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  3. Phytopathogenic Mollicutes

Phytopathogenic Mollicutes

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Phytopathogenic Mollicutes

  • Year: 2019
  • Volume: 9
  • Issue: 1
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  • Year: 2019
  • Volume: 9
  • Issue: 1

Table of Contents

  • RESEARCH NOTE

    The phytoplasma classification between ‘Candidatus species’ provisional status and ribosomal grouping system
    • Author: Assunta Bertaccini
    • DOI: 10.5958/2249-4677.2019.00001.X
  • RESEARCH ARTICLE

    Molecular identification of phytoplasmas in ornamental pomegranates in Turkey
    • Author: Kadriye Çaglayan, Mona Gazel, Mehtap Acioglu, Hamide Deniz Kocabag, Hikmet Murat Sipahioglu
    • DOI: 10.5958/2249-4677.2019.00002.1
  • Molecular identification of ‘Candidatus Phytoplasma oryzae’ in Garcinia gummi-gutta in India
    • Author: Surabhi Mitra, Radhika Nurani Subramanian, Smriti Mall, Govind Pratap Rao
    • DOI: 10.5958/2249-4677.2019.00003.3
  • First report of a ‘Candidatus Phytoplasma aurantifolia’-related strain in Citrus macrophylla in Oman
    • Author: Ali M. Al-Subhi, Rashid A. Al-Yahyai, Abdullah M. Al-Sadi
    • DOI: 10.5958/2249-4677.2019.00004.5
  • Molecular detection of phytoplasmas infecting date palm in Saudi Arabia and Jordan
    • Author: Khalid Alhudaib, Abeer Abu Shirbi, Ibtihal Abu Obaid, Jihad Haddadeen, Hani Ghnaim, Ruba Alomari
    • DOI: 10.5958/2249-4677.2019.00005.7
  • A new elm yellows phytoplasma strain associated with leaf yellowing disease of Tamarindus indica in India
    • Author: Kiran Kirdat, Vipool Thorat, Amit Yadav
    • DOI: 10.5958/2249-4677.2019.00006.9
  • New host plants and distribution areas of ‘Candidatus Phytoplasma omanense’-related strains in Iran
    • Author: Seyyed Alireza Esmaeilzadeh-Hosseini, Ghobad Babaei, Eleonora Satta, Assunta Bertaccini
    • DOI: 10.5958/2249-4677.2019.00007.0
  • New diseases associated with 16SrIII-J phytoplasmas in Chile
    • Author: Nicolás Quiroga, Gabriela Medina, Alan Zamorano, Ivette Acuña, Rosa Piña, Nicola Fiore
    • DOI: 10.5958/2249-4677.2019.00008.2
  • The first steps towards investigating the molecular epidemiology of Stylosanthes little leaf phytoplasma in Australia
    • Author: Bianca Rodrigues Jardim, Wycliff M. Kinoti, Lucy T.T. Tran-Nguyen, Cherie Gambley, Brendan Rodoni, Fiona E. Constable
    • DOI: 10.5958/2249-4677.2019.00009.4
  • Unveiling subgroups of 16SrIII phytoplasmas affecting Trillium sp. and Melothria pendula in Brazil and Canada
    • Author: Helena Guglielmi Montano, Yaima Arocha Rosete
    • DOI: 10.5958/2249-4677.2019.00010.0
  • ‘Candidatus Phytoplasma asteris’ host species in Costa Rica
    • Author: William Villalobos, Teresita Coto-Morales, Izayana Sandoval-Carvajal, Laura Garita, Mauricio Montero-Astúa, Lisela Moreira
    • DOI: 10.5958/2249-4677.2019.00011.2
  • Detection of a possible insect vector and alternative host plants for the sesame phyllody phytoplasma in Assam, India
    • Author: Shankar Hemanta Gogoi, Jutimala Phookan, Palash Deb Nath, Manoj Kumar Kalita
    • DOI: 10.5958/2249-4677.2019.00012.4
  • Molecular identification of phytoplasmas in Russian vineyards
    • Author: Elena Porotikova, Eugenia Yurchenko, Svetlana Vinogradova
    • DOI: 10.5958/2249-4677.2019.00013.6
  • Molecular study of a phytoplasma associated with safflower fasciation in Iran
    • Author: Hadi Mahmoudi, Mohammad Salari, Maryam Ghayeb Zamharir, Morteza Ghorbani
    • DOI: 10.5958/2249-4677.2019.00014.8
  • New additions to the list of phytoplasma plant host species in Brazil
    • Author: Helena Guglielmi Montano, João Pimentel
    • DOI: 10.5958/2249-4677.2019.00015.X
  • Phytoplasmas infecting greenhouse cucumber in Iran
