Literature DB >> 25576005

Overexpression of ShDHN, a dehydrin gene from Solanum habrochaites enhances tolerance to multiple abiotic stresses in tomato.

Hui Liu1, Chuying Yu2, Hanxia Li2, Bo Ouyang2, Taotao Wang2, Junhong Zhang2, Xin Wang2, Zhibiao Ye3.   

Abstract

Dehydrins (DHNs) play important roles in plant adaptation to abiotic stress. In this study, a cold-induced SK3-type DHN gene (ShDHN) isolated from wild tomato species Solanum habrochaites was characterized for its function in abiotic stress tolerance. ShDHN was constitutively expressed in root, leaf, stem, flower and fruit. ShDHN was continuously up-regulated during cold stress and showed higher expression level in the cold-tolerant S. habrochaites than in the susceptible S. lycopersicum. Moreover, ShDHN expression was also regulated by drought, salt, osmotic stress, and exogenous signaling molecules. Overexpression of ShDHN in cultivated tomato increased tolerance to cold and drought stresses and improved seedling growth under salt and osmotic stresses. Compared with the wild-type, the transgenic plants accumulated more proline, maintained higher enzymatic activities of superoxide dismutase and catalase, and suffered less membrane damage under cold and drought stresses. Moreover, the transgenic plants accumulated lower levels of H2O2 and O2(-) under cold stress, and had higher relative water contents and lower water loss rates under dehydration conditions. Furthermore, overexpression of ShDHN in tomato led to the up- or down-regulated expression of several genes involved in ROS scavenging and JA signaling pathway, including SOD1, GST, POD, LOX, PR1 and PR2. Taken together, these results indicate that ShDHN has pleiotropic effects on improving plant adaptation to abiotic stresses and that it possesses potential usefulness in genetic improvement of stress tolerance in tomato.
Copyright © 2014 Elsevier Ireland Ltd. All rights reserved.

Entities:  

Keywords:  Abiotic stress; Cold tolerance; Dehydrin; Late embryogenesis abundant protein; Solanum; Tomato

Mesh:

Substances:

Year:  2014        PMID: 25576005     DOI: 10.1016/j.plantsci.2014.12.006

Source DB:  PubMed          Journal:  Plant Sci        ISSN: 0168-9452            Impact factor:   4.729


  38 in total

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4.  Silencing of dehydrin CaDHN1 diminishes tolerance to multiple abiotic stresses in Capsicum annuum L.

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Review 5.  Drought and heat stress-related proteins: an update about their functional relevance in imparting stress tolerance in agricultural crops.

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Review 6.  Involvement of dehydrin proteins in mitigating the negative effects of drought stress in plants.

Authors:  Riyazuddin Riyazuddin; Nisha Nisha; Kalpita Singh; Radhika Verma; Ravi Gupta
Journal:  Plant Cell Rep       Date:  2021-05-31       Impact factor: 4.570

7.  Overexpression of Ks-type dehydrins gene OeSRC1 from Olea europaea increases salt and drought tolerance in tobacco plants.

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Journal:  Mol Biol Rep       Date:  2019-08-05       Impact factor: 2.316

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Review 9.  Engineering food crops to grow in harsh environments.

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10.  PtrA/NINV, an alkaline/neutral invertase gene of Poncirus trifoliata, confers enhanced tolerance to multiple abiotic stresses by modulating ROS levels and maintaining photosynthetic efficiency.

Authors:  Bachar Dahro; Fei Wang; Ting Peng; Ji-Hong Liu
Journal:  BMC Plant Biol       Date:  2016-03-29       Impact factor: 4.215

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