Climate Warming and Plant Disease: Mechanistic Insights Into Pathogenic Stress Resilience. [PDF]
Chauhan PK +3 more
europepmc +1 more source
RcAlb-PepII Perturbs the Proteomic Profile of <i>Cryptococcus neoformans</i>, Shutting Down Proteins Involved in Fungal Survival. [PDF]
Filho NSDS +10 more
europepmc +1 more source
Introducing silica-solubilizing and plant growth-promoting bacteria from sugarcane as inducers of drought stress tolerance. [PDF]
Kamyab M, Motamedi H.
europepmc +1 more source
Synthesis of a 2,4,6,8,10-dodecapentanoic acid thioester as a substrate for biosynthesis of heat stable antifungal factor (HSAF)† [PDF]
The N -acetylcystamine thioester of dodecapentaenoic acid is synthesized. The thioester is investigated as a biosynthetic substrate and was not incorporated in the observed products.
Patrick H Dussault +2 more
exaly +6 more sources
Heat-Stable Antifungal Factor (HSAF) Biosynthesis in Lysobacter enzymogenes Is Controlled by the Interplay of Two Transcription Factors and a Diffusible Molecule. [PDF]
ABSTRACT Lysobacter enzymogenes is a Gram-negative, environmentally ubiquitous bacterium that produces a secondary metabolite, called heat-stable antifungal factor (HSAF), as an antifungal factor against plant and animal fungal pathogens.
Fengquan Liu +2 more
exaly +4 more sources
Structure and biosynthesis of heat-stable antifungal factor (HSAF), a broad-spectrum antimycotic with a novel mode of action. [PDF]
ABSTRACT A screen for antifungal compounds from Lysobacter enzymogenes strain C3, a bacterial biological control agent of fungal diseases, has previously led to the isolation of heat-stable antifungal factor (HSAF). HSAF exhibits inhibitory activities against a wide range of
Xing-Cong Li, Gary Yuen, Xiangcheng Zhu
exaly +5 more sources
ABSTRACT Heat-stable antifungal factor (HSAF), which was first isolated from Lysobacter enzymogenes, exhibits inhibitory activities against a wide range of pathogens; however, a low level of HSAF was obtained from L. enzymogenes cultured in 0.1 × tryptic soy broth (TSB), an amount that does not satisfy HSAF application in disease control.
Baishi Hu, Jiaqin Fan, Guoliang Qian
exaly +3 more sources
Related searches:
Heat stable antifungal factor (HSAF) is considered to be a potential biological pesticide due to its broad antifungal activity and novel mode of action. However, few studies have reported on HSAF production during fermentation. Thus, this work was executed to optimize the medium composition to maximize HSAF production by Lysobacter enzymogenes OH11 ...
B. Tang +6 more
openaire +2 more sources

