar

Ma, C., White, J. C., Zhao, J., Zhao, Q., Xing, B. (2018). Uptake of engineered nanoparticles by food crops: Characterization, mechanisms, and implications. Annu. Rev. Food Sci. Technol., 9, 129–153. Search in Google Scholar

Neutelings, G., Fénart, S., Lucau-Danila, A., Hawkins, S. (2012). Identification and characterization of miRNAs and their potential targets in flax. J. Plant Physiol., 169 (17), 1754–1766. Search in Google Scholar

Pinzón-Latorre, D., Deyholos, M. K. (2013). Characterization and transcript profiling of the pectin methylesterase (PME) and pectin methylesterase inhibitor (PMEI) gene families in flax (Linum usitatissimum). BMC Gen., 14 (1), 1–42. Search in Google Scholar

Plaksenkova, I., Jermaļonoka, M., Bankovska, L., Gavarāne, I., Gerbreders, V., Sledevskis, E., Sniíeris, J., Kokina, I. (2019). Effects of Fe3O4 nano-particle stress on the growth and development of rocket Eruca sativa. J. Nanomater., 2019, 2678247 Search in Google Scholar

Raiola, A., Lionetti, V., Elmaghraby, I., Immerzeel, P., Mellerowicz, E. J., Salvi, G., Cervone, F., Bellincampi, D. (2011). Pectin methylesterase is induced in Arabidopsis upon infection and is necessary for a successful colonization by necrotrophic pathogens. Mol. Plant Microbe Interact., 24 (4), 432–440. Search in Google Scholar

Rawat, M., Yadukrishnan, P., Kumar, N. (2018). Mechanisms of action of nanoparticles in living systems. In: Psankaj, Sharma, A. Microbial Bio-technology in Environmental Monitoring and Cleanup. IGI Global, Chapt. 14, 220–236. Search in Google Scholar

Singh, D. K., Mehra, S., Chatterjee, S., Purty, R. S. (2020). In silico identification and validation of miRNA and their DIR specific targets in Oryza sativa Indica under abiotic stress. Non-coding RNA Res., 5 (4), 167–177. Search in Google Scholar

Wang, X., Zhang, D., Cui, N., Yu, Y., Yu, G., Fan, H. (2018). Transcriptome and miRNA analyses of the response to Corynespora cassiicola in cucumber. Sci. Rep., 8, 7798. Search in Google Scholar

Xin, M., Wang, Y., Yao, Y., Xie, C., Peng, H., Ni, Z., Sun, Q. (2010). Diverse set of microRNAs are responsive to powdery mildew infection and heat stress in wheat (Triticum aestivum L.). BMC Plant Biol., 10 (123), PMC3095282. Search in Google Scholar

Xu, C., Kohler, T. A., Lenton, T. M., Svenning, J. C., Scheffer, M. (2020a). Future of the human climate niche. Proc. Natl. Acad. Sci., 117 (21), 11350–11355. Search in Google Scholar

Xu, Y., Wang, Y., Wang, X., Pei, S., Kong, Y., Hu, R., Zhou, G. (2020b). Transcription factors BLH2 and BLH4 regulate demethylesterification of homogalacturonan in seed mucilage. Plant Physiol., 183 (1), 96–111. Search in Google Scholar

Zahra, Z., Arshad, M., Rafique, R., Mahmood, A., Habib, A., Qazi, I. A., Khan, S. A. (2015). Metallic nanoparticle (TiO2 and Fe3O4) application modifies rhizosphere phosphorus availability and uptake by Lactuca sativa. J. Agricult. Food Chem., 63 (31), 6876–6882. Search in Google Scholar

Zhang, T., Zhao, Y.-L., Zhao, J.-H., Wang, S., Jin, Y., Chen, Z.-Q., Fang, Y.-Y., Hua, C.-L., Ding, S.-W., Guo, H.-S. (2016). Cotton plants export microRNAs to inhibit virulence gene expression in a fungal pathogen. Nature Plants, 2, 16153. Search in Google Scholar

Zogli, P., Libault, M. (2017). Plant response to biotic stress: Is there a common epigenetic response during plant-pathogenic and symbiotic interactions? Plant Sci., 263, 89–93. Search in Google Scholar

eISSN:
2255-890X
Language:
English
Publication timeframe:
6 times per year
Journal Subjects:
General Interest, Mathematics, General Mathematics