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- W2792665313 abstract "Abstract Arbuscular mycorrhizal (AM) fungi can substantially contribute to plant water uptake and drought tolerance. However, few studies examined whether AM symbiosis regulates the key functional genes in plant signaling under drought stress. The objective of present study was to investigate the influence of AM symbiosis on the expression of 14-3-3 genes (key genes in ABA signaling pathway) and plant adaptation to water deficit. The ABA-deficient tomato (Solanum lycopersicum) mutant notabilis (not) and its wild-type (wt) were cultivated with or without AM fungus Rhizophagus intraradices under well-watered or drought-stressed conditions. Plant phosphorus (P) concentration, transpiration rate (Tr), water use efficiency (WUE) and expression of 14-3-3 genes (TFT1-TFT12) were determined. The results indicated that mycorrhizal inoculation significantly increased shoot P concentrations of wt plants regardless of water regimes, and increased root P concentrations of the two genotypes under well-watered conditions. AM significantly up-regulated the expression of TFT2 and TFT3 in wt plants under drought stress. The decreased Tr led to increase of WUE and enhanced drought tolerance of wt plants. For not plants, AM significantly up-regulated the expression of TFT5, TFT7, TFT9 and TFT10 under drought stress, which subsequently altered the response of Tr to drought and prevented the decrease in WUE. The study supported that AM symbiosis could modulate the stomatal behavior and maintain WUE to improve plant drought tolerance possibly through regulation of the 14-3-3 genes in the ABA signaling pathway." @default.
- W2792665313 created "2018-03-29" @default.
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- W2792665313 date "2018-04-01" @default.
- W2792665313 modified "2023-10-16" @default.
- W2792665313 title "Arbuscular mycorrhiza enhances drought tolerance of tomato plants by regulating the 14-3-3 genes in the ABA signaling pathway" @default.
- W2792665313 cites W134386632 @default.
- W2792665313 cites W1597392293 @default.
- W2792665313 cites W186353946 @default.
- W2792665313 cites W1963843265 @default.
- W2792665313 cites W1967200859 @default.
- W2792665313 cites W1969450987 @default.
- W2792665313 cites W1974937902 @default.
- W2792665313 cites W1975490703 @default.
- W2792665313 cites W1977510418 @default.
- W2792665313 cites W1979584705 @default.
- W2792665313 cites W1981917654 @default.
- W2792665313 cites W1983295513 @default.
- W2792665313 cites W1991513174 @default.
- W2792665313 cites W1996593351 @default.
- W2792665313 cites W2005857593 @default.
- W2792665313 cites W2009409746 @default.
- W2792665313 cites W2011599886 @default.
- W2792665313 cites W2020660062 @default.
- W2792665313 cites W2021538852 @default.
- W2792665313 cites W2021926291 @default.
- W2792665313 cites W2022589439 @default.
- W2792665313 cites W2026046613 @default.
- W2792665313 cites W2034940025 @default.
- W2792665313 cites W2040063563 @default.
- W2792665313 cites W2040285175 @default.
- W2792665313 cites W2040811909 @default.
- W2792665313 cites W2041188832 @default.
- W2792665313 cites W2047312008 @default.
- W2792665313 cites W2050912825 @default.
- W2792665313 cites W2058395685 @default.
- W2792665313 cites W2059494758 @default.
- W2792665313 cites W2064024936 @default.
- W2792665313 cites W2068050021 @default.
- W2792665313 cites W2073074633 @default.
- W2792665313 cites W2075722924 @default.
- W2792665313 cites W2076418123 @default.
- W2792665313 cites W2078728626 @default.
- W2792665313 cites W2085258124 @default.
- W2792665313 cites W2088890037 @default.
- W2792665313 cites W2089538068 @default.
- W2792665313 cites W2090482029 @default.
- W2792665313 cites W2091839338 @default.
- W2792665313 cites W2092597910 @default.
- W2792665313 cites W2096054023 @default.
- W2792665313 cites W2097059926 @default.
- W2792665313 cites W2097375900 @default.
- W2792665313 cites W2097803757 @default.
- W2792665313 cites W2098535539 @default.
- W2792665313 cites W2102227865 @default.
- W2792665313 cites W2103910763 @default.
- W2792665313 cites W2106797025 @default.
- W2792665313 cites W2107277218 @default.
- W2792665313 cites W2112047873 @default.
- W2792665313 cites W2116172724 @default.
- W2792665313 cites W2118269781 @default.
- W2792665313 cites W2120106540 @default.
- W2792665313 cites W2123739922 @default.
- W2792665313 cites W2125135712 @default.
- W2792665313 cites W2128435550 @default.
- W2792665313 cites W2132632499 @default.
- W2792665313 cites W2132798397 @default.
- W2792665313 cites W2134652147 @default.
- W2792665313 cites W2135301181 @default.
- W2792665313 cites W2138017581 @default.
- W2792665313 cites W2138201584 @default.
- W2792665313 cites W2151649252 @default.
- W2792665313 cites W2152385000 @default.
- W2792665313 cites W2154570711 @default.
- W2792665313 cites W2157451936 @default.
- W2792665313 cites W2163449321 @default.
- W2792665313 cites W2170171699 @default.
- W2792665313 cites W2174512085 @default.
- W2792665313 cites W2200095436 @default.
- W2792665313 cites W2316359647 @default.
- W2792665313 cites W2338204177 @default.
- W2792665313 cites W2475051273 @default.
- W2792665313 cites W2479577913 @default.
- W2792665313 cites W2593013246 @default.
- W2792665313 doi "https://doi.org/10.1016/j.apsoil.2018.01.012" @default.
- W2792665313 hasPublicationYear "2018" @default.
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