4
views
0
recommends
+1 Recommend
0 collections
    0
    shares
      • Record: found
      • Abstract: found
      • Article: found
      Is Open Access

      Exploring potential of copper and silver nano particles to establish efficient callogenesis and regeneration system for wheat ( Triticum aestivum L.)

      research-article

      Read this article at

      Bookmark
          There is no author summary for this article yet. Authors can add summaries to their articles on ScienceOpen to make them more accessible to a non-specialist audience.

          ABSTRACT

          In vitro recalcitrance of wheat to regeneration is the major bottleneck for its improvement through callus-based genetic transformation. Nanotechnology is one of the most dynamic areas of research, which can transform agriculture and biotechnology to ensure food security on sustainable basis. Present study was designed to investigate effects of CuSO 4, AgNO 3 and their nanoparticles on tissue culture responses of mature embryo culture of wheat genotypes (AS-2002 and Wafaq-2001). Initially, MS-based callus induction and regeneration medium were optimized for both genotypes using various concentrations of auxin (2,4-D, IAA) and cytokinins (BAP, kinetin). The genotypes differed for embryogenic callus induction and regeneration potential. Genotype AS-2002 yielded maximum embryogenic calli in response to 3.0 mg/l 2,4-D, whereas Wafaq-2001 offered the highest embryogenic calli against 3.5 mg/l 2,4-D supplemented in the induction medium. Genotype AS-2002 showed maximum regeneration (59.33%) in response to regeneration protocol comprising 0.5 mg/l IAA, 0.3 mg/l BAP and 1.0 mg/l Kin, while Wafaq-2001 performed best in response to 0.5 mg/l IAA, 0.3 mg/l BAP and 1.5 mg/l Kin with 55.33% regeneration efficiency. The same optimized basal induction and regeneration medium for both genotypes were further used to study effects of CuSO 4, AgNO 3 and their nano-particles employing independent experiments. The optimized induction medium fortified with various concentrations of CuSO 4 or CuNPs confirmed significant effects on frequency of embryogenic callus. Addition of either 0.020 mg/l or 0.025 mg/l CuSO 4, or 0.015 mg/l CNPs showed comparable results for embryogenic callus induction and were statistically at par with embryogenic callus induction of 74.00%, 75.67% and 76.83%, respectively. Significantly higher regeneration was achieved from MS-based regeneration medium supplemented with 0.015 mg/l or 0.020 mg/l CuNPs than standard 0.025 mg/l CuSO 4. In another study, the basal induction and regeneration medium were fortified with AgNO 3 or AgNPs ranging from 1 to 7 mg/l along with basal regeneration media devoid of AgNO 3 or AgNPs (control). The maximum embryogenic calli were witnessed from medium fortified with 3.0 mg/l or 4.0 mg/l AgNPs compared with control and rest of the treatments. The standardized regeneration medium fortified with 5.0 mg/l AgNO 3 or 3.0 mg/l AgNPs showed pronounced effect on regeneration of wheat genotypes and offered maximum regeneration compared with control. The individual and combined effect of Cu and Ag nanoparticles along with control (basal regeneration media of each genotype) was also tested. Surprisingly, co-application of metallic NPs showed a significant increase in embryogenic callus formation of genotypes. Induction medium supplemented with 0.015 mg/l CuNPs + 4.0 mg/l AgNPs or 0.020 mg/l CuNPs + 2.0 mg/l AgNPs showed splendid results compared to control and other combination of Cu and Ag nanoparticles. The maximum regeneration was achieved by co-application of 0.015 mg/l CuNP and 4.0 mg/l AgNPs with 21% increment of regeneration over control. It is revealed that CuNPs and AgNPs are potential candidate to augment somatic embryogenesis and regeneration of mature embryo explants of wheat.

