Literature DB >> 24760325

Inactivation of two newly identified tobacco heavy metal ATPases leads to reduced Zn and Cd accumulation in shoots and reduced pollen germination.

Victor Hermand1, Emilie Julio, François Dorlhac de Borne, Tracy Punshon, Felipe K Ricachenevsky, Arnaud Bellec, Françoise Gosti, Pierre Berthomieu.   

Abstract

Cadmium (Cd) is a non-essential heavy metal, which is classified as a "known human carcinogen" by the International Agency for Research on Cancer (IARC). Understanding the mechanisms controlling Cd distribution in planta is essential to develop phytoremediation approaches as well as for food safety. Unlike most other plants, tobacco (Nicotiana tabacum) plants translocate most of the Cd taken up from the soil, out of the roots and into the shoots, leading to high Cd accumulation in tobacco shoots. Two orthologs of the Arabidopsis thaliana HMA2 and HMA4 Zn and Cd ATPases that are responsible for zinc (Zn) and Cd translocation from roots to shoots were identified in tobacco and sequenced. These genes, named NtHMAα and NtHMAβ, were more highly expressed in roots than in shoots. NtHMAα was expressed in the vascular tissues of both roots and leaves as well as in anthers. No visual difference was observed between wild-type plants and plants in which the NtHMAα and NtHMAβ genes were either mutated or silenced. These mutants showed reduced Zn and Cd accumulation in shoots as well as increased Cd tolerance. When both NtHMA genes were silenced, plant development was altered and pollen germination was severely impaired due to Zn deficiency. Interestingly, seeds from these lines also showed decreased Zn concentration but increased iron (Fe) concentration.

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Year:  2014        PMID: 24760325      PMCID: PMC4431542          DOI: 10.1039/c4mt00071d

Source DB:  PubMed          Journal:  Metallomics        ISSN: 1756-5901            Impact factor:   4.526


  44 in total

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2.  Housekeeping gene selection for real-time RT-PCR normalization in potato during biotic and abiotic stress.

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3.  Functional analysis of the heavy metal binding domains of the Zn/Cd-transporting ATPase, HMA2, in Arabidopsis thaliana.

Authors:  Chong Kum Edwin Wong; Renée S Jarvis; Sarah M Sherson; Christopher S Cobbett
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4.  Functional characterization of NRAMP3 and NRAMP4 from the metal hyperaccumulator Thlaspi caerulescens.

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5.  Synthesis of a bifunctional metallothionein/beta-glucuronidase fusion protein in transgenic tobacco plants as a means of reducing leaf cadmium levels.

Authors:  T Elmayan; M Tepfer
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6.  Tissue-specific cadmium accumulation and its effects on nitrogen metabolism in tobacco (Nicotiana tabaccum, Bureley v. Fb9).

Authors:  Houda Maaroufi Dguimi; Mohamed Debouba; Mohamed Habib Ghorbel; Houda Gouia
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Review 8.  Mechanisms to cope with arsenic or cadmium excess in plants.

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10.  Genomic comparison of P-type ATPase ion pumps in Arabidopsis and rice.

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2.  Contribution of NtZIP1-Like to the Regulation of Zn Homeostasis.

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Review 3.  Tobacco as an efficient metal accumulator.

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4.  Zn/Cd status-dependent accumulation of Zn and Cd in root parts in tobacco is accompanied by specific expression of ZIP genes.

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5.  Determination the Usefulness of AhHMA4p1::AhHMA4 Expression in Biofortification Strategies.

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6.  Suppression of NtZIP4A/B Changes Zn and Cd Root-to-Shoot Translocation in a Zn/Cd Status-Dependent Manner.

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7.  Highly Efficient and Comprehensive Identification of Ethyl Methanesulfonate-Induced Mutations in Nicotiana tabacum L. by Whole-Genome and Whole-Exome Sequencing.

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8.  Engineering high Zn in tomato shoots through expression of AtHMA4 involves tissue-specific modification of endogenous genes.

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9.  Functional Analysis of NtZIP4B and Zn Status-Dependent Expression Pattern of Tobacco ZIP Genes.

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10.  Transcriptional Regulation of Genes Involved in Zinc Uptake, Sequestration and Redistribution Following Foliar Zinc Application to Medicago sativa.

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  10 in total

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