Novel proteins from proteomic analysis of the trunk disease fungus Lasiodiplodia theobromae (Botryosphaeriaceae)

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Novel proteins from proteomic analysis of the trunk disease fungus Lasiodiplodia theobromae (Botryosphaeriaceae)

Many basic science questions remain regarding protein functions in the pathogen: host interaction, especially in the trunk disease fungi family, the Botryosphaeriaceae, which are a global problem for economically important plants, especially fruiting trees. Proteomics is a highly useful technology for studying protein expression and for discovering novel proteins in unsequenced and poorly annot...

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Data from proteome analysis of Lasiodiplodia theobromae (Botryosphaeriaceae)

Trunk disease fungi are a global problem affecting many economically important fruiting trees. The Botryosphaeriaceae are a family of trunk disease fungi that require detailed biochemical characterization in order to gain insight into their pathogenicity. The application of a modified Folch extraction to protein extraction from the Botryosphaeriaceae Lasiodiplodia theobromae generated an unprec...

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Novel Resorcinol Derivatives from Lasiodiplodia theobromae

Two novel resorcinol derivatives were isolated from the mycelium of Lasiodiplodia theo­ bromae IFO 31059 as potato micro-tuber inducing compounds. Their structures were estab­ lished by spectroscopic methods as ethyl (6 ' 7?)-2,4-dihydroxy-6-(6'-hydroxyheptyl)benzoate (8) and isobutyl (6 ' /?)-2.4-dihydroxy-6-(6'-hydroxyheptyl)benzoate (9). The absolute stereo­ chemistry of the asymmetric cente...

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Temperature Modulates the Secretome of the Phytopathogenic Fungus Lasiodiplodia theobromae

Environmental alterations modulate host-microorganism interactions. Little is known about how climate changes can trigger pathogenic features on symbiont or mutualistic microorganisms. Current climate models predict increased environmental temperatures. The exposing of phytopathogens to these changing conditions can have particularly relevant consequences for economically important species and ...

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Novel Cyclohexene Compound from Lasiodiplodia theobromae IFO 31059.

A novel cyclohexene compound (1), which is structurally related to theobroxide (2), was isolated from a culture filtrate of the fungus, Lasiodiplodia theobromae IFO 31059. The potato micro-tuber-inducing activity of this compound was observed at a concentration of 10(-3) M in the medium, whereas theobroxide (2) showed its activity at 10(-5) M.

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ژورنال

عنوان ژورنال: Biochimie Open

سال: 2017

ISSN: 2214-0085

DOI: 10.1016/j.biopen.2017.03.001