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Abstract:

Baccharis spicata is a plant native to the south of South America And is infected by psyllids of the Baccharopelma genus, which induce a fold gall in its leaves. This infection induces a series of anatomical and phytochemical variations compared to the healthy leaf: the content of total phenolic compounds and total hidroxycinnamic derivatives is lower, though the chlorogenic acid measured by HPLC remains the same and the 4,5 dichlorogenic acid content is near the half of the one observed in the one in the healthy leaf. Regarding to its anatomy, the gall has an homogeneous mesophyll and flavonoids in its outer epidermis compared to an isobilateral mesophyll and epidermal flavonoidic idioblasts observed in the leaf. The increase in the expression of waxes suggests it is a protective function against the desiccation by preventing water evaporation in the structure. The results here exposed suggest that the psyllid manipulates plant tissues, inducing hyperplasia and hypertrophy in the tissues, differentiating them from healthy structures and inducing changes in the biosynthesis of secondary polyphenolic metabolites that act like intermediary between the gall and the environment. © 2018 Elsevier Ltd

Registro:

Documento: Artículo
Título:Anatomy, histochemistry, and comparative analysis of hydroxycinnamic derivatives in healthy leaves and galls induced by Baccharopelma spp. (Hemiptera: Psyllidae) in Baccharis spicata (Lam) Baill (Asteraceae)
Autor:Agudelo, I.; Cogoi, L.; Filip, R.; Kuzmanich, N.; Wagner, M.L.; Ricco, R.A.
Filiación:Cátedra de Farmacobotánica, Departamento de Farmacología, Facultad de Farmacia y Bioquímica, Universidad de Buenos Aires, Argentina
Cátedra de Farmacognosia, Departamento de Farmacología, Facultad de Farmacia y Bioquímica, Universidad de Buenos Aires, Argentina
Instituto Multidisciplinario de Biología Vegetal-CONICET, Facultad de Ciencias Exactas, Físicas y Naturales, Universidad Nacional de Córdoba, Argentina
Palabras clave:Baccharis; Histochemistry; Insect induced galls; Plant anatomy; Psyllidae; anatomy; biochemical composition; comparative study; desiccation; gene expression; herb; histology; induced response; insect; leaf; native species; phenolic compound; phytochemistry; secondary metabolite; South America; Asteraceae; Baccharis; Hemiptera; Hexapoda; Psyllidae
Año:2018
Volumen:77
Página de inicio:22
Página de fin:30
DOI: http://dx.doi.org/10.1016/j.bse.2018.01.001
Título revista:Biochemical Systematics and Ecology
Título revista abreviado:Biochem. Syst. Ecol.
ISSN:03051978
CODEN:BSECB
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_03051978_v77_n_p22_Agudelo

Referencias:

  • Ahn, Y.-J., Lee, H.-S., Oh, H.-S., Kim, H.-T., Lee, Y.-H., Antifungal activity and mode of action of Galla rhois-derived phenolics against phytopathogenic fungi (2005) Pestic. Biochem. Physiol., 81, pp. 105-112
  • Aboy, A.L., Apel, M.A., Debenedetti, S., Francescato, L., Rosella, M.A., Henriques, A.T., Assay of caffeoylquinic acids in Baccharis trimera by reversed-phase liquid chromatography (2012) J. Chromatogr. A, 1219, pp. 147-153
  • Agudelo, I.J., Isolabella, S.A., Filip, R., Wagner, M.L., Ricco, R.A., Baccharis spicata (Lam) Baill: polyphenol screening, determination of their antioxidant activity and their main polyphenolic metabolites (2016) J. Pharmacogn. Phytochem., 5 (6), pp. 278-285
  • Agudelo, I.J., Wagner, M.L., Gurni, A.A., Ricco, R.A., Dinámica de polifenoles y estudio anatomohistoquímico en Schinus longifolius (Lindl.) Speg. (Anacardiaceae) en respuesta a la infección por Calophya mammifex (Hemiptera – calophyidae) (2013) Bol. Latinoam. Caribe Plantas Med. Aromat. (BLACPMA), 12 (2), pp. 162-175
  • Arduin, M., Fernandes, G.W., Kraus, J.E., Morphogenesis of galls induced by Baccharopelma dracunculifoliae (Hemiptera: psyllidae) on Baccharis dracunculifolia (Asteraceae) leaves (2005) Braz. J. Biol., 65, pp. 559-571
  • Argüeso, A.D.D., Manual De Técnicas En Histología Vegetal (1986), Hemisferio Sur Buenos Aires; Barboza, G.E., Atlas histo-morfológico de plantas de interés medicinal de uso corriente en Argentina (2001), Museo Botánico Córdoba, Córdoba Argentina; Barthlott, W., Neinhuis, C., Cutler, D., Ditsch, F., Meusel, I., Theisen, I., Wilhelmi, H., Classification and terminology of plant epicuticular waxes (1998) Bot. J. Linn. Soc., 126, pp. 237-260
  • Bedetti, C.S., Modolo, L.V., Isaias, R.M.D.S., The role of phenolics in the control of auxin in galls of Piptadenia gonoacantha (Mart.) MacBr (Fabaceae: mimosoideae) (2014) Biochem. Systemat. Ecol., 55, pp. 53-59
  • Besten, M.A., Nunes, D.S., Granato, D., Sens, S.L., Jr., A.W., Simionatto, E.L., Riva-Scharf, D., Volatile components from galls induced Bybaccharopelma dracunculifoliae(Hemiptera: psyllidae) on leaves of baccharis dracunculifolia(Asteraceae) (2014) Quím. Nova
  • Burckhardt, Psylloidea (2008) Biodiversidad de Artrópodos Argentinos, 2. , 2008 L.E. Claps G. Debandi S. Roig-Juñent Sociedad Entomológica Argentina Buenos Aires
  • Cabrera, A.L., Zardini, E.M., Manual de la flora de los alrededores de Buenos Aires (1978), Editorial Acme Buenos Aires; Carneiro, R., Castro, A., Isaias, R., Unique histochemical gradients in a photosynthesis-deficient plant gall (2014) South Afr. J. Bot., 92, pp. 97-104
  • Clifford, M.N., Madala, N.E., Surrogate standards: a cost-effective strategy for identification of phytochemicals (2017) J. Agric. Food Chem., 65, pp. 3589-3590
  • Cornell, H.V., The secondary chemistry and complex morphology of galls formed by the cynipinae (hymenoptera): why and how? (1983) Am. Midl. Nat., 110, p. 225
  • Cortadi, A., Sapio, O.D., Cargo, J.M., Scandizzi, A., Gattuso, S., Gattuso, M., Anatomical studies of Baccharis articulata, Baccharis crispa and Baccharis trimera, “carquejas” used in folk medicine (1999) Pharmaceut. Biol., 37, pp. 357-365
  • Fernandes, G.W., Silva, J.O., Espírito-Santo, M.M., Fagundes, M., Oki, Y., Carneiro, M.A.A., Baccharis: a neotropical model system to study insect plant interactions (2014) Neotropical Insect Galls, pp. 193-219
  • Ferreira, B.G., Teixeira, C.T., Isaias, R.M.S., Efficiency of the polyethylene-glycol (PEG) embedding medium for plant histochemistry (2014) J. Histochem. Cytochem., 62, pp. 577-583
  • Ferreira, B.G., Falcioni, R., Guedes, L.M., Avritzer, S.C., Antunes, W.C., Souza, L.A., Isaias, R.M., Preventing false negatives for histochemical detection of phenolics and lignins in PEG-embedded plant tissues (2017) J. Histochem. Cytochem., 65, pp. 105-116
  • Filip, R., Ferraro, G.E., Researching on new species of “Mate”: Ilex brevicuspis (2003) Eur. J. Nutr., 42, pp. 50-54
  • Filip, R., López, P., Giberti, G., Coussio, J., Ferraro, G., Phenolic compounds in seven South American Ilex species (2001) Fitoterapia, 72, pp. 774-778
  • Grecco, S.D.S., Gimenes, L., Ferreira, M.J., Romoff, P., Favero, O.A., Zalewski, C.A., Lago, J.H.G., Triterpenoids and phenolic derivatives from Baccharis uncinella C.DC. (Asteraceae) (2010) Biochem. Systemat. Ecol., 38, pp. 1234-1237
  • Halbwirth, H., The creation and physiological relevance of divergent hydroxylation patterns in the flavonoid pathway (2010) Int. J. Mol. Sci., 11, pp. 595-621
  • Harper, L.J., Schonrogge, K., Lim, K.Y., Francis, P., Lichtenstein, C.P., Cynipid galls: insect-induced modifications of plant development create novel plant organs (2004) Plant, Cell and Environ., 27, pp. 327-335
  • Hartley, S.E., Lawton, J.H., Host-plant manipulation by gall-insects: a test of the nutrition hypothesis (1992) J. Anim. Ecol., 61, p. 113
  • Hartley, S.E., The chemical composition of plant galls: are levels of nutrients and secondary compounds controlled by the gall-former? (1998) Oecologia, 113, pp. 492-501
  • Isaias, R.M.D.S., Oliveira, D.C.D., Carneiro, R.G.D.S., Kraus, J.E., Developmental anatomy of galls in the neotropics: arthropods stimuli versus host plant constraints (2014) Neotropical Insect Galls, pp. 15-34
