Matches in SemOpenAlex for { <https://semopenalex.org/work/W2803148052> ?p ?o ?g. }
- W2803148052 endingPage "1038" @default.
- W2803148052 startingPage "1025" @default.
- W2803148052 abstract "The flexible association of the light harvesting complex II (LHCII) to photosystem (PS) I and PSII to balance their excitation is a major short-term acclimation process of the thylakoid membrane, together with the thermal dissipation of excess absorbed energy, reflected in non-photochemical quenching of chlorophyll fluorescence (NPQ). In Pisum sativum, the leaf includes two main photosynthetic parts, the basal stipules and the leaflets. Since the stipules are less efficient in carbon fixation than leaflets, the adjustments of the thylakoid system, which safeguard the photosynthetic membrane against photodamage, were analysed. As compared to leaflets, the stipules experienced a decay in PSII photochemical activity. The supramolecular organization of photosystems in stipules showed a more conspicuous accumulation of large PSII-LHCII supercomplexes in the grana, but also a tendency to retain the PSI-LHCI-LHCII state transition complex and the PSI-LHCI-PSII-LHCII megacomplexes probably located at the interface between appressed and stroma-exposed membranes. As a consequence, stipules had a lower capacity to perform state transitions and the overall thylakoid architecture was less structurally flexible and ordered than in leaflets. Yet, stipules proved to be quite efficient in regulating the redox state of the electron transport chain and more capable of inducing NPQ than leaflets. It is proposed that, in spite of a relatively static thylakoid arrangement, LHCII interaction with both photosystems in megacomplexes can contribute to a regulated electron flow." @default.
- W2803148052 created "2018-06-01" @default.
- W2803148052 creator A5008532051 @default.
- W2803148052 creator A5011133849 @default.
- W2803148052 creator A5015963109 @default.
- W2803148052 creator A5065571027 @default.
- W2803148052 creator A5072031296 @default.
- W2803148052 creator A5074759722 @default.
- W2803148052 creator A5080425046 @default.
- W2803148052 date "2018-10-01" @default.
- W2803148052 modified "2023-10-14" @default.
- W2803148052 title "In pea stipules a functional photosynthetic electron flow occurs despite a reduced dynamicity of LHCII association with photosystems" @default.
- W2803148052 cites W1554554132 @default.
- W2803148052 cites W1589489053 @default.
- W2803148052 cites W1908175628 @default.
- W2803148052 cites W1972007109 @default.
- W2803148052 cites W1975351372 @default.
- W2803148052 cites W1978234106 @default.
- W2803148052 cites W1981174886 @default.
- W2803148052 cites W1981363241 @default.
- W2803148052 cites W1981718931 @default.
- W2803148052 cites W1987241339 @default.
- W2803148052 cites W1989951600 @default.
- W2803148052 cites W1991877682 @default.
- W2803148052 cites W1994483079 @default.
- W2803148052 cites W2001251165 @default.
- W2803148052 cites W2006445301 @default.
- W2803148052 cites W2009739254 @default.
- W2803148052 cites W2017298067 @default.
- W2803148052 cites W2023274452 @default.
- W2803148052 cites W2030917081 @default.
- W2803148052 cites W2031933160 @default.
- W2803148052 cites W2033759162 @default.
- W2803148052 cites W2034250141 @default.
- W2803148052 cites W2034515209 @default.
- W2803148052 cites W2035046498 @default.
- W2803148052 cites W2043819876 @default.
- W2803148052 cites W2056927923 @default.
- W2803148052 cites W2057772007 @default.
- W2803148052 cites W2065839335 @default.
- W2803148052 cites W2065851033 @default.
- W2803148052 cites W2071603336 @default.
- W2803148052 cites W2081817251 @default.
- W2803148052 cites W2081930943 @default.
- W2803148052 cites W2082917714 @default.
- W2803148052 cites W2094522245 @default.
- W2803148052 cites W2095758451 @default.
- W2803148052 cites W2095780316 @default.
- W2803148052 cites W2100837269 @default.
- W2803148052 cites W2113216081 @default.
- W2803148052 cites W2114474537 @default.
- W2803148052 cites W2115335149 @default.
- W2803148052 cites W2116810877 @default.
- W2803148052 cites W2117600679 @default.
- W2803148052 cites W2117702304 @default.
- W2803148052 cites W2120151226 @default.
- W2803148052 cites W2129574172 @default.
- W2803148052 cites W2133400904 @default.
- W2803148052 cites W2134861690 @default.
- W2803148052 cites W2135415380 @default.
- W2803148052 cites W2136400789 @default.
- W2803148052 cites W2136822724 @default.
- W2803148052 cites W2137803659 @default.
- W2803148052 cites W2139141066 @default.
- W2803148052 cites W2141217783 @default.
- W2803148052 cites W2150913614 @default.
- W2803148052 cites W2155372462 @default.
- W2803148052 cites W2157753780 @default.
- W2803148052 cites W2160631413 @default.
- W2803148052 cites W2161324059 @default.
- W2803148052 cites W2161831550 @default.
- W2803148052 cites W2169873214 @default.
- W2803148052 cites W2170375512 @default.
- W2803148052 cites W2229092132 @default.
- W2803148052 cites W2318999072 @default.
- W2803148052 cites W2320406133 @default.
- W2803148052 cites W2320834875 @default.
- W2803148052 cites W2397309732 @default.
- W2803148052 cites W2470119373 @default.
- W2803148052 cites W2507727342 @default.
- W2803148052 cites W2508346711 @default.
- W2803148052 cites W2547269372 @default.
- W2803148052 cites W2577987733 @default.
- W2803148052 cites W2607252518 @default.
- W2803148052 cites W2610735630 @default.
- W2803148052 cites W2611573645 @default.
- W2803148052 cites W2625688262 @default.
- W2803148052 cites W2746181160 @default.
- W2803148052 cites W2748147516 @default.
- W2803148052 cites W2761323078 @default.
- W2803148052 cites W2766504860 @default.
- W2803148052 cites W2767928267 @default.
- W2803148052 cites W2807136459 @default.
- W2803148052 cites W311427554 @default.
- W2803148052 cites W4232143105 @default.
- W2803148052 doi "https://doi.org/10.1016/j.bbabio.2018.05.013" @default.
- W2803148052 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/29803724" @default.
- W2803148052 hasPublicationYear "2018" @default.