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Within my PhD project I gained several novel insights into the poorly investigated
symbiotic world of fungus farming ambrosia beetles and their bark beetle ancestors,
where I especially focused on physiological interactions and capabilities of
associated fungal symbionts. Here, (i) I could confirm the association of mutualistic
Phialophoropsis fungi with the ambrosia beetle genus Trypodendron and found hints
for a possible new Phialophoropsis species in T. signatum and T. domesticum.
Moreover, I could show that mutualistic fungi of Trypodendron ambrosia beetles are
able to decompose major woody polysaccharides such as cellulose and xylan.
Additionally, (ii) I provided the first images using micro-computed tomography (µCT)
of the formerly unknown structure of the mycetangium of Trypodendron leave. (iii) I
could confirm a general tolerance towards ethanol in mutualistic ambrosia beetle
fungi, while antagonistic fungi as well as most examined fungal bark beetle
associates (e.g. possibly tree-defense detoxifying species) were highly sensitive to
even low concentrations of ethanol. Further, (iv) I found that natural galleries of
ambrosia beetles are highly enriched with several biologically important elements
(such as N, P, S, K, Mg) compared to the surrounding woody tissue and suggest that
mutualistic fungi are translocating and concentrating elements from the immediate
surrounding xylem to the beetles galleries. Furthermore, (v) I could show that various
fungi associated with bark and ambrosia beetles (mutualists, possibly beneficial
symbionts) are emitting several volatile organic compounds mostly within aliphatic
and aromatic alcohols and esters, while non-mutualistic and free living species were
generally emitting a lower number and amount of volatiles. Finally, especially bark
and ambrosia beetle fungi were found to incorporate several amino acids, from which
some are especially important for the production of certain volatile organic
compounds. Amino acid content also indicated a higher nutritional value for certain
species. Here, I propose that especially volatile organic compounds are widespread
key players in maintaining various symbioses between fungi and beetles, as already
proven by a recent study on the bark beetle Ips typographus (as well as for some
other bark beetle-fungus symbioses, see summary in Kandasamy et al. 2016) and
also suggested for ambrosia beetles.
The diffraction limit of light confines fluorescence imaging of subcellular structures in fungi. Different super-resolution methods are available for the analysis of fungi that we briefly discuss. We exploit the filamentous fungus Fusarium fujikuroi expressing a YFP-labeled membrane protein showing the benefit of correlative light- and electron microscopy (CLEM), that combines structured illumination microscopy (SIM) and scanning election microscopy (SEM).
Die chronische Rhinosinusitis (CRS) ist eine entzündliche Erkrankung der Nase und Nasennebenhöhlen mit einem Bestehen von Symptomen über zwölf Wochen im Jahr. In Europa sind über 10% der erwachsenen Bevölkerung von ihr betroffen und leiden unter einer stark verminderten Lebensqualität. Nach dem Phänotyp lassen sich zwei Formen unterscheiden: die chronische Rhinosinusitis mit Polypen (CRScNP) und ohne Polypen (CRSsNP). Meist wird unter europäischen Probanden bei der CRScNP eine hauptsächlich eosinophile Th2- vermittelte und bei der CRSsNP ein gemischtes Profil aus Th1/Th17/Th2-vermittelter Entzündung beschrieben. Doch dies erfasst nicht die Vielfalt dieser Erkrankung. Erst kürzlich konnten Endotypen, basierend auf der Zytokinsekretion, identifiziert werden, die auf ein multifaktorielles Geschehen schließen lassen. Nachdem im Nasensekret von über 90% der CRS Patienten Pilze nachgewiesen werden konnten erscheint es wichtig, deren Rolle in der Pathogenese der CRS zu ergründen. Besonders interessant sind dabei Aspergillus fumigatus und Candida albicans. Als opportunistische Pilze könnten sie im Rahmen der CRS in der Lage sein bei einigen Endotypen durch eine verstärkte Aktivierung von Immunzellen die lokale Entzündungsreaktion aufrecht zu erhalten. Es wurden lokale und periphere CD4+ und CD8+ T-Zellen von Patienten mit CRScNP, CRSsNP und einer gesunden Kontrollgruppe isoliert. Eine Kultivierung mit den Antigenen von C. albicans und A. fumigatus erfolgte in einer Konzentration von 1 µg/ml über 6 Tage. Im Anschluss daran wurden die Zellen für das Durchflusszytometer angefärbt und ihre Aktivität über die Ki67+ Expression gemessen. In den Überständen der Kultivierung wurde durch das Durchflusszytometer mittels Multiplexassay die produzierten Zytokinkonzentrationen der Zellen bestimmt. In dieser Arbeit konnte eine Stimulierung der lokalen und peripheren T-Zellen durch die beiden Antigene gezeigt werden...
