Artículo

Este artículo es de Acceso Abierto y puede ser descargado en su versión final desde nuestro repositorio
Consulte el artículo en la página del editor
Consulte la política de Acceso Abierto del editor

Abstract:

A cytoplasmically inherited chlorophyll-deficient mutant of barley (Hordeum vulgare) termed cytoplasmic line 3 (CL3), displaying a viridis (homogeneously light-green colored) phenotype, has been previously shown to be affected by elevated temperatures. In this article, biochemical, biophysical, and molecular approaches were used to study the CL3 mutant under different temperature and light conditions. The results lead to the conclusion that an impaired assembly of photosystem I (PSI) under higher temperatures and certain light conditions is the primary cause of the CL3 phenotype. Compromised splicing of ycf3 transcripts, particularly at elevated temperature, resulting from a mutation in a noncoding region (intron 1) in the mutant ycf3 gene results in a defective synthesis of Ycf3, which is a chaperone involved in PSI assembly. The defective PSI assembly causes severe photoinhibition and degradation of PSII. © 2009 American Society of Plant Biologists.

Registro:

Documento: Artículo
Título:A cytoplasmically inherited barley mutant is defective in photosystem I assembly due to a temperature-sensitive defect in ycf3 splicing
Autor:Landau, A.M.; Lokstein, H.; Scheller, H.V.; Lainez, V.; Maldonado, S.; Prina, A.R.
Filiación:Instituto de Genética E.A. Favret, Centro de Investigaciones en Ciencias Veterinarias y Agronómicas, Instituto Nacional de Tecnología Agropecuaria, B1712WAA Castelar, Province of Buenos Aires, Argentina
Institut für Biochemie und Biologie, Universität Potsdam, D-14476 Potsdam-Golm, Germany
Department of Plant Biology and Biotechnology, University of Copenhagen, DK-1871 Frederiksberg C, Denmark
Joint Bioenergy Institute, Emeryville, CA 94608, United States
Consejo Nacional de Investigaciones Científicas y Técnicas, Departamento de Biodiversidad y Biología Experimental, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, C1428EGA Buenos Aires, Argentina
Instituto de Recursos Biológicos, Centro de Investigación de Recursos Naturales, Instituto Nacional de Tecnología Agropecuaria, B1712WAA Castelar, Province of Buenos Aires, Argentina
Palabras clave:messenger RNA; pigment; plant extract; vegetable protein; article; barley; chloroplast; cytoplasm; gene expression regulation; genetics; germination; growth, development and aging; immunoblotting; inheritance; metabolism; mutation; nucleotide sequence; phenotype; photochemistry; photosynthesis; photosystem I; plant gene; RNA splicing; seedling; spectrofluorometry; temperature; thylakoid; ultrastructure; Base Sequence; Chloroplasts; Cytoplasm; Gene Expression Regulation, Plant; Genes, Plant; Germination; Hordeum; Immunoblotting; Inheritance Patterns; Mutation; Phenotype; Photochemistry; Photosynthesis; Photosystem I Protein Complex; Pigments, Biological; Plant Extracts; Plant Proteins; RNA Splicing; RNA, Messenger; Seedling; Spectrometry, Fluorescence; Temperature; Thylakoids; Hordeum; Hordeum vulgare
Año:2009
Volumen:151
Número:4
Página de inicio:1802
Página de fin:1811
DOI: http://dx.doi.org/10.1104/pp.109.147843
Título revista:Plant Physiology
Título revista abreviado:Plant Physiol.
ISSN:00320889
CODEN:PLPHA
CAS:Photosystem I Protein Complex; Pigments, Biological; Plant Extracts; Plant Proteins; RNA, Messenger
PDF:https://bibliotecadigital.exactas.uba.ar/download/paper/paper_00320889_v151_n4_p1802_Landau.pdf
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00320889_v151_n4_p1802_Landau

Referencias:

