Taxonomy, diversity and origins of symbiotic endophytes of Achnatherum sibiricum in the Inner Mongolia Steppe of China

Abstract We sampled five Achnatherum sibiricum populations and documented the distribution and abundance of endophytes. In total, 438 fungal isolates were obtained. They were classified into 11 morphotypes based on growth rate and morphological characters including colonial morphology, the productio...

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Published inFEMS microbiology letters Vol. 301; no. 1; pp. 12 - 20
Main Authors Zhang, Xin, Ren, An-Zhi, Wei, Yu-Kun, Lin, Feng, Li, Chuan, Liu, Zhi-Jian, Gao, Yu-Bao
Format Journal Article
LanguageEnglish
Published Oxford, UK Blackwell Publishing Ltd 01.12.2009
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Oxford University Press
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Abstract Abstract We sampled five Achnatherum sibiricum populations and documented the distribution and abundance of endophytes. In total, 438 fungal isolates were obtained. They were classified into 11 morphotypes based on growth rate and morphological characters including colonial morphology, the production of conidiogenous cells, conidial size and dimension on potato dextrose agar medium. Both tub2 and actG sequences identified only a single product in all representative isolates from three dominant morphotypes. All sequences fell in the same main clade, including Neotyphodium gansuense and Neotyphodium gansuense var. inebrians from another Achnatherum species in North China, Achnatherum inebrians, and Neotyphodium guerinii from European grasses Melica ciliate and Melica transsilvanica. Based on both morphological and phylogenetic analyses, isolates in morphotype I were described as representing a novel Neotyphodium species, Neotyphodium sibiricum sp. nov. Isolates in both morphotype II and III were identified as representing N. gansuense. Both tub2 and actG sequences suggested that N. sibiricum and N. guerinii were probably derived from a common Epichloë ancestor.
AbstractList We sampled five Achnatherum sibiricum populations and documented the distribution and abundance of endophytes. In total, 438 fungal isolates were obtained. They were classified into 11 morphotypes based on growth rate and morphological characters including colonial morphology, the production of conidiogenous cells, conidial size and dimension on potato dextrose agar medium. Both tub2 and actG sequences identified only a single product in all representative isolates from three dominant morphotypes. All sequences fell in the same main clade, including Neotyphodium gansuense and Neotyphodium gansuense var. inebrians from another Achnatherum species in North China, Achnatherum inebrians, and Neotyphodium guerinii from European grasses Melica ciliate and Melica transsilvanica. Based on both morphological and phylogenetic analyses, isolates in morphotype I were described as representing a novel Neotyphodium species, Neotyphodium sibiricum sp. nov. Isolates in both morphotype II and III were identified as representing N. gansuense. Both tub2 and actG sequences suggested that N. sibiricum and N. guerinii were probably derived from a common Epichloë ancestor.
Abstract We sampled five Achnatherum sibiricum populations and documented the distribution and abundance of endophytes. In total, 438 fungal isolates were obtained. They were classified into 11 morphotypes based on growth rate and morphological characters including colonial morphology, the production of conidiogenous cells, conidial size and dimension on potato dextrose agar medium. Both tub2 and actG sequences identified only a single product in all representative isolates from three dominant morphotypes. All sequences fell in the same main clade, including Neotyphodium gansuense and Neotyphodium gansuense var. inebrians from another Achnatherum species in North China, Achnatherum inebrians, and Neotyphodium guerinii from European grasses Melica ciliate and Melica transsilvanica. Based on both morphological and phylogenetic analyses, isolates in morphotype I were described as representing a novel Neotyphodium species, Neotyphodium sibiricum sp. nov. Isolates in both morphotype II and III were identified as representing N. gansuense. Both tub2 and actG sequences suggested that N. sibiricum and N. guerinii were probably derived from a common Epichloë ancestor.
Author Zhang, Xin
Ren, An-Zhi
Wei, Yu-Kun
Li, Chuan
Gao, Yu-Bao
Liu, Zhi-Jian
Lin, Feng
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Issue 1
Keywords endophyte
relative abundance
morphological diversity
phylogenetic relationship
Fungi
Origin
Steppe
Taxonomy
Endophyte
Phylogeny
Symbiont
Achnatherum sibiricum
Language English
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Snippet Abstract We sampled five Achnatherum sibiricum populations and documented the distribution and abundance of endophytes. In total, 438 fungal isolates were...
We sampled five Achnatherum sibiricum populations and documented the distribution and abundance of endophytes. In total, 438 fungal isolates were obtained....
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SubjectTerms Achnatherum
Achnatherum sibiricum
Agronomy. Soil science and plant productions
Animal, plant and microbial ecology
Biodiversity
Biological and medical sciences
Cell size
China
Culture media
Cytology
Dextrose
DNA, Fungal - analysis
DNA, Fungal - genetics
Economic plant physiology
endophyte
Endophytes
Evolution, Molecular
Fundamental and applied biological sciences. Psychology
Genes, Fungal
Genetic Speciation
Genetic Variation
Growth rate
Microbial ecology
Microbiology
morphological diversity
Morphology
Neotyphodium - classification
Neotyphodium - isolation & purification
Neotyphodium - physiology
New species
phylogenetic relationship
Phylogeny
Poaceae - microbiology
Potatoes
relative abundance
Sequence Analysis, DNA
Soil
Species Specificity
Steppes
Symbiosis
Symbiosis (nodules, symbiotic nitrogen fixation, mycorrhiza...)
Taxonomy
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Title Taxonomy, diversity and origins of symbiotic endophytes of Achnatherum sibiricum in the Inner Mongolia Steppe of China
URI https://onlinelibrary.wiley.com/doi/abs/10.1111%2Fj.1574-6968.2009.01789.x
https://www.ncbi.nlm.nih.gov/pubmed/19863662
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Volume 301
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