🧬 Introducing ParAquaSeq! #FUNACTION (#BiodivProtect) and #MostFun (#BiodivMon) curate a database of ribosomal sequences for zoosporic parasites impacting aquatic plants & algae, supporting research on ecology & sustainable algae production
https://doi.org/10.1111/1755-0998.14099
🦠 #FUNACTION (#BiodivProtect) identified two new fungal species causing leaf necrosis in mango & guava in southern Iran. Environmental monitoring and precise identification are crucial for effective disease management.
https://doi.org/10.3897/mycokeys.115.136469
Two new pestalotioid fungi from tropical fruits in Iran

In a survey of tropical plant diseases in southern and southeastern Iran, samples of diseased Mangifera indica and Psidium guava leaves with necrotic symptoms were collected between 2021 and 2022. Six representative isolates of Neopestalotiopsis and Robillarda (three isolates for each) were studied using morphological characteristics as well as multi-locus phylogenetic analysis based on (i) the internal transcribed spacer (ITS) region of the nuclear rDNA, (ii) part of the translation elongation factor 1-alpha (tef1), and (iii) the Ξ²-tubulin (tub2). After morphological investigation, our phylogenetic analysis revealed that the Neopestalotiopsis and Robillarda isolates under study differed from all previously described species within these genera. Based on our polyphasic approach, two new species, including Neopestalotiopsis guava sp. nov. from necrotic Mangifera indica and Robillarda khodaparastii sp. nov. from Psidium guava are described and illustrated from Iran.

MycoKeys
♻️ #FUNACTION (#BiodivProtect) and #MostFUN (#BiodivMon) show how deep-sea fungus Chaetomium sp. CS1 efficiently transforms lignocellulose, offering an eco-friendly and safer alternative to white rot fungi. Promising potential for biofuel production!
https://doi.org/10.1016/j.ibiod.2025.106031