Das Ziel der vorliegenden Arbeit war die Suche nach neuen biologisch aktiven Naturstoffen in Mikroorganismen, welche aus verschiedenen Schwämmen des Mittelmeeres isoliert wurden. Durch die Verwendung mit der Hochdruckflüssigchromatographie (HPLC) gekoppelter spektroskopischer Methoden war es dabei möglich, bekannte Sekundärmetabolite frühzeitig zu erkennen und so die Suche nach neuen Naturstoffen besonders effizient zu gestalten. Dabei wurden neben den gängigen Verfahren HPLC-UV und HPLC-MS auch HPLC-NMR und HPLC-CD eingesetzt. Auf diese Weise nicht als bekannt identifizierte Verbindungen wurden isoliert, ihre Strukturen durch NMR- und MS-Methoden aufgeklärt und die Reinsubstanzen verschiedenen Tests auf biologische Aktivitäten unterzogen. Insgesamt wurden auf diese Weise 13 neue und 21 bekannte Naturstoffe gefunden.
Low-molecular mass natural products from bacteria, fungi, plants and marine organisms exhibit unique structural diversity which are of interest for the identification of new lead structures for medicinals and agrochemicals. In the search for bioactive compounds from marine sponges and sponge-associated fungi, this research work resulted to the isolation of twenty-six compounds, eight of which are new metabolites. The sponges were collected from the Indo-pacific regions, particularly those from Indonesian and Philippine waters, as well as those from the Mediterranean Sea near the island of Elba in Italy. A combination of the chemically- and biologically-driven approach for drug discovery was employed, wherein extracts were screened for antibacterial, antifungal and cytotoxic activities. In addition to the bioassay-guided approach to purify the compounds responsible for the activity of the extract, TLC, UV and MS were also used to isolate the chemically most interesting substances. Hence, purified compounds which are not responsible for the initial bioscreening activity may have a chance to be evaluated for other bioactivities. Enumerated below are the compounds which have been isolated and structurally elucidated and whose bioactivities have been further characterized. 1. The extract of the fungus Cladosporium herbarum associated with the sponge Callyspongia aerizusa afforded seven structurally related polyketides, including two new twelve-membered macrolides: pandangolide 3 and 4, and a new acetyl congener of the previously isolated 5-hydroxymethyl-2-furoic acid. The two furoic acid analogues isolated were found to be responsible for the antimicrobial activity of the extract. The isolation of the known phytotoxin Cladospolide B from Cladosporium herbarum, which was originally known from Cladosporium cladosporioides and C. tenuissimum, indicates the possibility that Cladospolide B may be a chemotaxonomic marker of particular Cladosporium species. 2. The extract of the fungus Curvularia lunata associated with the Indonesian sponge Niphates olemda yielded three compounds, namely the new antimicrobially-active anthraquinone lunatin, the known bisanthraquinone cytoskyrin A, and the known plant hormone abscisic acid. The co-occurrence of the two structurally-related anthraquinones suggests that the monomeric lunatin may be a precursor in the biosynthesis of the bisanthraquinone cytoskyrin A. 3. The fungus Penicillium spp. associated with the Mediterranean sponge Axinella verrucosa yielded six compounds, namely the known antifungal griseofulvin and its less active dechloro analogue; the known toxin oxaline; and the known cytotoxic metabolite communesin B and its two new congeners communesin C and D. The new communesins were less active than communesin B in the brine-shrimp lethality test. 4. An unidentified fungus which was also isolated from the same Mediterranean sponge Axinella verrucosa as Penicillium spp. yielded the known compound monocerin which has been reported to possess phytotoxic and insecticidal activities. 5. The fungus Aspergillus flavus associated with the Philippine sponge Hyrtios aff. reticulatus yielded the known toxin a-cyclopiazonic acid. 6. The Indonesian sponge Agelas nakamurai yielded four bromopyrrole alkaloids namely the new compound 4-bromo-pyrrole-2-carboxylic acid, and the known compounds: 4-bromo-pyrrole-2-carboxamide, mukanadin B and mukanadin C. All of the four compounds except mukanadin B were found to be antimicrobially-active. Bromopyrrole alkaloids are well-known metabolites of the genus Agelas and are proven to play an important role in the chemical defense of the sponge against predation from fishes. 7. The Indonesian sponge Jaspis splendens yielded three known substances which are known for their antiproliferative activities, namely the depsipeptides jaspamide (jasplakinolide), and its derivatives jaspamide B and jaspamide C.