    • Author: Seyyed Alireza Esmaeilzadeh-Hosseini, Ghobad Babaei, Sudabe Purmohamadi, Assunta Bertaccini
    • DOI: 10.5958/2249-4677.2019.00016.1
  • Novel aster yellows phytoplasma subgroup associated with sandalwood spike disease in Kerala, India
    • Author: Kiran Kirdat, Ramachandran Sundararaj, Soma Mondal, Mustipally K. Reddy, Vipool Thorat, Amit Yadav
    • DOI: 10.5958/2249-4677.2019.00017.3
  • Network analyses of a global Hemiptera-phytoplasma-plant biological interactions database
    • Author: Valeria Trivellone, Cesar O. Flores Garcia
    • DOI: 10.5958/2249-4677.2019.00018.5
  • High genetic diversity of ‘Candidatus Phytoplasma solani’ infecting pepper in Serbia
    • Author: Jelena Jovic, Ivo Toševski, Oliver Krstic, Miljana Jakovljevic, Andrea Kosovac, Tatjana Cvrkovic, Milana Mitrovic
    • DOI: 10.5958/2249-4677.2019.00019.7
  • New insights on “bois noir” epidemiology in the Chianti Classico area, Tuscany
    • Author: Roberto Pierro, Alberto Materazzi, Andrea Luvisi, Fabio Quaglino, Augusto Loni, Andrea Lucchi, Alessandra Panattoni
    • DOI: 10.5958/2249-4677.2019.00020.3
  • A study on the epidemiology and the vector transmission of ‘Candidatus Phytoplasma prunorum’
    • Author: Monika Riedle-Bauer, Caroline Paleskic, Juliana Schwanzer, Maria Kölber, Karl Bachinger, Christina Schönhuber, Rita Elek, Josef Stradinger, Michael Emberger, Christian Engel, Miklós Makay, Ferenc Zajcsek, Günter Brader
    • DOI: 10.5958/2249-4677.2019.00021.5
  • Looking for wild plant reservoirs and potential insect vectors for ‘Candidatus Phytoplasma solani’ in “bois noir”-affected vineyards in Bekaa valley-Lebanon
    • Author: Elia Choueiri, Pascal Salar, Fouad Jreijiri, Samer Wakim, Jean-Luc Danet, Xavier Foissac
    • DOI: 10.5958/2249-4677.2019.00022.7
  • Epidemiological aspects of phytoplasma diseases in a tropical country
    • Author: Liliana Franco-Lara
    • DOI: 10.5958/2249-4677.2019.00023.9
  • Relationship between climatic and environmental variables and the phytoplasmas detected in Quercus humboldtii in Bogotà, Colombia
    • Author: Julián Lamilla, Cindy Solano, Liliana Franco-Lara
    • DOI: 10.5958/2249-4677.2019.00024.0
  • Towards the evaluation of potential insect vectors of phytoplasmasinfecting hazelnut plants in Slovenia
    • Author: Nataša Mehle, Marina Dermastia
    • DOI: 10.5958/2249-4677.2019.00025.2
  • Occurrence of ‘Candidatus Phytoplasma ulmi’ in native elm trees in Germany
    • Author: Bernd Schneider, Michael Kube
    • DOI: 10.5958/2249-4677.2019.00026.4
  • Are phytoplasmas associated with dieback symptoms of Fraxinus in France?
    • Author: Marianne Loiseau, Marie Massot, Pascaline Cousseau-Suhard, Xavier Foissac, Dominique Piou, Cécile Robin
    • DOI: 10.5958/2249-4677.2019.00027.6
  • Phytoplasmas detected in insects and spontaneous vegetation near vineyards with yellows diseases in Italy
    • Author: Samanta Paltrinieri, Yuri Zambon, Nicola Mori, Alessandro Canel, Assunta Bertaccini, Nicoletta Contaldo
    • DOI: 10.5958/2249-4677.2019.00028.8
  • Alder yellows phytoplasmas in Alnus species in Serbia
    • Author: Milena Marjanovic, Jelena Stepanovic, Emil Rekanovic, Michael Kube, Bojan Duduk
    • DOI: 10.5958/2249-4677.2019.00029.X
  • Study of the epidemiology of “flavescence dorée”(FD)-related phytoplasmas and potential vectors in a FD-free area
    • Author: Barbara Jarausch, Sandra Biancu, Friederike Lang, Delphine Desqué, Pascal Salar, Wolfgang Jarausch, Xavier Foissac, Sylvie Malembic-Maher, Michael Maixner
    • DOI: 10.5958/2249-4677.2019.00030.6
  • Sporadic outbreaks of “flavescence dorée” in Austrian vineyards and the role of Phlogottetix cyclops as a potential vector
    • Author: Helga Reisenzein, Gudrun Strauss
    • DOI: 10.5958/2249-4677.2019.00031.8
