Literature DB >> 23053198

Genome-wide identification of rice class I metallothionein gene: tissue expression patterns and induction in response to heavy metal stress.

Neelam Gautam1, Pankaj Kumar Verma, Shikha Verma, Rudra Deo Tripathi, Prabodh Kumar Trivedi, Bijan Adhikari, Debasis Chakrabarty.   

Abstract

Metallothioneins (MTs) are members of a family of cysteine-rich low molecular weight polypeptides which play an important role in heavy metal detoxification and homeostasis of intracellular metal ions in plant. Though MT genes from some selected plants have been characterized with respect to their protein sequences, kinetic properties and tissue-specific localization, no detailed study has been carried out in rice. Here, we present genome-wide identification, structural and expression analyses of rice MT gene family. Our analysis suggests presence of 11 class I MT genes in rice genome (Release 7 of the MSU Rice Genome Annotation Project) which are differentially expressed during growth and development, in various tissues and during biotic and abiotic stresses. Our analyses suggest that class I MT proteins in rice differ in tissue localization as well as in heavy metal coordination chemistry. We also suggest that some MTs have a predominant role in detoxification of As (V) in arsenic-tolerant rice cultivars. Our analysis suggests that apart from transcriptional regulation, post-transcriptional alternative splicing in some members of this family takes place during growth and development, in various tissues and during biotic and abiotic stresses.

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Year:  2012        PMID: 23053198     DOI: 10.1007/s10142-012-0297-9

Source DB:  PubMed          Journal:  Funct Integr Genomics        ISSN: 1438-793X            Impact factor:   3.410


  50 in total

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4.  Characterization of a rice class II metallothionein gene: tissue expression patterns and induction in response to abiotic factors.

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Journal:  J Plant Physiol       Date:  2005-06       Impact factor: 3.549

5.  Regulation of metallothionein gene expression by oxidative stress and metal ions.

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Journal:  Biochem Pharmacol       Date:  2000-01-01       Impact factor: 5.858

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2.  Identification of the metallothionein gene family from cucumber and functional characterization of CsMT4 in Escherichia coli under salinity and osmotic stress.

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Review 3.  Molecular insight of arsenic-induced carcinogenesis and its prevention.

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4.  Heavy metals induce oxidative stress and genome-wide modulation in transcriptome of rice root.

Authors:  Sonali Dubey; Manju Shri; Prashant Misra; Deepika Lakhwani; Sumit Kumar Bag; Mehar H Asif; Prabodh Kumar Trivedi; Rudro Deo Tripathi; Debasis Chakrabarty
Journal:  Funct Integr Genomics       Date:  2014-02-20       Impact factor: 3.410

5.  Expression of Ceratophyllum demersum phytochelatin synthase, CdPCS1, in Escherichia coli and Arabidopsis enhances heavy metal(loid)s accumulation.

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Review 6.  Jacks of metal/metalloid chelation trade in plants-an overview.

Authors:  Naser A Anjum; Mirza Hasanuzzaman; Mohammad A Hossain; Palaniswamy Thangavel; Aryadeep Roychoudhury; Sarvajeet S Gill; Miguel A Merlos Rodrigo; Vojtěch Adam; Masayuki Fujita; Rene Kizek; Armando C Duarte; Eduarda Pereira; Iqbal Ahmad
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7.  Genome-wide transcriptome analysis reveals that cadmium stress signaling controls the expression of genes in drought stress signal pathways in rice.

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8.  Overexpression of Rice Glutaredoxin OsGrx_C7 and OsGrx_C2.1 Reduces Intracellular Arsenic Accumulation and Increases Tolerance in Arabidopsis thaliana.

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9.  Rice Improvement Through Genome-Based Functional Analysis and Molecular Breeding in India.

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10.  Modulation of Plant and Fungal Gene Expression Upon Cd Exposure and Symbiosis in Ericoid Mycorrhizal Vaccinium myrtillus.

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