Cargando…

Efficacy of a Plant-Microbe System: Pisum sativum (L.) Cadmium-Tolerant Mutant and Rhizobium leguminosarum Strains, Expressing Pea Metallothionein Genes PsMT1 and PsMT2, for Cadmium Phytoremediation

Two transgenic strains of Rhizobium leguminosarum bv. viciae, 3841-PsMT1 and 3841-PsMT2, were obtained. These strains contain the genetic constructions nifH-PsMT1 and nifH-PsMT2 coding for two pea (Pisum sativum L.) metallothionein genes, PsMT1 and PsMT2, fused with the promoter region of the nifH g...

Descripción completa

Detalles Bibliográficos
Autores principales: Tsyganov, Viktor E., Tsyganova, Anna V., Gorshkov, Artemii P., Seliverstova, Elena V., Kim, Viktoria E., Chizhevskaya, Elena P., Belimov, Andrey A., Serova, Tatiana A., Ivanova, Kira A., Kulaeva, Olga A., Kusakin, Pyotr G., Kitaeva, Anna B., Tikhonovich, Igor A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7000653/
https://www.ncbi.nlm.nih.gov/pubmed/32063892
http://dx.doi.org/10.3389/fmicb.2020.00015
_version_ 1783494078962335744
author Tsyganov, Viktor E.
Tsyganova, Anna V.
Gorshkov, Artemii P.
Seliverstova, Elena V.
Kim, Viktoria E.
Chizhevskaya, Elena P.
Belimov, Andrey A.
Serova, Tatiana A.
Ivanova, Kira A.
Kulaeva, Olga A.
Kusakin, Pyotr G.
Kitaeva, Anna B.
Tikhonovich, Igor A.
author_facet Tsyganov, Viktor E.
Tsyganova, Anna V.
Gorshkov, Artemii P.
Seliverstova, Elena V.
Kim, Viktoria E.
Chizhevskaya, Elena P.
Belimov, Andrey A.
Serova, Tatiana A.
Ivanova, Kira A.
Kulaeva, Olga A.
Kusakin, Pyotr G.
Kitaeva, Anna B.
Tikhonovich, Igor A.
author_sort Tsyganov, Viktor E.
collection PubMed
description Two transgenic strains of Rhizobium leguminosarum bv. viciae, 3841-PsMT1 and 3841-PsMT2, were obtained. These strains contain the genetic constructions nifH-PsMT1 and nifH-PsMT2 coding for two pea (Pisum sativum L.) metallothionein genes, PsMT1 and PsMT2, fused with the promoter region of the nifH gene. The ability of both transgenic strains to form nodules on roots of the pea wild-type SGE and the mutant SGECd(t), which is characterized by increased tolerance to and accumulation of cadmium (Cd) in plants, was analyzed. Without Cd treatment, the wild type and mutant SGECd(t) inoculated with R. leguminosarum strains 3841, 3841-PsMT1, or 3841-PsMT2 were similar histologically and in their ultrastructural organization of nodules. Nodules of wild-type SGE inoculated with strain 3841 and exposed to 0.5 μM CdCl(2) were characterized by an enlarged senescence zone. It was in stark contrast to Cd-treated nodules of the mutant SGECd(t) that maintained their proper organization. Cadmium treatment of either wild-type SGE or mutant SGECd(t) did not cause significant alterations in histological organization of nodules formed by strains 3841-PsMT1 and 3841-PsMT2. Although some abnormalities were observed at the ultrastructural level, they were less pronounced in the nodules of strain 3841-PsMT1 than in those formed by 3841-PsMT2. Both transgenic strains also differed in their effects on pea plant growth and the Cd and nutrient contents in shoots. In our opinion, combination of Cd-tolerant mutant SGECd(t) and the strains 3841-PsMT1 or 3841-PsMT2 may be used as an original model for study of Cd tolerance mechanisms in legume-rhizobial symbiosis and possibilities for its application in phytoremediation or phytostabilization technologies.
