Degradation of chlorophyll and synthesis of flavonols during autumn senescence-the story told by individual leaves

. 2018 Jun ; 10 (3) : ply028. [epub] 20180504

Status PubMed-not-MEDLINE Jazyk angličtina Země Velká Británie, Anglie Médium electronic-ecollection

Typ dokumentu časopisecké články

Perzistentní odkaz   https://www.medvik.cz/link/pmid29977486

Autumn senescence of deciduous trees is characterized by chlorophyll degradation and flavonoid synthesis. In the present study, chlorophyll and flavonol contents were measured every morning and evening during the whole autumn with a non-destructive method from individual leaves of Sorbus aucuparia, Acer platanoides, Betula pendula and Prunus padus. In most of the studied trees, the chlorophyll content of each individual leaf remained constant until a phase of rapid degradation commenced. The fast phase lasted only ~1 week and ended with abscission. In S. aucuparia, contrary to the other species, the chlorophyll content of leaflets slowly but steadily decreased during the whole autumn, but rapid chlorophyll degradation commenced only prior to leaflet abscission also in this species. An increase in flavonols commonly accompanied the rapid degradation of chlorophyll. The results may suggest that each individual tree leaf retains its photosynthetic activity, reflected by a high chlorophyll content, until a rapid phase of chlorophyll degradation and flavonoid synthesis begins. Therefore, in studies of autumn senescence, leaves whose chlorophyll content is decreasing and leaves with summertime chlorophyll content (i.e. the leaves that have not yet started to degrade chlorophyll) should be treated separately.

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Agati G, Tuccio L, Kusznierewicz B, Chmiel T, Bartoszek A, Kowalski A, Grzegorzewska M, Kosson R, Kaniszewski S. 2016. Nondestructive optical sensing of flavonols and chlorophyll in white head cabbage ( PubMed

Andersson A, Keskitalo J, Sjödin A, Bhalerao R, Sterky F, Wissel K, Tandre K, Aspeborg H, Moyle R, Ohmiya Y, Bhalerao R, Brunner A, Gustafsson P, Karlsson J, Lundeberg J, Nilsson O, Sandberg G, Strauss S, Sundberg B, Uhlen M, Jansson S, Nilsson P. 2004. A transcriptional timetable of autumn senescence. Genome Biology 5:R24. PubMed PMC

Archetti M. 2009a. Classification of hypotheses on the evolution of autumn colours. Oikos 118:328–333.

Archetti M. 2009b. Phylogenetic analysis reveals a scattered distribution of autumn colours. Annals of Botany 103:703–713. PubMed PMC

Barthod S, Cerovic Z, Epron D. 2007. Can dual chlorophyll fluorescence excitation be used to assess the variation in the content of UV-absorbing phenolic compounds in leaves of temperate tree species along a light gradient?Journal of Experimental Botany 58:1753–1760. PubMed

Beisel KG, Jahnke S, Hofmann D, Köppchen S, Schurr U, Matsubara S. 2010. Continuous turnover of carotenes and chlorophyll a in mature leaves of PubMed PMC

Bhalerao R, Keskitalo J, Sterky F, Erlandsson R, Björkbacka H, Birve SJ, Karlsson J, Gardeström P, Gustafsson P, Lundeberg J, Jansson S. 2003. Gene expression in autumn leaves. Plant Physiology 131:430–442. PubMed PMC

Brant AN, Chen HYH. 2015. Patterns and mechanisms of nutrient resorption in plants. Critical Reviews in Plant Sciences 34:471–486.

Christ B, Hörtensteiner S. 2014. Mechanism and significance of chlorophyll breakdown. Journal of Plant Growth Regulation 33:4–20.

Casa R, Castaldi F, Pascucci S, Pignatti S. 2015. Chlorophyll estimation in field crops: an assessment of handheld leaf meters and spectral reflectance measurements. Journal of Agricultural Science 153:876–890.

Castro KL, Sanchez-Azofeifa GA. 2008. Changes in spectral properties, chlorophyll content and internal mesophyll structure of senescing PubMed PMC

Cerovic ZG, Masdoumier G, Ghozlen NB, Latouche G. 2012. A new optical leaf-clip meter for simultaneous non-destructive assessment of leaf chlorophyll and epidermal flavonoids. Physiologia Plantarum 146:251–260. PubMed PMC

Collier DE, Thibodeau BA. 1995. Changes in respiration and chemical content during autumnal senescence of PubMed

Falcone Ferreyra ML, Rius SP, Casati P. 2012. Flavonoids: biosynthesis, biological functions, and biotechnological applications. Frontiers in Plant Science 3:222. PubMed PMC

Feierabend J, Dehne S. 1996. Fate of the porphyrin cofactors during the light-dependent turnover of catalase and of the photosystem II reaction-center protein D1 in mature rye leaves. Planta 198:413–422.

Fischer AM. 2012. The complex regulation of senescence. Critical Reviews in Plant Sciences 31:124–147.