  • Al-Khatib, K., Paulsen, G.M., High-temperature effects on photosyn-thetic processes in temperate and tropical cereals (1999) Crop Sci, 39, pp. 119-125
  • Antonkine, M.L., Jordan, P., Fromme, P., Krauss, N., Golbeck, J.H., Stehlik, D., Assembly of protein subunits within the stromal ridge of pho-tosystem I: Structural changes between unbound and sequentially PSI-bound polypeptides and correlated changes of the magnetic properties of the terminal iron sulfur clusters (2003) J Mol Biol, 327, pp. 671-697
  • Berry, J., Bjorkman, O., Photosynthetic response and adaptation to temperature in higher plants (1980) Annu Rev Plant Physiol, 31, pp. 491-543
  • Boudreau, E., Takahashi, Y., Lemieux, C., Turmel, M., Rochaix, J.D., The chloroplast ycf3 and ycf4 open reading frames of Chlamydomonas reinhardtii are required for the accumulation of the photosystem I complex (1997) EMBO J, 16, pp. 6095-6104
  • Chenna, R., Sugawara, H., Koike, T., Lopez, R., Gibson, T.J., Higgins, D.G., Thompson, J.D., Multiple sequence alignment with the Clustal series of programs (2003) Nucleic Acids Res, 31, pp. 3497-500
  • Chitnis, P.R., Photosystem I: Function and physiology (2001) Annu Rev Plant Physiol Plant Mol Biol, 52, pp. 593-626
  • Choquet, Y., Vallon, O., Synthesis, assembly and degradation of thylakoid membrane proteins (2000) Biochimie, 82, pp. 615-634
  • Chu, V.T., Adamidi, C., Liu, Q., Perlman, P.S., Pyle, A.M., Control of branch-site choice by a group II intron (2001) EMBO J, 20, pp. 6866-6876
  • de Longevialle, A.F., Hendrickson, L., Taylor, N.L., Delannoy, E., Lurin, C., Badger, M., Millar, A.H., Small, I., The pentatricopeptide repeat gene OTP51 with two LAGLIDADG motifs is required for the cis-splicing of plastid ycf3 intron 2 in Arabidopsis thaliana (2008) Plant J, 56, pp. 157-168
  • Fang, G., Hammar, S., Grumet, R., A quick and inexpensive method for removing polysaccharides from plant genomic DNA (1992) Biotechniques, 56, pp. 52-54
  • Fromme, P., Jordan, P., Krauss, N., Structure of photosystem I (2001) Biochim Biophys Acta, 1507, pp. 5-31
  • Guiamét, J.J., Tyystjarvi, E., Tyystjarvi, T., John, I., Kairavuo, M., Pichersky, P., Noodén, L.D., Photoinhibition and loss of photosystem II reaction center proteins during senescence of soybean leaves: Enhancement of photoinhibition by the "stay-green" mutation cytG (2002) Physiol Plant, 115, pp. 468-478
  • Gustafsson, A., The plastid development in various types of chloro-phyll mutations (1942) Hereditas, 28, pp. 483-492
  • Haldrup, A., Lunde, C., Scheller, H.V., Arabidopsis thaliana plants lacking the PSI-D subunit of photosystem I suffer severe photoinhibition, have unstable photosystem I complexes, and altered redox homeostasis in the chloroplast stroma (2003) J Biol Chem, 278, pp. 33276-33283
  • Haldrup, A., Naver, H., Scheller, H.V., The interaction between plasto-cyanin and photosystem I is inefficient in transgenic Arabidopsis plants lacking the PSI-N subunit of photosystem I (1999) Plant J, 17, pp. 689-698
  • Haldrup, A., Simpson, D.J., Scheller, H.V., Down-regulation of the PSI-F subunit of photosystem I (PSI) in Arabidopsis thaliana (2000) J Biol Chem, 275, pp. 31211-31218
  • Hansson, A., Amann, K., Zygadlo, A., Meurer, J., Scheller, H.V., Jensen, P.E., Knock-out of the chloroplast-encoded PSI-J subunit of photosys-tem I in Nicotiana tabacum: PSI-J is required for efficient electron transfer and stable accumulation of photosystem I (2007) FEBS J, 274, pp. 1734-1746
  • Hess, W.R., Borner, T., Organellar RNA polymerases of higher plants (1999) Int Rev Cytol, 190, pp. 1-59
  • Ihnatowicz, A., Pesaresi, P., Leister, D., The E subunit of photosystem I is not essential for linear electron flow and photoautotrophic growth in Arabidopsis thaliana (2007) Planta, 226, pp. 889-895
  • Ihnatowicz, A., Pesaresi, P., Varotto, C., Richly, E., Schneider, A., Jahns, P., Salamini, F., Leister, D., Mutants for photosystem I subunit D of Arabidopsis thaliana: Effects on photosynthesis, photosystem I stability and expression of nuclear genes for chloroplast functions (2004) Plant J, 37, pp. 839-852
  • Jensen, P.E., Bassi, R., Boekema, E.J., Dekker, J.P., Jansson, S., Leister, D., Robinson, C., Scheller, H.V., Structure, function and regulation of plant photosystem I (2007) Biochim Biophys Acta, 1767, pp. 335-352
  • Karcher, D., Bock, R., Temperature sensitivity of RNA editing and intron splicing reactions in the plastid ndhB transcript (2002) Curr Genet, 41, pp. 48-52
  • Leon, P., Arroyo, A., Mackenzie, S., Nuclear control of plastid and mitochondrial development in higher plants (1998) Annu Rev Plant Physiol Plant Mol Biol, 49, pp. 453-480
  • Li, N., Zhao, J., Warren, P.V., Warden, J.T., Bryant, D.A., Golbeck, J.H., PsaD is required for the stable binding of PsaC to the photosystem I core protein of Synechococcus sp. PCC 6301 (1991) Biochemistry, 30, pp. 7863-7872