  • Status of grapevine “flavescence dorée” in Hungary
    • Author: Éva Kriston, László Krizbai, Emõke Juhász, George Melika
    • DOI: 10.5958/2249-4677.2019.00032.X
  • Polymorphism of rplF and tufB genes: expanding the MLST scheme for “flavescence dorée” phytoplasma typing in Croatia
    • Author: Ivan Knezovic, Jelena Plavec, Xavier Foissac, Martina Šeruga Music
    • DOI: 10.5958/2249-4677.2019.00033.1
  • Potential role of Orientus ishidae in the “flavescence dorée” epidemics in Ticino, Switzerland
    • Author: Mauro Jermini, Marco Conedera, Attilio Rizzoli, Elena Belgeri, Luisa Filippin, Elisa Angelini
    • DOI: 10.5958/2249-4677.2019.00034.3
  • Impact of Orientus ishidae on “flavescence dorée” emergence in the vineyards of riparian ecosystems
    • Author: Delphine Desqué, Pascal Salar, Jean-Luc Danet, Thierry Lusseau, Christophe Garcion, Etienne Moreau, Christine Dubus, Jocelyn Dureuil, Lionel Delbac, Delphine Binet, Arthur Auriol, Denis Thiéry, Xavier Foissac, Sylvie Malembic-Maher
    • DOI: 10.5958/2249-4677.2019.00035.5
  • Integrated management of the vineyard ecosystem for the control of the “flavescence dorée” disease
    • Author: Esmeraldina Sousa, Miguel Chaves, Francisco Pereira, Célia Mateus, Isabel Calha, Margarida Teixeira, Paulo Godinho, Lino Oliveira, Jordi Sabaté
    • DOI: 10.5958/2249-4677.2019.00036.7
  • Genomic similarities among 16SrI phytoplasmas and implications on species boundaries
    • Author: Shu-Ting Cho, Hung-Jui Kung, Chih-Horng Kuo
    • DOI: 10.5958/2249-4677.2019.00037.9
  • Development of an anti-Imp serological assay for the detection of “flavescence dorée” phytoplasmas in grapevine, insect vectors and host plants
    • Author: Luisa Filippin, Valeria Trivellone, Luciana Galetto, Cristina Marzachí, Vito Elicio, Elisa Angelini
    • DOI: 10.5958/2249-4677.2019.00038.0
  • Development of an endogenous universal internal control for qPCR applications and the importance of different evaluation criteria
    • Author: Cecilia Mittelberger, Lisa Obkircher, Vicky Oberkofler, Alan Ianeselli, Christine Kerschbamer, Katrin Janik
    • DOI: 10.5958/2249-4677.2019.00039.2
  • Near-infrared spectroscopy analysis-a useful tool to detect apple proliferation diseased trees?
    • Author: Dana Barthel, Stefanie Fischnaller, Daniela Eisenstecken, Christine Kerschbamer, Manuel Messner, Nikola Dordevic, Peter Robatscher, Katrin Janik
    • DOI: 10.5958/2249-4677.2019.00040.9
  • New phytoplasma subgroups within the 16SrI and 16SrVII groups detected in trees of Bogotá, Colombia
    • Author: Jennifer A. García Barracaldo, Julian R. Lamilla Monje, Liliana Franco-Lara
    • DOI: 10.5958/2249-4677.2019.00041.0
  • Phytoplasma detection and quantification: Make it easy
    • Author: Claudio Ratti, Stefano Minguzzi, Chiara Lanzoni, Carlo Poggi Pollini, Massimo Turina
    • DOI: 10.5958/2249-4677.2019.00042.2
  • Proposal to establish a common taxon for 16SrV-C and 16SrV-D phytoplasmas and three genetic clades based on combined 16S rDNA signatures and variability of housekeeping genes
    • Author: Xavier Foissac, Pascal Salar, Chrystel Olivier, Sylvie Malembic-Maher
    • DOI: 10.5958/2249-4677.2019.00043.4
  • A universal PCR assay amplifying the unique malic enzyme of phytoplasmas
    • Author: Rafael Toth, Erich Seemüller, Michael Kube
    • DOI: 10.5958/2249-4677.2019.00044.6
  • Use of 12p and 36p genes as molecular markers in support of subgroup identification of two 16SrXIII phytoplasmas associated with strawberry phyllody in Chile
    • Author: Weier Cui, Nicolás Quiroga, Assunta Bertaccini, Alan Zamorano, Nicola Fiore
    • DOI: 10.5958/2249-4677.2019.00045.8
  • Use of mitochondrial divergence in plant-specialized populations of Hyalesthes obsoletus for identification of ‘Candidatus Phytoplasma solani’ epidemiology
