Literature DB >> 23157494

First cloning and characterization of two functional aquaporin genes from an arbuscular mycorrhizal fungus Glomus intraradices.

Tao Li1, Ya-Jun Hu1, Zhi-Peng Hao1, Hong Li1, You-Shan Wang2, Bao-Dong Chen1.   

Abstract

Arbuscular mycorrhizal (AM) symbiosis is known to stimulate plant drought tolerance. However, the molecular basis for the direct involvement of AM fungi (AMF) in plant water relations has not been established. Two full-length aquaporin genes, namely GintAQPF1 and GintAQPF2, were cloned by rapid amplification of cDNA 5'- and 3'-ends from an AMF, Glomus intraradices. Aquaporin localization, activities and water permeability were examined by heterologous expression in yeast. Gene expression during symbiosis was also analyzed by quantitative real-time polymerase chain reaction. GintAQPF1 was localized to the plasma membrane of yeast, whereas GintAQPF2 was localized to both plasma and intracellular membranes. Transformed yeast cells exhibited a significant decrease in cell volume on hyperosmotic shock and faster protoplast bursting on hypo-osmotic shock. Polyethylene glycol (PEG) stimulated, but glycerol inhibited, the aquaporin activities. Furthermore, the expression of the two genes in arbuscule-enriched cortical cells and extraradical mycelia of maize roots was also enhanced significantly under drought stress. GintAQPF1 and GintAQPF2 are the first two functional aquaporin genes from AMF reported to date. Our data strongly support potential water transport via AMF to host plants, which leads to a better understanding of the important role of AMF in plant drought tolerance.
© 2012 Research Centre for Eco-Environmental Sciences, CAS New Phytologist © 2012 New Phytologist Trust.

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Year:  2012        PMID: 23157494     DOI: 10.1111/nph.12011

Source DB:  PubMed          Journal:  New Phytol        ISSN: 0028-646X            Impact factor:   10.151


  37 in total

1.  Aquaporin genes GintAQPF1 and GintAQPF2 from Glomus intraradices contribute to plant drought tolerance.

Authors:  Tao Li; Ya-Jun Hu; Zhi-Peng Hao; Hong Li; Bao-Dong Chen
Journal:  Plant Signal Behav       Date:  2013-02-22

Review 2.  Arbuscular mycorrhiza effects on plant performance under osmotic stress.

Authors:  Christian Santander; Ricardo Aroca; Juan Manuel Ruiz-Lozano; Jorge Olave; Paula Cartes; Fernando Borie; Pablo Cornejo
Journal:  Mycorrhiza       Date:  2017-06-25       Impact factor: 3.387

3.  Arbuscular mycorrhizal symbiosis-mediated tomato tolerance to drought.

Authors:  Walter Chitarra; Biancaelena Maserti; Giorgio Gambino; Emilio Guerrieri; Raffaella Balestrini
Journal:  Plant Signal Behav       Date:  2016-07-02

4.  Arbuscular mycorrhizal fungal community differences among European long-term observatories.

Authors:  M-L Bouffaud; C Bragalini; A Berruti; M Peyret-Guzzon; S Voyron; H Stockinger; D van Tuinen; E Lumini; D Wipf; P Plassart; P Lemanceau; V Bianciotto; D Redecker; M Girlanda
Journal:  Mycorrhiza       Date:  2016-12-10       Impact factor: 3.387

5.  Arbuscular mycorrhizal symbiosis and methyl jasmonate avoid the inhibition of root hydraulic conductivity caused by drought.

Authors:  Beatriz Sánchez-Romera; Juan Manuel Ruiz-Lozano; Ángel María Zamarreño; José María García-Mina; Ricardo Aroca
Journal:  Mycorrhiza       Date:  2015-06-13       Impact factor: 3.387

6.  Arbuscular mycorrhizas influence Lycium barbarum tolerance of water stress in a hot environment.

Authors:  Wentao Hu; Haoqiang Zhang; Hui Chen; Ming Tang
Journal:  Mycorrhiza       Date:  2017-02-09       Impact factor: 3.387

7.  Potential role of D-myo-inositol-3-phosphate synthase and 14-3-3 genes in the crosstalk between Zea mays and Rhizophagus intraradices under drought stress.

Authors:  Tao Li; Yuqing Sun; Yuan Ruan; Lijiiao Xu; Yajun Hu; Zhipeng Hao; Xin Zhang; Hong Li; Youshan Wang; Liguo Yang; Baodong Chen
Journal:  Mycorrhiza       Date:  2016-07-25       Impact factor: 3.387

8.  Insights on the Impact of Arbuscular Mycorrhizal Symbiosis on Tomato Tolerance to Water Stress.

Authors:  Walter Chitarra; Chiara Pagliarani; Biancaelena Maserti; Erica Lumini; Ilenia Siciliano; Pasquale Cascone; Andrea Schubert; Giorgio Gambino; Raffaella Balestrini; Emilio Guerrieri
Journal:  Plant Physiol       Date:  2016-04-19       Impact factor: 8.340

9.  Mycorrhiza-induced lower oxidative burst is related with higher antioxidant enzyme activities, net H2O2 effluxes, and Ca2+ influxes in trifoliate orange roots under drought stress.

Authors:  Ying-Ning Zou; Yong-Ming Huang; Qiang-Sheng Wu; Xin-Hua He
Journal:  Mycorrhiza       Date:  2014-08-03       Impact factor: 3.387

10.  Relative importance of an arbuscular mycorrhizal fungus (Rhizophagus intraradices) and root hairs in plant drought tolerance.

Authors:  Tao Li; Ge Lin; Xin Zhang; Yongliang Chen; Shubin Zhang; Baodong Chen
Journal:  Mycorrhiza       Date:  2014-04-18       Impact factor: 3.387

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