format Online
Article
Text
id pubmed-7000653
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-70006532020-02-14 Efficacy of a Plant-Microbe System: Pisum sativum (L.) Cadmium-Tolerant Mutant and Rhizobium leguminosarum Strains, Expressing Pea Metallothionein Genes PsMT1 and PsMT2, for Cadmium Phytoremediation Tsyganov, Viktor E. Tsyganova, Anna V. Gorshkov, Artemii P. Seliverstova, Elena V. Kim, Viktoria E. Chizhevskaya, Elena P. Belimov, Andrey A. Serova, Tatiana A. Ivanova, Kira A. Kulaeva, Olga A. Kusakin, Pyotr G. Kitaeva, Anna B. Tikhonovich, Igor A. Front Microbiol Microbiology Two transgenic strains of Rhizobium leguminosarum bv. viciae, 3841-PsMT1 and 3841-PsMT2, were obtained. These strains contain the genetic constructions nifH-PsMT1 and nifH-PsMT2 coding for two pea (Pisum sativum L.) metallothionein genes, PsMT1 and PsMT2, fused with the promoter region of the nifH gene. The ability of both transgenic strains to form nodules on roots of the pea wild-type SGE and the mutant SGECd(t), which is characterized by increased tolerance to and accumulation of cadmium (Cd) in plants, was analyzed. Without Cd treatment, the wild type and mutant SGECd(t) inoculated with R. leguminosarum strains 3841, 3841-PsMT1, or 3841-PsMT2 were similar histologically and in their ultrastructural organization of nodules. Nodules of wild-type SGE inoculated with strain 3841 and exposed to 0.5 μM CdCl(2) were characterized by an enlarged senescence zone. It was in stark contrast to Cd-treated nodules of the mutant SGECd(t) that maintained their proper organization. Cadmium treatment of either wild-type SGE or mutant SGECd(t) did not cause significant alterations in histological organization of nodules formed by strains 3841-PsMT1 and 3841-PsMT2. Although some abnormalities were observed at the ultrastructural level, they were less pronounced in the nodules of strain 3841-PsMT1 than in those formed by 3841-PsMT2. Both transgenic strains also differed in their effects on pea plant growth and the Cd and nutrient contents in shoots. In our opinion, combination of Cd-tolerant mutant SGECd(t) and the strains 3841-PsMT1 or 3841-PsMT2 may be used as an original model for study of Cd tolerance mechanisms in legume-rhizobial symbiosis and possibilities for its application in phytoremediation or phytostabilization technologies. Frontiers Media S.A. 2020-01-29 /pmc/articles/PMC7000653/ /pubmed/32063892 http://dx.doi.org/10.3389/fmicb.2020.00015 Text en Copyright © 2020 Tsyganov, Tsyganova, Gorshkov, Seliverstova, Kim, Chizhevskaya, Belimov, Serova, Ivanova, Kulaeva, Kusakin, Kitaeva and Tikhonovich. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Tsyganov, Viktor E.
Tsyganova, Anna V.
Gorshkov, Artemii P.
Seliverstova, Elena V.
Kim, Viktoria E.
Chizhevskaya, Elena P.
Belimov, Andrey A.
Serova, Tatiana A.
Ivanova, Kira A.
Kulaeva, Olga A.
Kusakin, Pyotr G.
Kitaeva, Anna B.
Tikhonovich, Igor A.
