Table 1 in The grass root endophytic fungus Flavomyces fulophazii: An abundant source of tetramic acid and chlorinated azaphilone derivatives
<p><b>Table 1</b> Details of Flavomyces fulophazii isolates included in this study.</p><table><tbody><tr><th>Isolate No. in this study</th><th>Other strain/isolate/culture names</th><th>Collection area</th><th>Collection date</th><th>Host plant</th><th>ITS GenBank accession No.</th><th>Publication</th></tr></tbody><tbody><tr><th>HF-1</th><td>flavo_01</td><td>Fül¨oph´aza, Hungary</td><td>April 2014</td><td><i>Festuca vaginata</i></td><td>MW438310</td><td>This study</td></tr><tr><th>HF-2</th><td>flavo_04</td><td>Fül¨oph´aza, Hungary</td><td>April 2014</td><td><i>Festuca vaginata</i></td><td>MW438311</td><td>This study</td></tr><tr><th>HF-3</th><td>flavo_05</td><td>Fül¨oph´aza, Hungary</td><td>April 2014</td><td><i>Festuca vaginata</i></td><td>MW438312</td><td>This study</td></tr><tr><th>HF-4</th><td>flavo_06</td><td>Fül¨oph´aza, Hungary</td><td>April 2014</td><td><i>Festuca vaginata</i></td><td>MW438313</td><td>This study</td></tr><tr><th>HF-5</th><td>flavo_08</td><td>Fül¨oph´aza, Hungary</td><td>April 2014</td><td><i>Festuca vaginata</i></td><td>MW438314</td><td>This study</td></tr><tr><th>HF-6</th><td>flavo_09</td><td>Fül¨oph´aza, Hungary</td><td>April 2014</td><td><i>Festuca vaginata</i></td><td>MW438315</td><td>This study</td></tr><tr><th>HF-7</th><td>flavo_11</td><td>Fül¨oph´aza, Hungary</td><td>April 2014</td><td><i>Festuca vaginata</i></td><td>MW438316</td><td>This study</td></tr><tr><th>HF-8</th><td>flavo_13</td><td>Fül¨oph´aza, Hungary</td><td>April 2014</td><td><i>Festuca vaginata</i></td><td>MW438317</td><td>This study</td></tr><tr><th>HF-9</th><td>DSE8/143 = CBS 135664</td><td>Fül¨oph´aza, Hungary</td><td>July 2005</td><td><i>Festuca vaginata</i></td><td>KP184000 a</td><td>Knapp et al. (2015)</td></tr><tr><th>HF-10</th><td>DSE8/S = CBS 135761 (T)</td><td>Fül¨oph´aza, Hungary</td><td>July 2012</td><td><i>Festuca vaginata</i></td><td>KP184001 b</td><td>Knapp et al. (2015)</td></tr><tr><th>MF-1</th><td>MF03</td><td>Nalaikh, Mongolia</td><td>October 2016</td><td><i>Stipa krylovii</i></td><td>MN537657</td><td>Knapp et al. (2019)</td></tr><tr><th>MF-2</th><td>MF04</td><td>Nalaikh, Mongolia</td><td>October 2016</td><td><i>Stipa krylovii</i></td><td>MN537658</td><td>Knapp et al. (2019)</td></tr><tr><th>MF-3</th><td>MF05</td><td>Nalaikh, Mongolia</td><td>October 2016</td><td><i>Stipa krylovii</i></td><td>MN537659</td><td>Knapp et al. (2019)</td></tr><tr><th>MF-4</th><td>MF06</td><td>Nalaikh, Mongolia</td><td>October 2016</td><td><i>Stipa krylovii</i></td><td>MN537660</td><td>Knapp et al. (2019)</td></tr><tr><th>MF-5</th><td>MF07</td><td>Nalaikh, Mongolia</td><td>October 2016</td><td><i>Stipa krylovii</i></td><td>MN537661</td><td>Knapp et al. (2019)</td></tr><tr><th>MF-6</th><td>MF08</td><td>Nalaikh, Mongolia</td><td>October 2016</td><td><i>Stipa krylovii</i></td><td>MN537662</td><td>Knapp et al. (2019)</td></tr><tr><th>MF-7</th><td>MF09 = DSE8309</td><td>Nalaikh, Mongolia</td><td>October 2016</td><td><i>Stipa krylovii</i></td><td>MN537663 c</td><td>Knapp et al. (2019)</td></tr></tbody></table><p><sup>a</sup> Sequences of further DNA loci of this strain are available: LSU (partial 28S large subunit of the nrRNA gene): KP184039; SSU (partial 18S small subunit of the nrRNA gene): KP184081; ACT (partial actin gene): KP184116; CAL (partial calmodulin gene): KP184159.</p><p><sup>b</sup> Sequences of further DNA loci of this strain are available: LSU: KP184040; SSU: KP184082; ACT: KP184118; CAL: KP184158.</p><p><sup>c</sup> Sequences of further DNA loci of this strain are available: LSU: MN515261; TEF (translation elongation factor 1-α): MN535259. (T): ex-type culture.</p>
ShareScore
32/100
Overall dataset sharing score
Score breakdown
These five areas show where the dataset supports — or may limit — practical reuse.
- Stewardship
- 8
- Harmonization
- 8
- Access
- 8
- Reuse readiness
- 8
- Engagement
- 0