Fu YSH, Campioli M, Vitasse Y, De Boeck HJ, Van den Berge J, AbdElgawad H, Asard H, Piao S, Deckmyn G, Janssens IA. 2014. Variation in leaf flushing date influences autumnal senescence and next year’s flushing date in two temperate tree species. Proceedings of the National Academy of Sciences of the Unites States of America 111:7355–7360. PubMed PMC

Fracheboud Y, Luquez V, Björkén L, Sjödin A, Tuominen H, Jansson S. 2009. The control of autumn senescence in European aspen. Plant Physiology 149:1982–1991. PubMed PMC

Gill AL, Gallinat AS, Sanders-DeMott R, Rigden AJ, Short Gianotti DJ, Mantooth JA, Templer PH. 2015. Changes in autumn senescence in northern hemisphere deciduous trees: a meta-analysis of autumn phenology studies. Annals of Botany 116: 875–888. PubMed PMC

Guo Y, Gan SS. 2012. Convergence and divergence in gene expression profiles induced by leaf senescence and 27 senescence-promoting hormonal, pathological and environmental stress treatments. Plant, Cell & Environment 35:644–655. PubMed

Heddad M, Norén H, Reiser V, Dunaeva M, Andersson B, Adamska I. 2006. Differential expression and localization of early light-induced proteins in PubMed PMC

Hopkins M, Taylor C, Liu Z, Ma F, McNamara L, Wang TW, Thompson JE. 2007. Regulation and execution of molecular disassembly and catabolism during senescence. The New Phytologist 175:201–214. PubMed

Hörtensteiner S, Kräutler B. 2011. Chlorophyll breakdown in higher plants. Biochimica Et Biophysica Acta 1807:977–988. PubMed

Kandil FE, Grace MH, Seigler DS, Cheeseman JM. 2004. Polyphenolics in

Kasuga J, Hashidoko Y, Nishioka A, Yoshiba M, Arakawa K, Fujikawa S. 2008. Deep supercooling xylem parenchyma cells of katsura tree ( PubMed

Keskitalo J, Bergquist G, Gardeström P, Jansson S. 2005. A cellular timetable of autumn senescence. Plant Physiology 139:1635–1648. PubMed PMC

Kloppstech K. 1985. Diurnal and circadian rhythmicity in the expression of light-induced plant nuclear messenger RNAs. Planta 165:502–506. PubMed

Korn M, Peterek S, Mock HP, Heyer AG, Hincha DK. 2008. Heterosis in the freezing tolerance, and sugar and flavonoid contents of crosses between PubMed PMC

Koski T-M, Lindstedt C, Klemola T, Troscianko J, Mäntylä E, Tyystjärvi E, Stevens M, Helander M, Laaksonen T. 2017. Insect herbivory may cause changes in the visual properties of leaves and affect the camouflage of herbivores to avian predators. Behavioral Ecology and Sociobiology 71:97.

Kraj W. 2015. Chlorophyll degradation and the activity of chlorophyllase and Mg-dechelatase during leaf senescence in

Landi M, Tattini M, Gould KS. 2015. Multiple functional roles of anthocyanins in plant-environment interactions. Environmental and Experimental Botany 119:4–17.

Lee DW, O’Keefe J, Holbrook NM, Feild TS. 2003. Pigment dynamics and autumn leaf senescence in a New England deciduous forest, eastern USA. Ecological Research 18:677–694.

Lepeduš H, Jurković V, Štolfa I, Ćurković-Perica M, Fulgosi H, Cesar V. 2010. Changes in photosystem II photochemistry in senescing maple leaves. Croatica Chemica Acta 83:379–386.

Lin YP, Lee TY, Tanaka A, Charng YY. 2014. Analysis of an PubMed

Majer P, Neugart S, Krumbein A, Schreiner M, Hideg É. 2014. Singlet oxygen scavenging by leaf flavonoids contributes to sunlight acclimation in

Martemyanov VV, Pavlushin SV, Dubovskiy IM, Belousova IA, Yushkova YV, Morosov SV, Chernyak EI, Glupov VV. 2015. Leaf surface lipophilic compounds as one of the factors of silver birch chemical defense against larvae of gypsy moth. PLoS One 10:e0121917. PubMed PMC

Masuda T, Takamiya K. 2004. Novel Insights into the enzymology, regulation and physiological functions of light-dependent protochlorophyllide oxidoreductase in angiosperms. Photosynthesis Research 81:1–29. PubMed

Mattila H, Khorobrykh S, Havurinne V, Tyystjärvi E. 2015. Reactive oxygen species: reactions and detection from photosynthetic tissues. Journal of Photochemistry and Photobiology B: Biology 152:176–214. PubMed

Morales LO, Tegelberg R, Brosché M, Keinänen M, Lindfors A, Aphalo PJ. 2010. Effects of solar UV-A and UV-B radiation on gene expression and phenolic accumulation in PubMed

Moy A, Le S, Verhoeven A. 2015. Different strategies for photoprotection during autumn senescence in maple and oak. Physiologia Plantarum 155:205–216. PubMed