  • Isaias, R.M.D.S., Carneiro, R.G.D.S., Santos, J.C., Oliveira, D.C.D., Gall morphotypes in the neotropics and the need to standardize them (2014) Neotropical Insect Galls, pp. 51-67
  • Isolabella, S., Cogoi, L., López, P., Anesini, C., Ferraro, G., Filip, R., Study of the bioactive compounds variation during yerba mate (Ilex paraguariensis) processing (2010) Food Chem., 122, pp. 695-699
  • Magalhães, T.A., Oliveira, D.C.D., Suzuki, A.Y.M., Isaias, R.M.D.S., Patterns of cell elongation in the determination of the final shape in galls of Baccharopelma dracunculifoliae (Psyllidae) on Baccharis dracunculifolia DC (Asteraceae) (2013) Protoplasma, 251, pp. 747-753
  • Martino, V.S., Debenedetti, S.L., Coussio, J.D., Caffeoylquinic acids from Pterocaulon virgatum and Pluchea sagittalis (1979) Phytochemistry, 18, p. 2052
  • Mapes, C.C., Davies, P.J., Indole-3-acetic acid and ball gall development on Solidago altissima (2001) New Phytol., 151, pp. 195-202
  • Marques, V., Farah, A., Chlorogenic acids and related compounds in medicinal plants and infusions (2009) Food Chem., 113, pp. 1370-1376
  • Matsuki, M., Regulation of plant phenolic synthesis: from biochemistry to ecology and evolution (1996) Aust. J. Bot., 44, p. 613
  • Moglia, A., Lanteri, S., Comino, C., Hill, L., Knevitt, D., Cagliero, C., Rubiolo, P., Martin, C., Dual catalytic activity of hydroxycinnamoyl-coenzyme a quinate transferase from tomato allows it to moonlight in the synthesis of both mono- and dicaffeoylquinic acids (2014) Plant Physiol., 166, pp. 1777-1787
  • Nyman, T., Julkunen-Tiitto, R., Manipulation of the phenolic chemistry of willows by gall-inducing sawflies (2000) Proc. Natl. Acad. Sci. Unit. States Am., 97, pp. 13184-13187
  • Nyman, T., Widmer, A., Roininen, H., Evolution of gall morphology and host-plant relationships in willow-feeding sawflies (hymenoptera: Tenthredinidae) (2000) Evolution, 54, pp. 526-533
  • Oliveira, D., Isaias, R., Fernandes, G., Ferreira, B., Carneiro, R., Fuzaro, L., Manipulation of host plant cells and tissues by gall-inducing insects and adaptive strategies used by different feeding guilds (2016) J. Insect Physiol., 84, pp. 103-113
  • Oliveira, D.C.D., Isaias, R.M.D.S., Moreira, A.S.F.P., Magalhães, T.A., Lemos-Filho, J.P.D., Is the oxidative stress caused by Aspidosperma spp. galls capable of altering leaf photosynthesis? (2011) Plant Sci., 180, pp. 489-495
  • Pascual-Alvarado, E., Cuevas-Reyes, P., Quesada, M., Oyama, K., Interactions between galling insects and leaf-feeding insects: the role of plant phenolic compounds and their possible interference with herbivores (2008) J. Trop. Ecol., 24, pp. 329-336
  • Patankar, R., Thomas, S.C., Smith, S.M., A gall-inducing arthropod drives declines in canopy tree photosynthesis (2011) Oecologia, 167, pp. 701-709
  • Quideau, S., Deffieux, D., Douat-Casassus, C., Pouysegu, L., ChemInform abstract: plant polyphenols: chemical properties, biological activities, and synthesis (2011) ChemInform, 42
  • Raman, A., Morphogenesis of insect-induced plant galls: facts and questions (2011) Flora - Morphol. Distrib. Funct. Ecol. Plants, 206, pp. 517-533
  • Ricco, R.A., Agudelo, I.J., Wagner, M.L., Métodos empleados en el análisis de los polifenoles en un laboratorio de baja complejidad (2015) Lilloa, 52 (2), pp. 161-174. , 2015
  • Ryan, K.G., Swinny, E.E., Markham, K.R., Winefield, C., Flavonoid gene expression and UV photoprotection in transgenic and mutant Petunia leaves (2002) Phytochemistry, 59, pp. 23-32
  • Simões-Pires, C.A., Queiroz, E.F., Henriques, A.T., Hostettmann, K., Isolation and on-line identification of anti-oxidant compounds from three Baccharis species by HPLC-UV-MS/MS with post-column derivatisation (2005) Phytochem. Anal., 16, pp. 307-314
  • Shorthouse, J.D., Biology of Insect Induced Galls (1992), Oxford Univ. Press New York; Shorthouse, J.D., Wool, D., Raman, A., Gall-inducing insects – nature's most sophisticated herbivores (2005) Basic Appl. Ecol., 6, pp. 407-411
  • Simmonds, M.S., Flavonoid–insect interactions: recent advances in our knowledge (2003) Phytochemistry, 64, pp. 21-30
  • Simmonds, M.S., Importance of flavonoids in insect–plant interactions: feeding and oviposition (2001) Phytochemistry, 56, pp. 245-252
  • Stone, G.N., Schönrogge, K., The adaptive significance of insect gall morphology (2003) Trends Ecol. Evol., 18, pp. 512-522
  • Stone, G.N., Cook, J.M., The structure of cynipid oak galls: patterns in the evolution of an extended phenotype (1998) Proc. Biol. Sci., 265, pp. 979-988
  • Taper, M.L., Case, T.J., Interactions between oak tannins and parasite community structure: unexpected benefits of tannins to cynipid gall-wasps (1987) Oecologia, 71, pp. 254-261
  • Tooker, J.F., Rohr, J.R., Abrahamson, W.G., Moraes, C.M.D., Gall insects can avoid and alter indirect plant defenses (2008) New Phytol., 178, pp. 657-671
  • Waterman, P.G., Mole, S., Analysis of Phenolic Plant Metabolites (1994), Blackwell Scientific Oxford; Yeats, T.H., Rose, J.K.C., The Formation and function of plant cuticles (2013) Plant Physiol., 163, pp. 5-20