    • Author: Jelena Jovic
    • DOI: 10.5958/2249-4677.2019.00046.X
  • Multilocus sequence analysis for detection of finer genetic variation and phylogenetic interrelatedness in 16SrI group phytoplasma strains infecting different plants in China
    • Author: Yu Shaoshuai, Caili Lin, Guozhong Tian, Weiwei Song, Qinghua Tang, Yenan Wang, Wei Yan, Weiquan Qin
    • DOI: 10.5958/2249-4677.2019.00047.1
  • Phytoplasma cultivation: lights and shadows
    • Author: Nicoletta Contaldo, Assunta Bertaccini
    • DOI: 10.5958/2249-4677.2019.00048.3
  • Searching for the vectors of coconut lethal yellowing: a 50 year unfinished journey
    • Author: Michael Wilson
    • DOI: 10.5958/2249-4677.2019.00049.5
  • Investigations on pear psyllids as vectors of ‘Candidatus Phytoplasma pyri’ in Austria
    • Author: Monika Riedle-Bauer, Caroline Paleskic, Günter Brader
    • DOI: 10.5958/2249-4677.2019.00050.1
  • Monitoring psyllid vectors of apple proliferation in South Tyrol (Italy): a multi-year survey
    • Author: Stefanie Fischnaller, Martin Path, Manuel Messner, Evi Mitterrutzner, Cecilia Mittelberger, Robert Stocker, Katrin Janik
    • DOI: 10.5958/2249-4677.2019.00051.3
  • Can polyphagous insect vectors contribute to phytoplasma inventory in diverse ecosystems?
    • Author: Miljana Jakovljevic, Jelena Jovic, Oliver Krstic, Milana Mitrovic, Slavica Marinkovic, Ivo Toševski, Tatjana Cvrkovic
    • DOI: 10.5958/2249-4677.2019.00052.5
  • Molecular identification and characterization of phytoplasmas in insect vectors of chickpea phyllody disease in Punjab, Pakistan
    • Author: Jam Nazeer Ahmad, Muhammad Zahid Sharif, Samina Jam Nazeer Ahmad, Muhammad Tahir, Assunta Bertaccini
    • DOI: 10.5958/2249-4677.2019.00053.7
  • Identification of sesame phyllody transmitting insect vectors in Assam, India
    • Author: Jutimala Phookan, Manoj Kumar Kalita, Sahidur Rahman, Shankar Hemanta Gogoi, Palash Deb Nath
    • DOI: 10.5958/2249-4677.2019.00054.9
  • Experimental and molecular evidence of Neoaliturus fenestratus role in the transmission of “stolbur” phytoplasma to lettuce and carrot plants
    • Author: Milana Mitrovic, Valeria Trivellone, Tatjana Cvrkovic, Miljana Jakovljevic, Oliver Krstic, Jelena Jovic, Ivo Toševski
    • DOI: 10.5958/2249-4677.2019.00055.0
  • Genetic variability of Scaphoideus titanus populations and a new host plant of 16SrV group phytoplasmas in Bosnia and Herzegovina
    • Author: Zorana Miladinovic, Mariana Radulovic, Snjezana Hrncic, Duška Delic
    • DOI: 10.5958/2249-4677.2019.00056.2
  • Clematis vitalba-sourced ‘’flavescence dorée’’ phytoplasmas and Wolbachia in naturally infected populations of Dictyophara europaea
    • Author: Oliver Krstic, Tatjana Cvrkovic, Milana Mitrovic, Sanja Radonjic, Snjezana Hrncic, Ivo Toševski, Jelena Jovic
    • DOI: 10.5958/2249-4677.2019.00057.4
  • Phytoplasma inoculum titre and inoculation timing influence symptomdevelopment in newly infected plants
    • Author: Wei Wei, Yan Zhao, Robert E. Davis
    • DOI: 10.5958/2249-4677.2019.00058.6
  • “Flavescence dorée” phytoplasma has multiple ftsH genes showing hostdependent expression in both natural and experimental pathosystems
    • Author: Camille Jollard, Xavier Foissac, Delphine Desqué, Christophe Garcion, Frédérique Razan, Laure Béven, Sandrine Eveillard
    • DOI: 10.5958/2249-4677.2019.00059.8
  • Characterization of candidate effectors of “flavescence dorée” phytoplasma: expression and subcellular localization
    • Author: Christophe Garcion, Flavie Métais, Frédérique Razan, Xavier Foissac, Sandrine Eveillard, Sybille Duret, Brigitte Batailler, Nathalie Arricau-Bouvery
    • DOI: 10.5958/2249-4677.2019.00060.4
