Tissue storage and primer selection influence pyrosequencing-based inferences of diversity and community composition of endolichenic and endophytic fungi
Journal articles
U'Ren, JM; Riddle, JM; Monacell, JT; Carbone, I; Miadlikowska, J; Arnold, AE
Published in: Molecular Ecology Resources
2014
Duke Scholars
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Published In
Molecular Ecology Resources
EISSN
1755-0998
ISSN
1755-098X
Publication Date
2014
Related Subject Headings
- Evolutionary Biology
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U’Ren, J. M., Riddle, J. M., Monacell, J. T., Carbone, I., Miadlikowska, J., & Arnold, A. E. (2014). Tissue storage and primer selection influence pyrosequencing-based inferences of diversity and community composition of endolichenic and endophytic fungi. Molecular Ecology Resources.
U’Ren, J. M., J. M. Riddle, J. T. Monacell, I. Carbone, J. Miadlikowska, and A. E. Arnold. “Tissue storage and primer selection influence pyrosequencing-based inferences of diversity and community composition of endolichenic and endophytic fungi.” Molecular Ecology Resources, 2014.
U’Ren JM, Riddle JM, Monacell JT, Carbone I, Miadlikowska J, Arnold AE. Tissue storage and primer selection influence pyrosequencing-based inferences of diversity and community composition of endolichenic and endophytic fungi. Molecular Ecology Resources. 2014;
U’Ren, J. M., et al. “Tissue storage and primer selection influence pyrosequencing-based inferences of diversity and community composition of endolichenic and endophytic fungi.” Molecular Ecology Resources, 2014.
U’Ren JM, Riddle JM, Monacell JT, Carbone I, Miadlikowska J, Arnold AE. Tissue storage and primer selection influence pyrosequencing-based inferences of diversity and community composition of endolichenic and endophytic fungi. Molecular Ecology Resources. 2014;
Published In
Molecular Ecology Resources
EISSN
1755-0998
ISSN
1755-098X
Publication Date
2014
Related Subject Headings
- Evolutionary Biology