Citas:

---------- APA ----------
Agudelo, I., Cogoi, L., Filip, R., Kuzmanich, N., Wagner, M.L. & Ricco, R.A. (2018) . Anatomy, histochemistry, and comparative analysis of hydroxycinnamic derivatives in healthy leaves and galls induced by Baccharopelma spp. (Hemiptera: Psyllidae) in Baccharis spicata (Lam) Baill (Asteraceae). Biochemical Systematics and Ecology, 77, 22-30.
http://dx.doi.org/10.1016/j.bse.2018.01.001
---------- CHICAGO ----------
Agudelo, I., Cogoi, L., Filip, R., Kuzmanich, N., Wagner, M.L., Ricco, R.A. "Anatomy, histochemistry, and comparative analysis of hydroxycinnamic derivatives in healthy leaves and galls induced by Baccharopelma spp. (Hemiptera: Psyllidae) in Baccharis spicata (Lam) Baill (Asteraceae)" . Biochemical Systematics and Ecology 77 (2018) : 22-30.
http://dx.doi.org/10.1016/j.bse.2018.01.001
---------- MLA ----------
Agudelo, I., Cogoi, L., Filip, R., Kuzmanich, N., Wagner, M.L., Ricco, R.A. "Anatomy, histochemistry, and comparative analysis of hydroxycinnamic derivatives in healthy leaves and galls induced by Baccharopelma spp. (Hemiptera: Psyllidae) in Baccharis spicata (Lam) Baill (Asteraceae)" . Biochemical Systematics and Ecology, vol. 77, 2018, pp. 22-30.
http://dx.doi.org/10.1016/j.bse.2018.01.001
---------- VANCOUVER ----------
Agudelo, I., Cogoi, L., Filip, R., Kuzmanich, N., Wagner, M.L., Ricco, R.A. Anatomy, histochemistry, and comparative analysis of hydroxycinnamic derivatives in healthy leaves and galls induced by Baccharopelma spp. (Hemiptera: Psyllidae) in Baccharis spicata (Lam) Baill (Asteraceae). Biochem. Syst. Ecol. 2018;77:22-30.
http://dx.doi.org/10.1016/j.bse.2018.01.001