  • Role of membrane protein Imp of “flavescence dorée” phytoplasma in interaction with insect proteins: preliminary results
    • Author: Valeria Trivellone, Matteo Ripamonti, Elisa Angelini, Luisa Filippin, Marika Rossi, Cristina Marzachí, Luciana Galetto
    • DOI: 10.5958/2249-4677.2019.00061.6
  • The adhesin VmpA of the “flavescence dorée” phytoplasma binds insect cells in a lectin-like manner
    • Author: Sybille Duret, Marie-Pierre Dubrana, Xavier Foissac, Nathalie Arricau-Bouvery
    • DOI: 10.5958/2249-4677.2019.00062.8
  • Isolating intact phytoplasma particles from plants for sequencing applications and for testing host responses to phytoplasmas
    • Author: Nofar Assoline, Diego Santos-Garcia, Vered Naor, Ofir Bahar
    • DOI: 10.5958/2249-4677.2019.00063.X
  • Structural analysis of phyllogen, a phyllody-inducing effector, revealed the importance of two conserved-helices
    • Author: Yugo Kitazawa, Nozomu Iwabuchi, Kensaku Maejima, Hideyuki Miyatake, Masanobu Nishikawa, Ryosuke Tokuda, Kenro Oshima, Yasuyuki Yamaji, Shigetou Namba
    • DOI: 10.5958/2249-4677.2019.00064.1
  • Flower traits change in response to infection with ‘Candidatus Phytoplasma mali’ in Nicotiana tabacum as model system
    • Author: Doris L. Maurer, Leonie Dries, Anna-Lena Müller, Andreas Jürgens, Jürgen Gross, Mascha Bischoff
    • DOI: 10.5958/2249-4677.2019.00065.3
  • Small RNA profiling of aster yellows infected Catharanthus roseus plants
    • Author: Yuri Zambon, Nicoletta Contaldo, Assunta Bertaccini, Eva Varallyay
    • DOI: 10.5958/2249-4677.2019.00066.5
  • Small RNA analysis reveals different profiles among ‘Candidatus Phytoplasma mali’ strains in Malus x domestica cultivar Golden Delicious in vitro plants
    • Author: Mirko Moser, Elisa Asquini, Pier Luigi Bianchedi, Annamaria Ciccotti, Wolfgang Jarausch, Azeddine Si-Ammour
    • DOI: 10.5958/2249-4677.2019.00067.7
  • RNAi silencing to validate the role of insect genes in phytoplasma transmission
    • Author: Luciana Galetto, Matteo Ripamonti, Simona Abbà, Giulia Molinatto, Sabrina Palmano, Cristina Marzachì
    • DOI: 10.5958/2249-4677.2019.00068.9
  • Metabolic and physiological changes induced in Sesamum indicum infected by phytoplasmas
    • Author: Samina Jam Nazeer Ahmad, Naila Farid, Jam Nazeer Ahmad
    • DOI: 10.5958/2249-4677.2019.00069.0
  • A survey in carrot reveals a widespread aster yellows infection, and a first case of ‘Candidatus Liberibacter solanacearum’ in Belgium
    • Author: Kris De Jonghe, Inge De Roo, Thomas Goedefroit
    • DOI: 10.5958/2249-4677.2019.00070.7
  • Simultaneous evaluation of ‘Candidatus Phytoplasma’ and ‘Candidatus Liberibacter solanacearum’ seed transmission in carrot
    • Author: Gaia Carminati, Eleonora Satta, Samanta Paltrinieri, Assunta Bertaccini
    • DOI: 10.5958/2249-4677.2019.00071.9
  • Potato purple top disease in Ecuador
    • Author: Carmen I. Castillo Carrillo
    • DOI: 10.5958/2249-4677.2019.00072.0
  • Phloem limited bacteria: a threat to Khasi mandarin cultivation in Assam, India
    • Author: Subrata Bora, Shankar Hemanta Gogoi, Jutimala Phookan, Raaj Kumar Kakoti, Palash Deb Nath
    • DOI: 10.5958/2249-4677.2019.00073.2
  • Association of phytoplasmas with banana bunchy top viral disease in banana plants in Assam, India
    • Author: Shankar Hemanta Gogoi, Ranima Mishra, Palash Deb Nath
    • DOI: 10.5958/2249-4677.2019.00074.4
  • Mixed infection of virus and phytoplasma in gladiolus varieties in India
    • Author: Tasou Rihne, Manish Kumar, Yapalahalli Sathyanarayanappa Shreenath, Rajendra Prasad Pant, Aido Taloh, Kishan Swaroop, Govind Pratap Rao
    • DOI: 10.5958/2249-4677.2019.00075.6
  • Mixed infection among phytoplasmas, Potato virus Y and Cucumber mosaic virus in Xanthosoma plants in Assam, India
    • Author: Shankar Hemanta Gogoi, Palash Deb Nath, Ranima Mishra, Sheriful Alam
