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Amplification, sequencing and characterization of pectin methyl esterase inhibitor 51 gene in Tectona grandis L.f.

Tectona grandis L.f. (Teak), a very important source of incomparable timber, withstands a wide range of tropical deciduous conditions. We achieved partial amplification of pectin methylesterase inhibitor 51 (PMEI) gene in teak by E. pilularis cinnamoyl Co-A reductase (CCR) gene specific primer. The...

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Autores principales: Bano, Nuzhat, Ansari, Shamim Akhtar, Hashem, Abeer, Abd_Allah, Elsayed Fathi, Ansari, Mohammad Israil
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8459126/
https://www.ncbi.nlm.nih.gov/pubmed/34588855
http://dx.doi.org/10.1016/j.sjbs.2021.07.015
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author Bano, Nuzhat
Ansari, Shamim Akhtar
Hashem, Abeer
Abd_Allah, Elsayed Fathi
Ansari, Mohammad Israil
author_facet Bano, Nuzhat
Ansari, Shamim Akhtar
Hashem, Abeer
Abd_Allah, Elsayed Fathi
Ansari, Mohammad Israil
author_sort Bano, Nuzhat
collection PubMed
description Tectona grandis L.f. (Teak), a very important source of incomparable timber, withstands a wide range of tropical deciduous conditions. We achieved partial amplification of pectin methylesterase inhibitor 51 (PMEI) gene in teak by E. pilularis cinnamoyl Co-A reductase (CCR) gene specific primer. The amplified teak gene was of 750 bp, 79% identity and 97% query cover with PMEI of Sesamum indicum. The phylogenetic tree clustered the amplified gene with PMEI of database plant species, Erythranthe guttata and Sesamum indicum (87% bootstrap value). On conversion to amino acid sequence, the obtained protein comprised 237 amino acids. However, PMEI region spanned from 24 to 171 amino acids, 15.94 kDa molecular weight, 8.97 pI value and C(697)H(1117)N(199)O(211)S(9) molecular formula with four conserved cysteine residues as disulfide bridges. 25.9 % protein residues were hydrophilic, 42.7% hydrophobic and 31.2% neutral. Teak 3D PMEI protein structure corresponded well with Arabidopsis thaliana and Actinidia deliciosa PMEIs. The gene maintains integrity of pectin component of middle lamella of primary cell wall and confers tolerance against various kinds of stresses. Teak conferred with overexpression of PMEI may secure a wide adaptability as well as luxuriant timber productivity and quality in adverse/ fluctuating/ scarce climatic and environmental conditions of tropical forests.
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spelling pubmed-84591262021-09-28 Amplification, sequencing and characterization of pectin methyl esterase inhibitor 51 gene in Tectona grandis L.f. Bano, Nuzhat Ansari, Shamim Akhtar Hashem, Abeer Abd_Allah, Elsayed Fathi Ansari, Mohammad Israil Saudi J Biol Sci Original Article Tectona grandis L.f. (Teak), a very important source of incomparable timber, withstands a wide range of tropical deciduous conditions. We achieved partial amplification of pectin methylesterase inhibitor 51 (PMEI) gene in teak by E. pilularis cinnamoyl Co-A reductase (CCR) gene specific primer. The amplified teak gene was of 750 bp, 79% identity and 97% query cover with PMEI of Sesamum indicum. The phylogenetic tree clustered the amplified gene with PMEI of database plant species, Erythranthe guttata and Sesamum indicum (87% bootstrap value). On conversion to amino acid sequence, the obtained protein comprised 237 amino acids. However, PMEI region spanned from 24 to 171 amino acids, 15.94 kDa molecular weight, 8.97 pI value and C(697)H(1117)N(199)O(211)S(9) molecular formula with four conserved cysteine residues as disulfide bridges. 25.9 % protein residues were hydrophilic, 42.7% hydrophobic and 31.2% neutral. Teak 3D PMEI protein structure corresponded well with Arabidopsis thaliana and Actinidia deliciosa PMEIs. The gene maintains integrity of pectin component of middle lamella of primary cell wall and confers tolerance against various kinds of stresses. Teak conferred with overexpression of PMEI may secure a wide adaptability as well as luxuriant timber productivity and quality in adverse/ fluctuating/ scarce climatic and environmental conditions of tropical forests. Elsevier 2021-10 2021-07-10 /pmc/articles/PMC8459126/ /pubmed/34588855 http://dx.doi.org/10.1016/j.sjbs.2021.07.015 Text en © 2021 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Bano, Nuzhat
Ansari, Shamim Akhtar
Hashem, Abeer
Abd_Allah, Elsayed Fathi
Ansari, Mohammad Israil
Amplification, sequencing and characterization of pectin methyl esterase inhibitor 51 gene in Tectona grandis L.f.
title Amplification, sequencing and characterization of pectin methyl esterase inhibitor 51 gene in Tectona grandis L.f.
title_full Amplification, sequencing and characterization of pectin methyl esterase inhibitor 51 gene in Tectona grandis L.f.
title_fullStr Amplification, sequencing and characterization of pectin methyl esterase inhibitor 51 gene in Tectona grandis L.f.
title_full_unstemmed Amplification, sequencing and characterization of pectin methyl esterase inhibitor 51 gene in Tectona grandis L.f.
title_short Amplification, sequencing and characterization of pectin methyl esterase inhibitor 51 gene in Tectona grandis L.f.
title_sort amplification, sequencing and characterization of pectin methyl esterase inhibitor 51 gene in tectona grandis l.f.
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8459126/
https://www.ncbi.nlm.nih.gov/pubmed/34588855
http://dx.doi.org/10.1016/j.sjbs.2021.07.015
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