Noordally ZB, Ishii K, Atkins KA, Wetherill SJ, Kusakina J, Walton EJ, Kato M, Azuma M, Tanaka K, Hanaoka M, Dodd AN. 2013. Circadian control of chloroplast transcription by a nuclear-encoded timing signal. Science 339:1316–1319. PubMed

Pan W-J, Wang X, Deng Y-R, Li J-H, Chen W, Chiang JY, Yang J-B, Zheng L. 2015. Nondestructive and intuitive determination of circadian chlorophyll rhythms in soybean leaves using multispectral imaging. Scientific Reports 5:11108. PubMed PMC

Papenbrock J, Mock HP, Kruse E, Grimm B. 1999. Expression studies in tetrapyrrole biosynthesis: inverse maxima of magnesium chelatase and ferrochelatase activity during cyclic photoperiods. Planta 208:264–273.

Pätsikkä E, Kairavuo M, Sersen F, Aro EM, Tyystjärvi E. 2002. Excess copper predisposes photosystem II to photoinhibition in vivo by outcompeting iron and causing decrease in leaf chlorophyll. Plant Physiology 129:1359–1367. PubMed PMC

Peoples MB, Dalling MJ. 1988. The interplay between proteolysis and amino acid metabolism during senescence and nitrogen reallocation. In: Noodén LD, Leopold AC, eds. Senescence and aging in plants. San Diego, CA: Academic Press, 181–217.

Pfündel EE, Ghozlen NB, Meyer S, Cerovic ZG. 2007. Investigating UV screening in leaves by two different types of portable UV fluorimeters reveals in vivo screening by anthocyanins and carotenoids. Photosynthesis Research 93:205–221. PubMed

Pollastri S, Tattini M. 2011. Flavonols: old compounds for old roles. Annals of Botany 108:1225–1233. PubMed PMC

Porra RJ, Thompson WA, Kriedemann PE. 1989. Determination of accurate extinction coefficients and simultaneous equations for assaying chlorophylls

Pružinská A, Anders I, Aubry S, Schenk N, Tapernoux-Lüthi E, Müller T, Kräutler B, Hörtensteiner S. 2007. In vivo participation of red chlorophyll catabolite reductase in chlorophyll breakdown. The Plant Cell 19:369–387. PubMed PMC

R Core Team 2014. R: a language and environment for statistical computing. Vienna, Austria: R Foundation for Statistical Computing.

Reddy MS, Naithani S, Tuli R, Sane PV. 2000. Diurnal regulation of plastid genes in PubMed

Seal T. 2016. Quantitative HPLC analysis of phenolic acids, flavonoids and ascorbic acid in four different solvent extracts of two wild edible leaves,

Sinkkonen A, Somerkoski E, Paaso U, Holopainen JK, Rousi M, Mikola J. 2012. Genotypic variation in yellow autumn leaf colours explains aphid load in silver birch. The New Phytologist 195:461–469. PubMed

Solovchenko AE, Merzlyak MN. 2008. Screening of visible and uv radiation as a photoprotective mechanism in plants. Russian Journal of Plant Physiology 55:719–737.

Springer A, Acker G, Bartsch S, Bauerschmitt H, Reinbothe S, Reinbothe C. 2015. Differences in gene expression between natural and artificially induced leaf senescence in barley. Journal of Plant Physiology 176:180–191. PubMed

Stark S, Väisänen M, Ylänne H, Julkunen-Tiitto R, Martz F. 2015. Decreased phenolic defence in dwarf birch (

Stobart AK, Hendry GAF. 1984. The turnover of chlorophyll in greening wheat leaves. Phytochemistry 23:27–30.

Torras-Claveria L, Jáuregui O, Codina C, Tiburcio AF, Bastida J, Viladomat F. 2012. Analysis of phenolic compounds by high-performance liquid chromatography coupled to electrospray ionization tandem mass spectrometry in senescent and water-stressed tobacco. Plant Science 182:71–78. PubMed

Wen CH, Lin SS, Chu FH. 2015. Transcriptome analysis of a subtropical deciduous tree: autumn leaf senescence gene expression profile of formosan gum. Plant & Cell Physiology 56:163–174. PubMed

Wolf FT. 1956. Changes in chlorophyll-a and chlorophyll-b in autumn leaves. American Journal of Botany 43:714–718.

Xu Y, Johnson CH. 2001. A clock- and light-regulated gene that links the circadian oscillator to LHCB gene expression. The Plant Cell 13:1411–1425. PubMed PMC

Yamazaki J, Kamimura Y, Okada M, Sugimura Y. 1999. Changes in photosynthetic characteristics and photosystem stoichiometries in the lower leaves in rice seedlings. Plant Science 148:155–163.

Yang W, Xu X, Li Y, Wang Y, Li M, Wang Y, Ding X, Chu Z. 2016. Rutin-mediated priming of plant resistance to three bacterial pathogens initiating the early SA signal pathway. PLoS One 11:e0146910. PubMed PMC

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