1.Optimization of Agrobacterium tumefaciens-Mediated Transformation of Xylaria grammica EL000614, an Endolichenic Fungus Producing Grammicin
Min-Hye JEONG ; Jung A KIM ; Seogchan KANG ; Eu Ddeum CHOI ; Youngmin KIM ; Yerim LEE ; Mi Jin JEON ; Nan Hee YU ; Ae Ran PARK ; Jin-Cheol KIM ; Soonok KIM ; Sook-Young PARK
Mycobiology 2021;49(5):491-497
An endolichenic fungus Xylaria grammica EL000614 produces grammicin, a potent nematicidal pyrone derivative that can serve as a new control option for root-knot nematodes. We optimized an Agrobacterium tumefaciens-mediated transformation (ATMT) protocol for X.grammica to support genetic studies. Transformants were successfully generated after co-cultivation of homogenized young mycelia of X.grammica with A. tumefaciens strain AGL-1 carrying a binary vector that contains the bacterial hygromycin B phosphotransferase (hph) gene and the eGFP gene in T-DNA. The resulting transformants were mitotically stable, and PCR analysis showed the integratin of both genes in the genome of transformants.Expression of eGFP was confirmed via fluorescence microscopy. Southern analysis showed that 131 (78.9%) out of 166 transformants contained a single T-DNA insertion. Crucial factors for producing predominantly single T-DNA transformants include 48 h of co-cultivation, pretreatment of A. tumefaciens cells with acetosyringone before co-cultivation, and using freshly prepared mycelia. The established ATMT protocol offers an efficient tool for random insertional mutagenesis and gene transfer in studying the biology and ecology ofX.grammica.
2.Genetic Diversity of the Pear Scab Fungus Venturia nashicola in Korea
Eu Ddeum CHOI ; Gyoung Hee KIM ; Sook Young PARK ; Jang Hoon SONG ; Young Sun LEE ; Jae Sung JUNG ; Young Jin KOH
Mycobiology 2019;47(1):76-86
Scab disease caused by Venturia nashicola is of agroeconomic importance in cultivation of Asian pear. However, little is known about the degree of genetic diversity in the populations of this pathogen. In this study, we collected 55 isolates from pear scab lesions in 13 major cultivation areas in Korea and examined the diversity using sequences of internal transcribed spacer (ITS) region, β-tubulin (TUB2), and translation elongation factor-1α (TEF-1α) genes as molecular markers. Despite a low level of overall sequence variation, we found three distinctive subgroups from phylogenetic analysis of combined ITS, TUB2, and TEF-1α sequences. Among the three subgroups, subgroup 1 (60% of isolates collected) was predominant compared to subgroup 2 (23.6%) or subgroup 3 (16.4%) and was distributed throughout Korea. To understand the genetic diversity among the subgroups, RAPD analysis was performed. The isolates yielded highly diverse amplicon patterns and none of the defined subgroups within the dendrogram were supported by bootstrap values greater than 30%. Moreover, there is no significant correlation between the geographical distribution and the subgroups defined by molecular phylogeny. Our data suggest a low level of genetic diversification among the populations of V. nashicola in Korea.
Asian Continental Ancestry Group
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Fungi
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Genetic Variation
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Humans
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Korea
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Phylogeny
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Pyrus
3.Draft Genome Sequence of Xylaria grammica EL000614, a Strain Producing Grammicin, a Potent Nematicidal Compound
Sook-Young PARK ; Jongbum JEON ; Jung A KIM ; Mi Jin JEON ; Nan Hee YU ; Seulbi KIM ; Ae Ran PARK ; Jin-Cheol KIM ; Yerim LEE ; Youngmin KIM ; Eu Ddeum CHOI ; Min-Hye JEONG ; Yong-Hwan LEE ; Soonok KIM
Mycobiology 2021;49(3):294-296
An endolichenic fungus,Xylaria grammica strain EL000614, showed strong nematicidal effects against plant pathogenic nematode, Meloidogyne incognita by producing grammicin. We report genome assembly of X. grammica EL000614 comprised of 25 scaffolds with a total length of 54.73 Mb, N50 of 4.60 Mb, and 99.8% of BUSCO completeness. GC contents of this genome were 44.02%. Gene families associated with biosynthesis of secondary metabolites or regulatory proteins were identified out of 13,730 gene models predicted.
4.Draft Genome Sequence of Xylaria grammica EL000614, a Strain Producing Grammicin, a Potent Nematicidal Compound
Sook-Young PARK ; Jongbum JEON ; Jung A KIM ; Mi Jin JEON ; Nan Hee YU ; Seulbi KIM ; Ae Ran PARK ; Jin-Cheol KIM ; Yerim LEE ; Youngmin KIM ; Eu Ddeum CHOI ; Min-Hye JEONG ; Yong-Hwan LEE ; Soonok KIM
Mycobiology 2021;49(3):294-296
An endolichenic fungus, Xylaria grammica strain EL000614, showed strong nematicidal effects against plant pathogenic nematode, Meloidogyne incognita by producing grammicin.We report genome assembly of X. grammica EL000614 comprised of 25 scaffolds with a total length of 54.73 Mb, N50 of 4.60 Mb, and 99.8% of BUSCO completeness. GC contents of this genome were 44.02%. Gene families associated with biosynthesis of secondary metabolites or regulatory proteins were identified out of 13,730 gene models predicted.
5.Draft Genome Sequence of Xylaria grammica EL000614, a Strain Producing Grammicin, a Potent Nematicidal Compound
Sook-Young PARK ; Jongbum JEON ; Jung A KIM ; Mi Jin JEON ; Nan Hee YU ; Seulbi KIM ; Ae Ran PARK ; Jin-Cheol KIM ; Yerim LEE ; Youngmin KIM ; Eu Ddeum CHOI ; Min-Hye JEONG ; Yong-Hwan LEE ; Soonok KIM
Mycobiology 2021;49(3):294-296
An endolichenic fungus,Xylaria grammica strain EL000614, showed strong nematicidal effects against plant pathogenic nematode, Meloidogyne incognita by producing grammicin. We report genome assembly of X. grammica EL000614 comprised of 25 scaffolds with a total length of 54.73 Mb, N50 of 4.60 Mb, and 99.8% of BUSCO completeness. GC contents of this genome were 44.02%. Gene families associated with biosynthesis of secondary metabolites or regulatory proteins were identified out of 13,730 gene models predicted.
6.Draft Genome Sequence of Xylaria grammica EL000614, a Strain Producing Grammicin, a Potent Nematicidal Compound
Sook-Young PARK ; Jongbum JEON ; Jung A KIM ; Mi Jin JEON ; Nan Hee YU ; Seulbi KIM ; Ae Ran PARK ; Jin-Cheol KIM ; Yerim LEE ; Youngmin KIM ; Eu Ddeum CHOI ; Min-Hye JEONG ; Yong-Hwan LEE ; Soonok KIM
Mycobiology 2021;49(3):294-296
An endolichenic fungus, Xylaria grammica strain EL000614, showed strong nematicidal effects against plant pathogenic nematode, Meloidogyne incognita by producing grammicin.We report genome assembly of X. grammica EL000614 comprised of 25 scaffolds with a total length of 54.73 Mb, N50 of 4.60 Mb, and 99.8% of BUSCO completeness. GC contents of this genome were 44.02%. Gene families associated with biosynthesis of secondary metabolites or regulatory proteins were identified out of 13,730 gene models predicted.