Detection and visualization of an exopolysaccharide produced by Xylella fastidiosa in vitro and in planta.
نویسندگان
چکیده
Many phytopathogenic bacteria, such as Ralstonia solanacearum, Pantoea stewartii, and Xanthomonas campestris, produce exopolysaccharides (EPSs) that aid in virulence, colonization, and survival. EPS can also contribute to host xylem vessel blockage. The genome of Xylella fastidiosa, the causal agent of Pierce's disease (PD) of grapevine, contains an operon that is strikingly similar to the X. campestris gum operon, which is responsible for the production of xanthan gum. Based on this information, it has been hypothesized that X. fastidiosa is capable of producing an EPS similar in structure and composition to xanthan gum but lacking the terminal mannose residue. In this study, we raised polyclonal antibodies against a modified xanthan gum polymer similar to the predicted X. fastidiosa EPS polymer. We used enzyme-linked immunosorbent assay to quantify production of EPS from X. fastidiosa cells grown in vitro and immunolocalization microscopy to examine the distribution of X. fastidiosa EPS in biofilms formed in vitro and in planta and assessed the contribution of X. fastidiosa EPS to the vascular occlusions seen in PD-infected grapevines.
منابع مشابه
GREENHOUSE EVALUATION OF GRAPEVINE FUNGAL ENDOPHYTES AND FUNGAL NATURAL PRODUCTS ANTAGONISTIC TO XYLELLA FASTIDIOSA FOR CONTROL OF PIERCE’S DISEASE Principal Investigators
The goal of this research was to identify fungal endophytes and fungal natural products antagonistic to Xylella fastidiosa (Xf) that could be implemented as preventative and curative treatment for Pierce’s Disease (PD) management. We showed in in vitro bioassays that several fungal endophytes isolated from grapevine wood possess anti-Xf properties, due to the production of natural products. One...
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Pierce's disease (PD) is a deadly disease of grapevines caused by the Gram-negative bacterium Xylella fastidiosa. Though disease symptoms were formerly attributed to bacteria blocking the plant xylem, this hypothesis is at best overly simplistic. Recently, we used a proteomic approach to characterize the secretome of X. fastidiosa, both in vitro and in planta, and identified LesA as one of the ...
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ورودعنوان ژورنال:
- Applied and environmental microbiology
دوره 73 22 شماره
صفحات -
تاریخ انتشار 2007