    • DOI: 10.5958/2249-4677.2019.00076.8
  • Coconut lethal yellowing disease and the Oryctes monoceros beetle: a joint venture against coconut production in Mozambique
    • Author: Joao Bila, Ana Mondjana, Luisa Santos, Nils Högberg
    • DOI: 10.5958/2249-4677.2019.00077.X
  • Ultrastructural analysis of spiroplasmas detected in palm species infected with the lethal yellowing phytoplasma from Yucatan and Baja California Sur, Mexico
    • Author: Vladimir Lebsky, Julio Hernandez, Aarón Barraza, Carlos Oropeza, Maria Narvaez, Angel Carrillo, Thelma Castellanos, Arevik Poghosyan
    • DOI: 10.5958/2249-4677.2019.00078.1
  • The chemistry of multitrophic interactions in phytoplasma disease systems and advances in control of psyllid vectors with semiochemicals
    • Author: Jürgen Gross, Bruna Czarnobai de Jorge, Jannicke Gallinger, Louisa Görg, Doris Maurer, Margit Rid
    • DOI: 10.5958/2249-4677.2019.00079.3
  • Optimal timing and sampling for a reliable assessment of the resistance of tomato varieties to ‘Candidatus Phytoplasma solani’
    • Author: Irina Zamorzaeva, Aighiuni Bahsiev, Lidia Tumanova
    • DOI: 10.5958/2249-4677.2019.00080.X
  • Evaluation of pomological traits of pear decline-resistant rootstocks
    • Author: Wolfgang Jarausch, Georg Henkel, Bernd Schneider, Erich Seemüller
    • DOI: 10.5958/2249-4677.2019.00081.1
  • Plasma activated water as a possible sustainable strategy towards grapevine yellows disease management
    • Author: Yuri Zambon, Nicoletta Contaldo, Romolo Laurita, Alessandro Canel, Matteo Gherardi, Vittorio Colombo, Assunta Bertaccini
    • DOI: 10.5958/2249-4677.2019.00082.3
  • Methyl jasmonate triggers metabolic responses and gene expression on Vitis vinifera cultivar Loureiro infected with “flavescence dorée”
    • Author: Manuel J.R.A. Oliveira, Marta W. Vasconcelos, Inês C. Lemos, Assunta Bertaccini, Susana M.P. Carvalho
    • DOI: 10.5958/2249-4677.2019.00083.5
  • Does salicylic acid alleviate the impacts on growth, development and productivity of “flavescence dorée” in Portuguese “Vinhos Verdes” grapevines?
    • Author: Manuel J.R.A. Oliveira, Marta W. Vasconcelos, Sandra Castro, Assunta Bertaccini, Susana M.P. Carvalho
    • DOI: 10.5958/2249-4677.2019.00084.7
  • Preliminary results of auxin and brassinosteroid application on ‘Candidatus Phytoplasma prunorum’ infected plants
    • Author: Tomáš Kiss, Tomáš Necas
    • DOI: 10.5958/2249-4677.2019.00085.9
  • A simple and reliable method to assess the effects of antimicrobial compounds on phytoplasmas
    • Author: David Baldo, Matteo Calassanzio, Maresa Novara, Fabio Dino, Gianfranco Filippini, Gianluca Manfredini, Carlo Poggi Pollini, Claudio Ratti
    • DOI: 10.5958/2249-4677.2019.00086.0
  • Influence of meteorological parameters on leafhopper vector population and sesame phyllody disease incidence in Assam, India
    • Author: Manoj Kumar Kalita, Ashok Kamal Gogoi, Shankar Hemanta Gogoi, Jutimala Phookan, Palash Deb Nath, Prasanta Neog, Pranjal Pratim Neog, Buddha Bora
    • DOI: 10.5958/2249-4677.2019.00087.2
  • Identification and management of 16SrII-D phytoplasmas in cluster bean and sesame crops in the Haryana province of India
    • Author: Govind Pratap Rao, Priyam Panda, Madem Gurivi Reddy, Swarup Mishra
    • DOI: 10.5958/2249-4677.2019.00088.4
  • Repellent strategy to avoid transmission of ‘Candidatus Phytoplasma mali’ by its vector Cacopsylla picta
    • Author: Wolfgang Jarausch, Barbara Jarausch
    • DOI: 10.5958/2249-4677.2019.00089.6
  • Isolation of fungal endophytes for the biocontrol of phytoplasmas associated with fruit trees
    • Author: Wolfgang Jarausch, Isabell Büttel, Nora Schwind, Miriam Runne, Barbara Jarausch
    • DOI: 10.5958/2249-4677.2019.00090.2
