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- W2022046452 abstract "To specify the relations between triazine resistance and modification of the photosynthetic apparatus, the organization of plastids from herbicide-resistant and -susceptible biotypes of Chenopodium album L., Amaranthus retroflexus L., Solanum nigrum L., Brassica campestris L., and Brassica napus L. has been compared. The plastids from resistant biotypes exhibit a higher degree of stacking owing to a paucity of stroma lamellae and irrespective of the granum size distribution. Their enrichment in chlorophyll b and xanthophylls results from a higher content in light-harvesting chlorophyll a/b – proteins (LHCP), especially of the oligomer LHCP1. The resulting enlargement of photosystem II antennae is correlated to the fluorescence properties of isolated plastids. The most important difference in the lipid composition of thylakoid membranes is the increase of the Δ3-trans-hexadecenoic acid proportion in phosphatidylglycerol from resistant plastids, which is thought to participate in the formation of the oligomeric structure of LHCP1. The slight increase of the unsaturation of lipids, especially of mono-galactosyldiacylglycerol, from resistant plastids, is but a consequence of their higher proportion of appressed membranes. These alterations in lipid composition and ultrastructure of the chloroplasts resemble those occurring in plants grown under low irradiance. This adaptative reorganization of thylakoid components seems to be a compensatory mechanism allowing the overcoming of limitations in the Q A – Q B electron transfer and, thus, its occurrence and extent depend on the light and temperature conditions of growth." @default.
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- W2022046452 date "1986-12-01" @default.
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- W2022046452 title "Organization of the photosynthetic apparatus from triazine-resistant and -susceptible biotypes of several plant species" @default.
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- W2022046452 doi "https://doi.org/10.1139/b86-397" @default.
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