          Abbreviations: 2,4-D (2,4-dichlorophenoxyacetic acid), BAP (6-benzylaminopurine), IAA (Indole-3-acetic acid), AgNPs (silver nanoparticles), CuNPs (copper nanoparticles)

          Related collections

          Most cited references76

          • Record: found
          • Abstract: found
          • Article: found
          Is Open Access

          Ror2 signaling regulates Golgi structure and transport through IFT20 for tumor invasiveness

          Signaling through the Ror2 receptor tyrosine kinase promotes invadopodia formation for tumor invasion. Here, we identify intraflagellar transport 20 (IFT20) as a new target of this signaling in tumors that lack primary cilia, and find that IFT20 mediates the ability of Ror2 signaling to induce the invasiveness of these tumors. We also find that IFT20 regulates the nucleation of Golgi-derived microtubules by affecting the GM130-AKAP450 complex, which promotes Golgi ribbon formation in achieving polarized secretion for cell migration and invasion. Furthermore, IFT20 promotes the efficiency of transport through the Golgi complex. These findings shed new insights into how Ror2 signaling promotes tumor invasiveness, and also advance the understanding of how Golgi structure and transport can be regulated.
            Bookmark
            • Record: found
            • Abstract: not found
            • Article: not found

            A Revised Medium for Rapid Growth and Bio Assays with Tobacco Tissue Cultures

              Bookmark
              • Record: found
              • Abstract: found
              • Article: found
              Is Open Access

              A review on plants extract mediated synthesis of silver nanoparticles for antimicrobial applications: A green expertise

              Graphical abstract
                Bookmark

                Author and article information

                Journal
                GM Crops Food
                GM Crops Food
                GM Crops & Food
                Taylor & Francis
                2164-5698
                2164-5701
                3 May 2021
                2021
                3 May 2021
                : 12
                : 1
                : 564-585
                Affiliations
                [a ]Institute of Cotton Research of Chinese Academy of Agricultural Sciences / Research Base, Zhengzhou University, State Key Laboratory of Cotton Biology / Key Laboratory for Cotton Genetic Improvement, MOA; , Anyang, Henan, China
                [b ]Department of Agronomy, PMAS Arid Agriculture University; , Rawalpindi, Pakistan
                [c ]Department of Botany, University of Gujrat; , Gujrat, Pakistan
                [d ]Department of agronomy, Farmland Irrigation Research Institute of CAAS; , Xinxiang, Henan, China
                [e ]Department of Plant Breeding and Genetics, Nuclear Institute for Agriculture and Biology; , Faisalabad, Pakistan
                [f ]Centre for Climate Research and Development, COMSATS University; , Islamabad, Pakistan
                [g ]Climate Resilience Department, Asian Disaster Preparedness Center (ADPC); , Islamabad, Pakistan
                Author notes
                CONTACT Wuwei Ye yew158@ 123456163.com State Key Laboratory of Cotton Biology/Key Laboratory for Cotton Genetic Improvement, Institute of Cotton Research of Chinese Academy of Agricultural Sciences/Research Base, Zhengzhou University; , Anyang, Henan 455000, China
                Article
                1917975
                10.1080/21645698.2021.1917975
                8820254
                33938377
                db2f2221-e3ca-4578-b3ca-166e5c79be1e
                © 2022 The Author(s). Published with license by Taylor & Francis Group, LLC.

                This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

                History
                Page count
                Figures: 6, Tables: 4, References: 76, Pages: 22
                Categories
                Research Article
                Research Paper

                nano particles,nanotechnology,callus,tissue culture,mature embryo,explant,cytokinins,auxins

                Comments

                Comment on this article

                scite_
                0
                0
                0
                0
                Smart Citations
                0
                0
                0
                0
                Citing PublicationsSupportingMentioningContrasting
                View Citations

                See how this article has been cited at scite.ai

                scite shows how a scientific paper has been cited by providing the context of the citation, a classification describing whether it supports, mentions, or contrasts the cited claim, and a label indicating in which section the citation was made.

                Similar content22

                Cited by7

                Most referenced authors10,358