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Published on: February 8, 2019
Malazy, a degenerate, species-specific transposable element in Cercospora zeae-maydis
1Department of Plant Pathology and Microbiology, The Program for the Biology of Filamentous Fungi, Texas A&M University, College Station, Texas 77843-2132, USA.
Abstract:
Two fungal pathogens, Cercospora zeae-maydis Groups I and II, cause gray leaf spot of maize. During the sequencing of a cosmid library from C. zeae-maydis Group I, we discovered a sequence with high similarity to Maggy, a transposable element from Magnaporthe grisea. The element from C. zeae-maydis, named Malazy, contained 194-base-pair terminal repeats and sequences with high similarity to reverse transcriptase and integrase, components of the POL gene in the gypsy-like retrotransposons in fungi. Sequences with similarity to other POL gene components, protease and ribonuclease, were not detected in Malazy. A single copy of the element was detected by PCR and Southern analyses in all six North American isolates of C. zeae-maydis Group I but was not detected in the four isolates of C. zeae-maydis Group II from three continents or in phylogenetically related species. Fragments of the core domains of reverse transcriptase and integrase contained a high frequency of stop codons that were conserved in all six isolates of Group I. Additional C:G to T:A transitions in occasional isolates usually were silent mutations, while two resulted in isolate-specific stop codons. The absence of Malazy from related species suggests that it was acquired after the divergence of C. zeae-maydis Groups I and II. The high frequency of stop codons and the presence of a single copy of the element suggest that it was inactivated soon after it was acquired. Because the element is inactive and because reading frames for other genes were not found in sequences flanking the element, Malazy does not appear to be the cause of differences leading to speciation or genetic diversity between C. zeae-maydis Groups I and II.
Insights
A novel retrotransposon, Malazy, was identified in maize pathogen Cercospora zeae-maydis Group I. This element is absent in Group II and related species, suggesting recent acquisition and inactivation, thus not driving speciation.
Area of Science:
- Mycology
- Molecular Biology
- Genetics
Background:
- Cercospora zeae-maydis causes gray leaf spot in maize, with distinct Groups I and II.
- Transposable elements are mobile genetic sequences that can influence genome evolution.
Purpose of the Study:
- To characterize a newly discovered transposable element in C. zeae-maydis Group I.
- To investigate the origin, distribution, and potential role of this element in fungal speciation.
Main Methods:
- Cosmid library sequencing of C. zeae-maydis Group I.
- Polymerase Chain Reaction (PCR) and Southern blot analyses for element detection.
- Sequence analysis to identify conserved domains and mutations.
Main Results:
- A gypsy-like retrotransposon, named Malazy, was identified in C. zeae-maydis Group I, possessing terminal repeats and reverse transcriptase/integrase-like sequences.
- Malazy was detected in all Group I isolates but absent in Group II and related species, indicating post-divergence acquisition.
- High frequency of stop codons in Malazy's functional domains suggests inactivation shortly after acquisition.
Conclusions:
- Malazy is an ancient, inactive retrotransposon acquired by C. zeae-maydis Group I after its divergence from Group II.
- The element's inactivation and lack of flanking genes suggest it does not contribute to the genetic diversity or speciation between C. zeae-maydis groups.
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