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Published on: May 27, 2022
Nuclear heterogeneity in conidial populations of Aspergillus flavus
Farhana Runa1, Ignazio Carbone1, Deepak Bhatnagar2
1Center for Integrated Fungal Research, Department of Plant Pathology, North Carolina State University, Raleigh, NC, USA.
Abstract:
Aspergillus flavus is a major producer of aflatoxin and an opportunistic pathogen for a wide range of hosts. Understanding genotypic and phenotypic variation within strains of A. flavus is important for controlling disease and reducing aflatoxin contamination. A. flavus is multinucleate and predominantly haploid (n) and homokaryotic. Although cryptic heterokaryosis may occur in nature, it is unclear how nuclei in A. flavus influence genetic heterogeneity and if nuclear condition plays a role in fungal ecology. A. flavus mainly reproduces asexually by producing conidia. In order to observe whether conidia are homokaryotic or heterokaryotic, we labeled nuclei of A. flavus using two different nuclear localized fluorescent reporters. The reporter constructs (pYH2A and pCH2B), encode histones HH2A and HH2B fused at the C terminus with either yellow (EYFP) or cyan (ECFP) fluorescent proteins, respectively. The constructs were transformed into the double auxotrophic strain AFC-1 (-pyrG, -argD) to generate a strain containing each reporter construct. By taking advantage of the nutritional requirement for each strain, we were able to generate fusants between FR36 (-argD) expressing yellow fluorescence, and FR46 (-pyr4) expressing cyan fluorescence. Conidia from fusants between FR36 and FR46 showed three types of fluorescence: only EYFP, only ECFP or both EYFP+ECFP. Conidia containing nuclei expressing EYFP+ECFP were separated by Fluorescence-Activated Cell sorting (FACS) and were found to contain both yellow and cyan fluorescent markers in the same nucleus. Further characterization of conidia having only one nucleus but expressing both EYFP+ECFP fluorescence were found to be diploid (2n). Our findings suggest that A. flavus maintains nuclear heterogeneity in conidial populations.
Insights
Aspergillus flavus conidia can contain multiple nuclei, some of which are diploid. This nuclear heterogeneity in Aspergillus flavus may influence fungal ecology and disease control.
Area of Science:
- Mycology
- Plant Pathology
- Genetics
Background:
- Aspergillus flavus is a significant aflatoxin producer and opportunistic pathogen.
- Understanding genetic variation in A. flavus is crucial for disease and contamination control.
- The role of nuclear condition in A. flavus genetic heterogeneity and ecology is not well understood.
Purpose of the Study:
- To investigate the nuclear condition (homokaryotic vs. heterokaryotic) of Aspergillus flavus conidia.
- To determine if nuclear heterogeneity influences fungal ecology.
Main Methods:
- Utilized nuclear-localized fluorescent reporters (EYFP and ECFP) to label A. flavus nuclei.
- Generated fusants between fluorescently labeled strains with complementary auxotrophic markers.
- Employed Fluorescence-Activated Cell Sorting (FACS) to isolate and analyze conidia.
Main Results:
- Conidia exhibited three fluorescence patterns: EYFP only, ECFP only, or both EYFP+ECFP.
- Conidia with both EYFP+ECFP fluorescence contained both markers within the same nucleus.
- Conidia with a single nucleus but dual fluorescence were identified as diploid (2n).
Conclusions:
- Aspergillus flavus conidia can harbor nuclear heterogeneity.
- Diploid nuclei were observed within A. flavus conidia, suggesting a role in genetic diversity.
- This nuclear condition may play a role in the ecological adaptability of A. flavus.
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