  • “Bois noir” incidence reduction by grafting recovered grapevine shoots
    • Author: Abdelhameed Moussa, Fabio Quaglino, Monica Faccincani, Piero Attilio Bianco, Nicola Mori
    • DOI: 10.5958/2249-4677.2019.00091.4
  • Phytoplasma recovery phenotype-a case study for aster yellows in South Africa
    • Author: Ané van der Vyver, Lucan Page, Hans Maree, Johan Burger
    • DOI: 10.5958/2249-4677.2019.00092.6
  • Recovery phenomena in Japanese plum trees grafted with apricot that stably recovered from European stone fruit yellows
    • Author: Carlo Poggi Pollini, Federica Fontana, Chiara Lanzoni, Silvia Paolini, Maria Grazia Tommasini, Anna Rosa Babini, Claudio Ratti
    • DOI: 10.5958/2249-4677.2019.00093.8
  • ‘Candidatus Phytoplasma’ and ‘Candidatus Liberibacter’ species detection in citrus
    • Author: Assunta Bertaccini, Eleonora Satta, Maritza Luis-Pantoja, Camilo Paredes-Tomás, Youri Yuneau, Wayne Myrie
    • DOI: 10.5958/2249-4677.2019.00094.X
  • New contribution about the epidemiology of grapevine yellowsassociated phytoplasmas in Chile
    • Author: Nicolás Quiroga, Daniela Soto, Patricio Farah, Ana María Pino, Alan Zamorano, Alberto Alma, Luca Picciau, Nicola Fiore
    • DOI: 10.5958/2249-4677.2019.00095.1
  • ‘Candidatus Phytoplasma’ species detection in coconuts in Cuba
    • Author: Camilo Paredes-Tomás, Eleonora Satta, Samanta Paltrinieri, Carlos Oropeza Salín, Wayne Myrie, Assunta Bertaccini, Maritza Luis-Pantoja
    • DOI: 10.5958/2249-4677.2019.00096.3
  • Distribution of lethal yellowing and associated phytoplasma strains in Jamaica, Mexico and other countries in the region
    • Author: Wayne Myrie, Carlos F. Ortíz, María Narvaez, Carlos Oropeza
    • DOI: 10.5958/2249-4677.2019.00097.5
  • Genetic differentiation of the 16SrXXII-B phytoplasmas in Ghana based on the leucyl tRNA synthetase gene
    • Author: Matthew Dickinson, Holly Brown, Egya Ndede Yankey, Sebastian Andoh-Mensah, Felix Bremang
    • DOI: 10.5958/2249-4677.2019.00098.7
  • Potential insect vectors and alternative host plants of phytoplasmas inthe Fynbos and Succulent Karoo biomes in South Africa
    • Author: Kerstin Krüger, Michael Stiller, Gert Pietersen, Dirk Johannes van Wyk, Gerhard Pietersen, Rochelle Janse van Rensburg, Ronel Roberts, Eleonora Satta, Assunta Bertaccini
    • DOI: 10.5958/2249-4677.2019.00099.9
  • Genome-informed design of LAMP assays for specific detection of aster yellows phytoplasmas
    • Author: Tanja Dreo, Špela Alic, Marina Dermastia
    • DOI: 10.5958/2249-4677.2019.00100.2
  • Preliminary evaluation of the use of an antiserum obtained from phytoplasma culture
    • Author: Nicoletta Contaldo, Isabella Freo, Vito Elicio, Carla Lucchese, Lilia Formica, Assunta Bertaccini
    • DOI: 10.5958/2249-4677.2019.00101.4
  • Support provided by EPPO and Euphresco on phytoplasma diagnostics: recent activities including the integration of Q-bank
    • Author: Françoise Petter, Baldissera Giovani, Damien Griessinger, Anne Sophie Roy, Fabienne Grousset
    • DOI: 10.5958/2249-4677.2019.00102.6
  • New insights into the emergence of the grapevine "flavescence dorée" epidemics in Europe
    • Author: Sylvie Malembic-Maher, Delphine Desqué, Dima Khalil, Pascal Salar, Jean-Luc Danet, Marie-Pierre Dubrana-Ourabah, Sybille Duret, Ibolya Ember, Zoltan Acs, Michele Della Bartola, Alberto Materazzi, Luisa Filippin, Slobodan Krnjajic, Ivo Toševski, Friederike Lang, Barbara Jarausch, Maria Kölber, Jelena Jovic, Elisa Angelini, Nathalie Arricau-Bouvery, Michael Maixner, Xavier Foissac
    • DOI: 10.5958/2249-4677.2019.00103.8
  • Recent spread of the “flavescence dorée” disease in north-eastern Italy
    • Author: Marta Martini, Francesco Pavan, Gian Luca Bianchi, Nazia Loi, Paolo Ermacora
    • DOI: 10.5958/2249-4677.2019.00104.X