  • Lokstein, H., Tian, L., Polle, J., Dellapenna, D., Xanthophyll biosynthetic mutants of Arabidopsis thaliana: Altered nonphotochemical quenching of chlorophyll fluorescence is due to changes in photosystem II antenna size and stability (2002) Biochim Biophys Acta, 1553, pp. 309-319
  • Maier, R.M., Neckermann, K., Igloi, G.L., Kossel, H., Complete sequence of the maize chloroplast genome: Gene content, hotspots of divergence and fine tuning of genetic information by transcript editing (1995) J Mol Biol, 251, pp. 614-628
  • Mannan, R.M., Whitmarsh, J., Nyman, P., Pakrasi, H.B., Directed muta-genesis of an iron-sulfur protein of the photosystem I complex in the filamentous cyanobacterium Anabaena variabilis ATCC 29413 (1991) Proc Natl Acad Sci USA, 88, pp. 10168-10172
  • Michel, F., Ferat, J.L., Structure and activities of group II introns (1995) Annu Rev Biochem, 64, pp. 435-461
  • Naver, H., Boudreau, E., Rochaix, J.D., Functional studies of Ycf3: Its role in assembly of photosystem I and interactions with some of its subunits (2001) Plant Cell, 13, pp. 2731-2745
  • Naver, H., Haldrup, A., Scheller, H.V., Cosuppression of photosystem I subunit PSI-H in Arabidopsis thaliana: Efficient electron transport and stability of photosystem I is dependent upon the PSI-H subunit (1999) J Biol Chem, 274, pp. 10784-10789
  • Naver, H., Scott, M.P., Andersen, B., Møller, B.L., Scheller, H.V., Recon-stitution of barley photosystem I reveals that the N-terminus of the PSI-D subunit is essential for tight binding of PSI-C (1995) Physiol Plant, 95, pp. 19-26
  • Nelson, N., Yocum, C.F., Structure and function of photosystems I and II (2006) Annu Rev Plant Biol, 57, pp. 521-565
  • Pesaresi, P., Lunde, C., Jahns, P., Tarantino, D., Meurer, J., Varotto, C., Hirtz, R.D., et al, A stable LHCII-PSI aggregate and suppression of photosynthetic state transitions in the psae1-1 mutant of Arabidopsis thaliana (2002) Planta, 215, pp. 940-948
  • Prina, A.R., A mutator nuclear gene inducing a wide spectrum of cytoplasmically inherited chlorophyll deficiencies in barley (1992) Theor Appl Genet, 85, pp. 245-251
  • Prina, A.R., Mutator induced cytoplasmic mutants in barley: Genetic evidence of activation of a putative chloroplast transposon (1996) J Hered, 87, pp. 385-389
  • Prina, A.R., Maldonado, S., Arias, M.C., Colombo, N., Rios, R.D., Acevedo, A., Otegui, M., Mutator induced variability in barley (1996) Barley Genetics, 2, pp. 552-554. , In A Slinkard, G Scoles, B Rossnagel, eds, VII, Ed 2, University of Saskatchewan, Saskatoon, Canada
  • Ruf, S., Kossel, H., Tissue-specific and differential editing of the two ycf3 editing sites in maize plastids (1997) Curr Genet, 32, pp. 19-23
  • Ruf, S., Kossel, H., Bock, R., Targeted inactivation of a tobacco intron-containing open reading frame reveals a novel chloroplast-encoded photosystem I-related gene (1997) J Cell Biol, 139, pp. 95-102
  • Ruf, S., Zeltz, P., Kossel, H., Complete RNA editing of unspliced and dicistronic transcripts of the intron-containing reading frame IRF170 from maize chloroplasts (1994) Proc Natl Acad Sci USA, 91, pp. 2295-2299
  • Smillie, R.M., Henningsen, K.W., Bain, J.M., Critchley, C., Fester, T., von Wettstein, D., Mutants of barley heat-sensitive for chloroplast development (1978) Carlsberg Res Commun, 43, pp. 351-364
  • Takahashi, Y., Goldschmidt-Clermont, M., Soen, S.Y., Franzén, L.G., Rochaix, J.D., Directed chloroplast transformation in Chlamydomonas reinhardtii: Insertional inactivation of the psaC gene encoding the iron sulfur protein destabilizes photosystem I (1991) EMBO J, 10, pp. 2033-2040
  • Takeuchi, T.S., Thornber, J.P., Heat-induced alterations in thylakoid membrane protein composition in barley (1994) Aust J Plant Physiol, 21, pp. 759-770
  • Taylor, W.C., Barkan, A., Martienssen, R.A., Use of nuclear mutants in the analysis of chloroplast development (1987) Dev Genet, 8, pp. 305-320
  • Tjus, S.E., Scheller, H.V., Andersson, B., Møller, B.L., Active oxygen produced during selective excitation of photosystem I is damaging not only to photosystem I but also to photosystem II (2001) Plant Physiol, 125, pp. 2007-2015
  • von Wettstein, D., Nuclear and cytoplasmic factors in development of chloroplast structure and function (1961) Can J Bot, 39, pp. 1537-1545
  • von Wettstein, D., Gough, S., Kannangara, C.G., Chlorophyll biosyn-thesis (1995) Plant Cell, 7, pp. 1039-1067
  • Xu, Q., Hoppe, D., Chitnis, V.P., Odom, W.R., Guikema, J.A., Chitnis, P.R., Mutational analysis of photosystem I polypeptides in the cyanobacte-rium Synechocystis sp. PCC 6803 (1995) J Biol Chem, 270, pp. 16243-16250
  • Zuker, M., Stiegler, P., Optimal computer folding of large RNA sequences using thermodynamics and auxiliary information (1981) Nucleic Acids Res, 9, pp. 133-148

