4.3 Article

Response of Prunus species to graft-inoculation by two Iranian strains of almond witches'-broom phytoplasma

Related references

Note: Only part of the references are listed.
Review Microbiology

Revision of the 'Candidatus Phytoplasma' species description guidelines

Assunta Bertaccini et al.

Summary: This article proposes classification and naming guidelines for the genus 'Candidatus Phytoplasma', which have important implications for epidemiological and ecological studies of phytoplasma plant diseases. The guidelines provide accurate criteria for defining and identifying 'Candidatus Phytoplasma' species, and suggest the use of alternative reference strains.

INTERNATIONAL JOURNAL OF SYSTEMATIC AND EVOLUTIONARY MICROBIOLOGY (2022)

Article Forestry

Identification of a 16SrIX-B phytoplasma strain associated with Daphne mucronata phyllody in Iran

Ghobad Babaei et al.

Summary: A phyllody disease was observed in Daphne mucronata plants in western Iran, with PCR and sequencing analysis confirming the presence of 16SrIX-B phytoplasma. This is the first report of this phytoplasma in a non-Prunus species, highlighting the possible reservoir role of D. mucronata for the phytoplasma affecting stone fruits in the Middle East.

FOREST PATHOLOGY (2021)

Article Agriculture, Multidisciplinary

Multilocus sequence typing and phylogenetic analysis revealed two distinct almond witches'-broom phytoplasma subpopulations in Iran

Niloofar Mosayyebi et al.

Summary: During a field survey in various geographical regions of Iran, phytoplasma-like symptoms were found in peach, almond, wild almond, and GF-677 rootstock. Molecular typing revealed the presence of two subpopulations of almond witches'-broom (AlmWB) phytoplasma strains in Iran, with distinct genetic variations between Iranian and Lebanese strains. Genetic distance analysis showed significant differences between AlmWB phytoplasma strains (16SrIX-B and variants) and phytoplasmas from other 16SrIX subgroups. The study discussed the significance of genetic variation in relation to biological characteristics and geographical distinctions of 16SrIX group phytoplasmas.

ANNALS OF APPLIED BIOLOGY (2021)

Article Biochemical Research Methods

DeepCoil-a fast and accurate prediction of coiled-coil domains in protein sequences

Jan Ludwiczak et al.

BIOINFORMATICS (2019)

Article Biochemistry & Molecular Biology

The TOPCONS web server for consensus prediction of membrane protein topology and signal peptides

Konstantinos D. Tsirigos et al.

NUCLEIC ACIDS RESEARCH (2015)

Review Agriculture, Multidisciplinary

Molecular biology and pathogenicity of phytoplasmas

C. Marcone

ANNALS OF APPLIED BIOLOGY (2014)

Letter Biochemical Research Methods

SignalP 4.0: discriminating signal peptides from transmembrane regions

Thomas Nordahl Petersen et al.

NATURE METHODS (2011)

Article Multidisciplinary Sciences

Phytoplasma protein effector SAP11 enhances insect vector reproduction by manipulating plant development and defense hormone biosynthesis

Akiko Sugio et al.

PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA (2011)

Article Multidisciplinary Sciences

A unique virulence factor for proliferation and dwarfism in plants identified from a phytopathogenic bacterium

Ayaka Hoshi et al.

PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA (2009)

Review Plant Sciences

Phytoplasmas: bacteria that manipulate plants and insects

Saskia A. Hogenhout et al.

MOLECULAR PLANT PATHOLOGY (2008)

Article Plant Sciences

Characterization of a new almond witches' broom phytoplasma in Iran

M. Salehi et al.

JOURNAL OF PHYTOPATHOLOGY (2006)