  • Monitoring of ‘Candidatus Phytoplasma solani’ and “flavescence dorée” phytoplasma in south regions of the Russian Federation
    • Author: Galina N. Bondarenko, Ida G. Bashkirova, Natalia V. Aleynikova, Yana E. Radionovskaya
    • DOI: 10.5958/2249-4677.2019.00105.1
  • Study of methods for detecting quarantine phytoplasma's from the apple proliferation group on the territory of Russia
    • Author: Ida G. Bashkirova, Galina N. Bondarenko, Konstantin P. Kornev
    • DOI: 10.5958/2249-4677.2019.00106.3
  • ‘Candidatus Phytoplasma phoenicium’ and its phytosanitary status definition for the Russian Federation
    • Author: Elena Karimova, Yuri Shneyder, Elena Shneyder
    • DOI: 10.5958/2249-4677.2019.00107.5
  • ‘Candidatus Phytoplasma phoenicium’ associated with apricot yellows and peach witches’ broom in Iran
    • Author: Mohammad Salehi, Elham Salehi, Majid Siampour, Seyyed Alireza Esmailzadeh-Hosseini, Fabio Quaglino, Piero Attilio Bianco
    • DOI: 10.5958/2249-4677.2019.00108.7
  • Genetic diversity of ‘Candidatus Phytoplasma phoenicium’ strain populations associated with almond witches’ broom in Lebanon and Iran
    • Author: Surender Kumar, Yusuf Abou-Jawdah, Majid Siampour, Hana Sobh, Rosemarie Tedeschi, Alberto Alma, Piero Attilio Bianco, Fabio Quaglino
    • DOI: 10.5958/2249-4677.2019.00109.9
  • Identification of 16SrIX-B phytoplasmas associated with apricot rosette in Iran
    • Author: Maryam Ghayeb Zamharir, Omolbanin Nazari
    • DOI: 10.5958/2249-4677.2019.00110.5
  • Phytoplasma survey in Ulmus species in Belgium
    • Author: Stéphan Steyer, Frédéric Fauche, Anne-Marie Deeren, Thomas Goedefroit, Kris De Jonghe
    • DOI: 10.5958/2249-4677.2019.00111.7
  • Towards the identification of genes involved in resistence/tolerance to “flavescence dorée”
    • Author: Marika Rossi, Luciana Galetto, Simona Abbà, Flavio Veratti, Cristina Marzachì, Sabrina Palmano
    • DOI: 10.5958/2249-4677.2019.00112.9
  • Napier grass stunt disease: Effector gene prediction
    • Author: Parisatcha Sangsuwan, Matthew Dickinson
    • DOI: 10.5958/2249-4677.2019.00113.0
  • Phylogenetic analyses of phytoplasma replisome proteins demonstrate their distinct and complex evolutionary history
    • Author: Ivana Samarzija, Martina Šeruga Music
    • DOI: 10.5958/2249-4677.2019.00114.2
  • Identification of 16SrIII-J phytoplasma effectors using a viral vector
    • Author: Camila Gamboa, Weier Cui, Nicolás Quiroga, Carolina Fernández, Nicola Fiore, Alan Zamorano
    • DOI: 10.5958/2249-4677.2019.00115.4
  • PM19_00185 of ‘Candidatus Phytoplasma mali’ is a protein that functions as a E3 ubiquitin ligase
    • Author: Alisa Strohmayer, Mirko Moser, Azeddine Si-Ammour, Gabi Krczal, Kajohn Boonrod
    • DOI: 10.5958/2249-4677.2019.00116.6
  • Association of AAA+ ATPases and FtsH proteases with phloem bleeding of proliferation-diseased apple trees
    • Author: Kerstin Zikeli, Erich Seemüller
    • DOI: 10.5958/2249-4677.2019.00117.8
  • Investigating the interaction between the apple proliferation effector SAP11CaPM and its targets in susceptible and resistant Malus accessions
    • Author: Mattia Tabarelli, Katrin Janik, Mirko Moser, Pierluigi Bianchedi, Diego Micheletti, Mickael Malnoy
    • DOI: 10.5958/2249-4677.2019.00118.X
  • In search of the molecular targets and the function of apple proliferation phytoplasma effector proteins
    • Author: Cecilia Mittelberger, Evi Klammsteiner, Thomas Letschka, Christine Kerschbamer, Katja Schlink, Katrin Janik
    • DOI: 10.5958/2249-4677.2019.00119.1
  • The timetree of phytoplasmas reveals new insights into the relationships with their insect and plant hosts
    • Author: Valeria Trivellone, Yanghui Cao, Christopher H. Dietrich
    • DOI: 10.5958/2249-4677.2019.00120.8