Efficacy of a Plant-Microbe System: Pisum sativum (L.) Cadmium-Tolerant Mutant and Rhizobium leguminosarum Strains, Expressing Pea Metallothionein Genes PsMT1 and PsMT2, for Cadmium Phytoremediation
title Efficacy of a Plant-Microbe System: Pisum sativum (L.) Cadmium-Tolerant Mutant and Rhizobium leguminosarum Strains, Expressing Pea Metallothionein Genes PsMT1 and PsMT2, for Cadmium Phytoremediation
title_full Efficacy of a Plant-Microbe System: Pisum sativum (L.) Cadmium-Tolerant Mutant and Rhizobium leguminosarum Strains, Expressing Pea Metallothionein Genes PsMT1 and PsMT2, for Cadmium Phytoremediation
title_fullStr Efficacy of a Plant-Microbe System: Pisum sativum (L.) Cadmium-Tolerant Mutant and Rhizobium leguminosarum Strains, Expressing Pea Metallothionein Genes PsMT1 and PsMT2, for Cadmium Phytoremediation
title_full_unstemmed Efficacy of a Plant-Microbe System: Pisum sativum (L.) Cadmium-Tolerant Mutant and Rhizobium leguminosarum Strains, Expressing Pea Metallothionein Genes PsMT1 and PsMT2, for Cadmium Phytoremediation
title_short Efficacy of a Plant-Microbe System: Pisum sativum (L.) Cadmium-Tolerant Mutant and Rhizobium leguminosarum Strains, Expressing Pea Metallothionein Genes PsMT1 and PsMT2, for Cadmium Phytoremediation
title_sort efficacy of a plant-microbe system: pisum sativum (l.) cadmium-tolerant mutant and rhizobium leguminosarum strains, expressing pea metallothionein genes psmt1 and psmt2, for cadmium phytoremediation
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7000653/
https://www.ncbi.nlm.nih.gov/pubmed/32063892
http://dx.doi.org/10.3389/fmicb.2020.00015
work_keys_str_mv AT tsyganovviktore efficacyofaplantmicrobesystempisumsativumlcadmiumtolerantmutantandrhizobiumleguminosarumstrainsexpressingpeametallothioneingenespsmt1andpsmt2forcadmiumphytoremediation
AT tsyganovaannav efficacyofaplantmicrobesystempisumsativumlcadmiumtolerantmutantandrhizobiumleguminosarumstrainsexpressingpeametallothioneingenespsmt1andpsmt2forcadmiumphytoremediation
AT gorshkovartemiip efficacyofaplantmicrobesystempisumsativumlcadmiumtolerantmutantandrhizobiumleguminosarumstrainsexpressingpeametallothioneingenespsmt1andpsmt2forcadmiumphytoremediation
AT seliverstovaelenav efficacyofaplantmicrobesystempisumsativumlcadmiumtolerantmutantandrhizobiumleguminosarumstrainsexpressingpeametallothioneingenespsmt1andpsmt2forcadmiumphytoremediation
AT kimviktoriae efficacyofaplantmicrobesystempisumsativumlcadmiumtolerantmutantandrhizobiumleguminosarumstrainsexpressingpeametallothioneingenespsmt1andpsmt2forcadmiumphytoremediation
AT chizhevskayaelenap efficacyofaplantmicrobesystempisumsativumlcadmiumtolerantmutantandrhizobiumleguminosarumstrainsexpressingpeametallothioneingenespsmt1andpsmt2forcadmiumphytoremediation
AT belimovandreya efficacyofaplantmicrobesystempisumsativumlcadmiumtolerantmutantandrhizobiumleguminosarumstrainsexpressingpeametallothioneingenespsmt1andpsmt2forcadmiumphytoremediation
AT serovatatianaa efficacyofaplantmicrobesystempisumsativumlcadmiumtolerantmutantandrhizobiumleguminosarumstrainsexpressingpeametallothioneingenespsmt1andpsmt2forcadmiumphytoremediation
AT ivanovakiraa efficacyofaplantmicrobesystempisumsativumlcadmiumtolerantmutantandrhizobiumleguminosarumstrainsexpressingpeametallothioneingenespsmt1andpsmt2forcadmiumphytoremediation
AT kulaevaolgaa efficacyofaplantmicrobesystempisumsativumlcadmiumtolerantmutantandrhizobiumleguminosarumstrainsexpressingpeametallothioneingenespsmt1andpsmt2forcadmiumphytoremediation
AT kusakinpyotrg efficacyofaplantmicrobesystempisumsativumlcadmiumtolerantmutantandrhizobiumleguminosarumstrainsexpressingpeametallothioneingenespsmt1andpsmt2forcadmiumphytoremediation
AT kitaevaannab efficacyofaplantmicrobesystempisumsativumlcadmiumtolerantmutantandrhizobiumleguminosarumstrainsexpressingpeametallothioneingenespsmt1andpsmt2forcadmiumphytoremediation
AT tikhonovichigora efficacyofaplantmicrobesystempisumsativumlcadmiumtolerantmutantandrhizobiumleguminosarumstrainsexpressingpeametallothioneingenespsmt1andpsmt2forcadmiumphytoremediation