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The Multifaceted Gene 275 Embedded in the PKS-PTS Gene Cluster Was Involved in the Regulation of Arthrobotrisin Biosynthesis, TCA Cycle, and Septa Formation in Nematode-Trapping Fungus Arthrobotrys oligospora.


ABSTRACT: The predominant nematode-trapping fungus Arthrobotrys oligospora harbors a unique polyketide synthase-prenyltransferase (PKS-PTS) gene cluster AOL_s00215g responsible for the biosynthesis of sesquiterpenyl epoxy-cyclohexenoids (SECs) that are involved in the regulation of fungal growth, adhesive trap formation, antibacterial activity, and soil colonization. However, the function of one rare gene (AOL_s00215g275 (275)) embedded in the cluster has remained cryptic. Here, we constructed two mutants with the disruption of 275 and the overexpression of 275, respectively, and compared their fungal growth, morphology, resistance to chemical stress, nematicidal activity, transcriptomic and metabolic profiles, and infrastructures, together with binding affinity analysis. Both mutants displayed distinct differences in their TCA cycles, SEC biosynthesis, and endocytosis, combined with abnormal mitochondria, vacuoles, septa formation, and decreased nematicidal activity. Our results suggest that gene 275 might function as a separator and as an integrated gene with multiple potential functions related to three distinct genes encoding the retinoic acid induced-1, cortactin, and vacuolar iron transporter 1 proteins in this nematode-trapping fungus. Our unexpected findings provide insight into the intriguing organization and functions of a rare non-biosynthetic gene in a biosynthetic gene cluster.

SUBMITTER: Zhou J 

PROVIDER: S-EPMC9780802 | biostudies-literature | 2022 Nov

REPOSITORIES: biostudies-literature

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The Multifaceted Gene 275 Embedded in the PKS-PTS Gene Cluster Was Involved in the Regulation of Arthrobotrisin Biosynthesis, TCA Cycle, and Septa Formation in Nematode-Trapping Fungus <i>Arthrobotrys oligospora</i>.

Zhou Jiao J   Wu Qun-Fu QF   Li Shu-Hong SH   Yan Jun-Xian JX   Wu Li L   Cheng Qian-Yi QY   He Zhi-Qiang ZQ   Yue Xu-Tong XT   Zhang Ke-Qin KQ   Zhang Long-Long LL   Niu Xue-Mei XM  

Journal of fungi (Basel, Switzerland) 20221129 12


The predominant nematode-trapping fungus <i>Arthrobotrys oligospora</i> harbors a unique polyketide synthase-prenyltransferase (PKS-PTS) gene cluster <i>AOL_s00215g</i> responsible for the biosynthesis of sesquiterpenyl epoxy-cyclohexenoids (SECs) that are involved in the regulation of fungal growth, adhesive trap formation, antibacterial activity, and soil colonization. However, the function of one rare gene (<i>AOL_s00215g275</i> (<i>275</i>)) embedded in the cluster has remained cryptic. Here  ...[more]

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