1.Occurrence and Characterization of Leaf Spot Caused by Septoria melissae on Lemon Balm in Korea
Seon-Ah YANG ; In-Young CHOI ; Ho-Jong JU ; Kui-Jae LEE ; Victor GALEA ; Hyeon-Dong SHIN
Mycobiology 2020;48(6):495-500
Leaf spot on lemon balm is frequently observed in Korea, causing considerable damage to crops. In 2014 and 2015, the occurrence of leaf spot was observed in several production greenhouses at Suwon, Gongju, and Namwon in Korea. Symptoms on lower leaves initially developed as small, distinct, discolored lesions, which enlarged progressively turning into dark brown, angular spots surrounded by purplish-brown margins. Based on the morphological characteristics and sequence analysis of actin (ACT), translation elongation factor 1-alpha (EF-1α), internal transcribed spacer (ITS), 28S nrDNA (LSU), and RNA polymerase II second largest subunit (RPB2), the fungus associated with the lemon balm leaf spot was determined as Septoria melissae. To the best of our knowledge, this is the first report of lemon balm leaf spot caused by S. melissae in Asia as well as in Korea.
2.Occurrence and Characterization of Leaf Spot Caused by Septoria melissae on Lemon Balm in Korea
Seon-Ah YANG ; In-Young CHOI ; Ho-Jong JU ; Kui-Jae LEE ; Victor GALEA ; Hyeon-Dong SHIN
Mycobiology 2020;48(6):495-500
Leaf spot on lemon balm is frequently observed in Korea, causing considerable damage to crops. In 2014 and 2015, the occurrence of leaf spot was observed in several production greenhouses at Suwon, Gongju, and Namwon in Korea. Symptoms on lower leaves initially developed as small, distinct, discolored lesions, which enlarged progressively turning into dark brown, angular spots surrounded by purplish-brown margins. Based on the morphological characteristics and sequence analysis of actin (ACT), translation elongation factor 1-alpha (EF-1α), internal transcribed spacer (ITS), 28S nrDNA (LSU), and RNA polymerase II second largest subunit (RPB2), the fungus associated with the lemon balm leaf spot was determined as Septoria melissae. To the best of our knowledge, this is the first report of lemon balm leaf spot caused by S. melissae in Asia as well as in Korea.
3.Identification and Characterization of Cercospora malayensis Causing Leaf Spot on Kenaf.
Sung Hee PARK ; In Young CHOI ; Wang Hyu LEE ; Kui Jae LEE ; Victor GALEA ; Hyeon Dong SHIN
Mycobiology 2017;45(2):114-118
In September 2013 and 2014, a significant number of kenaf plants showing symptoms of leaf spots with approximately 50% incidence were found in experimental plots in Iksan and Namwon, Korea. Leaf spots were circular to irregular, more or less vein-limited, reaching to 10 mm in diameter. The spots were initially uniformly brown to reddish brown, turning pale brown with a purplish margin and showing grayish patches on the lesion due to heavy fructification. The causative agent of the leaf spot disease was identified as Cercospora malayensis. The pathogenicity test was conducted with similar results, which fulfilled Koch's postulates. This is the first report of C. malayensis infection of kenaf in Korea.
Hibiscus*
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Incidence
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Jeollabuk-do
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Korea
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Virulence
4.Identification and Characterization of Pseudocercospora pyricola Causing Leaf Spots on Aronia melanocarpa.
Sung Hee PARK ; In Young CHOI ; Kyoung Won SEO ; Jin Ho KIM ; Victor GALEA ; Hyeon Dong SHIN
Mycobiology 2017;45(1):39-43
Leaf spot disease on black chokeberry (Aronia melanocarpa) was observed at several locations in Korea during 2014–2015. Leaf spots were distinct, scattered over the leaf surface and along the leaf border, subcircular to irregular and brown surrounded by a distinct dark color, and were expanded and coalesced into irregularly shaped lesions. Severely infected leaves became dry and fell off eventually. The causative agent was identified as Pseudocercospora pyricola. Morphological observations and phylogenetic analyses of multiple genes, including internal transcribed spacer, translation elongation factor 1-alpha, actin, and the large subunit ribosomal DNA were conducted. The pathogenicity test was conducted twice yielding similar results, fulfilling Koch's postulates. To our knowledge, this is the first report on P. pyricola infection of A. melanocarpa globally.
Actins
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DNA, Ribosomal
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Korea
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Peptide Elongation Factors
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Photinia*
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Virulence