Citas:

---------- APA ----------
Landau, A.M., Lokstein, H., Scheller, H.V., Lainez, V., Maldonado, S. & Prina, A.R. (2009) . A cytoplasmically inherited barley mutant is defective in photosystem I assembly due to a temperature-sensitive defect in ycf3 splicing. Plant Physiology, 151(4), 1802-1811.
http://dx.doi.org/10.1104/pp.109.147843
---------- CHICAGO ----------
Landau, A.M., Lokstein, H., Scheller, H.V., Lainez, V., Maldonado, S., Prina, A.R. "A cytoplasmically inherited barley mutant is defective in photosystem I assembly due to a temperature-sensitive defect in ycf3 splicing" . Plant Physiology 151, no. 4 (2009) : 1802-1811.
http://dx.doi.org/10.1104/pp.109.147843
---------- MLA ----------
Landau, A.M., Lokstein, H., Scheller, H.V., Lainez, V., Maldonado, S., Prina, A.R. "A cytoplasmically inherited barley mutant is defective in photosystem I assembly due to a temperature-sensitive defect in ycf3 splicing" . Plant Physiology, vol. 151, no. 4, 2009, pp. 1802-1811.
http://dx.doi.org/10.1104/pp.109.147843
---------- VANCOUVER ----------
Landau, A.M., Lokstein, H., Scheller, H.V., Lainez, V., Maldonado, S., Prina, A.R. A cytoplasmically inherited barley mutant is defective in photosystem I assembly due to a temperature-sensitive defect in ycf3 splicing. Plant Physiol. 2009;151(4):1802-1811.
http://dx.doi.org/10.1104/pp.109.147843