Matches in SemOpenAlex for { <https://semopenalex.org/work/W4220786502> ?p ?o ?g. }
- W4220786502 endingPage "3838" @default.
- W4220786502 startingPage "3838" @default.
- W4220786502 abstract "White spruce (Picea glauca) emits monoterpenes that function as defensive signals and weapons after herbivore attack. We assessed the effects of drought and methyl jasmonate (MeJA) treatment, used as a proxy for herbivory, on monoterpenes and other isoprenoids in P. glauca. The emission of monoterpenes was significantly increased after MeJA treatment compared to the control, but drought suppressed the MeJA-induced increase. The composition of the emitted blend was altered strongly by stress, with drought increasing the proportion of oxygenated compounds and MeJA increasing the proportion of induced compounds such as linalool and (E)-β-ocimene. In contrast, no treatment had any significant effect on the levels of stored monoterpenes and diterpenes. Among other MEP pathway-derived isoprenoids, MeJA treatment decreased chlorophyll levels by 40%, but had no effect on carotenoids, while drought stress had no impact on either of these pigment classes. Of the three described spruce genes encoding 1-deoxy-D-xylulose-5-phosphate synthase (DXS) catalyzing the first step of the MEP pathway, the expression of only one, DXS2B, was affected by our treatments, being increased by MeJA and decreased by drought. These findings show the sensitivity of monoterpene emission to biotic and abiotic stress regimes, and the mediation of the response by DXS genes." @default.
- W4220786502 created "2022-04-03" @default.
- W4220786502 creator A5011506489 @default.
- W4220786502 creator A5064620295 @default.
- W4220786502 creator A5064771991 @default.
- W4220786502 creator A5071511664 @default.
- W4220786502 creator A5077539878 @default.
- W4220786502 creator A5085414691 @default.
- W4220786502 date "2022-03-30" @default.
- W4220786502 modified "2023-09-25" @default.
- W4220786502 title "Effect of Drought and Methyl Jasmonate Treatment on Primary and Secondary Isoprenoid Metabolites Derived from the MEP Pathway in the White Spruce Picea glauca" @default.
- W4220786502 cites W1188505723 @default.
- W4220786502 cites W1255111661 @default.
- W4220786502 cites W1661209811 @default.
- W4220786502 cites W1893495442 @default.
- W4220786502 cites W1966175318 @default.
- W4220786502 cites W1967039923 @default.
- W4220786502 cites W1977437300 @default.
- W4220786502 cites W1984071969 @default.
- W4220786502 cites W1985615922 @default.
- W4220786502 cites W1987894689 @default.
- W4220786502 cites W1987927621 @default.
- W4220786502 cites W1988907676 @default.
- W4220786502 cites W1989442902 @default.
- W4220786502 cites W1990151103 @default.
- W4220786502 cites W1992665072 @default.
- W4220786502 cites W1997738632 @default.
- W4220786502 cites W2006118624 @default.
- W4220786502 cites W2018119640 @default.
- W4220786502 cites W2025247767 @default.
- W4220786502 cites W2029420003 @default.
- W4220786502 cites W2029501304 @default.
- W4220786502 cites W2042759046 @default.
- W4220786502 cites W2070201099 @default.
- W4220786502 cites W2071736075 @default.
- W4220786502 cites W2083538904 @default.
- W4220786502 cites W2084610450 @default.
- W4220786502 cites W2098110199 @default.
- W4220786502 cites W2098437048 @default.
- W4220786502 cites W2102913886 @default.
- W4220786502 cites W2104362138 @default.
- W4220786502 cites W2108244474 @default.
- W4220786502 cites W2108835954 @default.
- W4220786502 cites W2110584602 @default.
- W4220786502 cites W2114425137 @default.
- W4220786502 cites W2115536873 @default.
- W4220786502 cites W2115965743 @default.
- W4220786502 cites W2116435796 @default.
- W4220786502 cites W2128149293 @default.
- W4220786502 cites W2131211647 @default.
- W4220786502 cites W2134064101 @default.
- W4220786502 cites W2135858516 @default.
- W4220786502 cites W2140131090 @default.
- W4220786502 cites W2141836735 @default.
- W4220786502 cites W2151738432 @default.
- W4220786502 cites W2153531951 @default.
- W4220786502 cites W2155755377 @default.
- W4220786502 cites W2160025325 @default.
- W4220786502 cites W2164450550 @default.
- W4220786502 cites W2166688969 @default.
- W4220786502 cites W2169017109 @default.
- W4220786502 cites W2567225141 @default.
- W4220786502 cites W2594731113 @default.
- W4220786502 cites W2606103257 @default.
- W4220786502 cites W2619391819 @default.
- W4220786502 cites W2755199723 @default.
- W4220786502 cites W2770175704 @default.
- W4220786502 cites W2888832898 @default.
- W4220786502 cites W2890216788 @default.
- W4220786502 cites W2896160969 @default.
- W4220786502 cites W2898457701 @default.
- W4220786502 cites W3058233743 @default.
- W4220786502 cites W3091872997 @default.
- W4220786502 cites W3213953464 @default.
- W4220786502 doi "https://doi.org/10.3390/ijms23073838" @default.
- W4220786502 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/35409197" @default.
- W4220786502 hasPublicationYear "2022" @default.
- W4220786502 type Work @default.
- W4220786502 citedByCount "4" @default.
- W4220786502 countsByYear W42207865022023 @default.
- W4220786502 crossrefType "journal-article" @default.
- W4220786502 hasAuthorship W4220786502A5011506489 @default.
- W4220786502 hasAuthorship W4220786502A5064620295 @default.
- W4220786502 hasAuthorship W4220786502A5064771991 @default.
- W4220786502 hasAuthorship W4220786502A5071511664 @default.
- W4220786502 hasAuthorship W4220786502A5077539878 @default.
- W4220786502 hasAuthorship W4220786502A5085414691 @default.
- W4220786502 hasBestOaLocation W42207865021 @default.
- W4220786502 hasConcept C104317684 @default.
- W4220786502 hasConcept C132215390 @default.
- W4220786502 hasConcept C144027150 @default.
- W4220786502 hasConcept C185592680 @default.
- W4220786502 hasConcept C18903297 @default.
- W4220786502 hasConcept C206103511 @default.
- W4220786502 hasConcept C2776055928 @default.
- W4220786502 hasConcept C2777278459 @default.
- W4220786502 hasConcept C2777671706 @default.
- W4220786502 hasConcept C2777942875 @default.