Modulation of GmFAD3 expression alters abiotic stress responses in soybean
Key message This study focused on enhancing resilience of soybean crops to drought and salinity stresses by overexpression of GmFAD3A gene, which plays an important role in modulating membrane fluidity and ultimately influence plants response to various abiotic stresses. Fatty acid desaturases (FADs...
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Veröffentlicht in: | Plant molecular biology 2022-09, Vol.110 (1-2), p.199-218 |
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Sprache: | eng |
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This study focused on enhancing resilience of soybean crops to drought and salinity stresses by overexpression of
GmFAD3A
gene, which plays an important role in modulating membrane fluidity and ultimately influence plants response to various abiotic stresses.
Fatty acid desaturases (FADs) are a class of enzymes that mediate desaturation of fatty acids by introducing double bonds. They play an important role in modulating membrane fluidity in response to various abiotic stresses. However, a comprehensive analysis of
GmFAD3
in drought and salinity stress tolerance in soybean is lacking. We used bean pod mottle virus (BPMV)-based vector for achieving rapid and efficient overexpression as well as silencing of
Omega-3 Fatty Acid Desaturase
gene from
Glycine max
(
GmFAD3
) to assess the functional role of
GmFAD3
in abiotic stress responses in soybean. Higher levels of recombinant BPMV-
GmFAD3A
transcripts were detected in overexpressing soybean plants. Overexpression of
GmFAD3A
in soybean resulted in increased levels of jasmonic acid and higher expression of
GmWRKY54
as compared to mock-inoculated, vector-infected and FAD3-silenced soybean plants under drought and salinity stress conditions. The
GmFAD3A
-overexpressing plants showed higher levels of chlorophyll content, efficient photosystem-II, relative water content, transpiration rate, stomatal conductance, proline content and also cooler canopy under drought and salinity stress conditions as compared to mock-inoculated, vector-infected and FAD3-silenced soybean plants. Results from the current study revealed that
GmFAD3A
-overexpressing soybean plants exhibited tolerance to drought and salinity stresses. However, soybean plants silenced for
GmFAD3
were vulnerable to drought and salinity stresses. |
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ISSN: | 0167-4412 1573-5028 |
DOI: | 10.1007/s11103-022-01295-4 |