Literature DB >> 30247531

Plant Water Stress and Vector Feeding Preference Mediate Transmission Efficiency of a Plant Pathogen.

Celia Del Cid1, Rodrigo Krugner2, Adam R Zeilinger1, Matthew P Daugherty3, Rodrigo P P Almeida1.   

Abstract

Pathogen spread by arthropod vectors is the outcome of pathogen-vector-plant interactions, as well as how these interactions are impacted by abiotic and biotic factors. While plant water stress impacts each component of the Pierce's disease pathosystem (Xylella fastidiosa Wells et al., insect vectors, and grapevines), the outcome of interactions in relation to pathogen spread is unknown. The objectives of this study were 1) to determine the role of plant water stress on vector acquisition and inoculation of X. fastidiosa under choice and no-choice conditions for source or recipient vines, and 2) to provide insights into the effects of vineyard irrigation regimes on spread of X. fastidiosa by using a host-vector epidemic model. Under no-choice conditions, pathogen acquisition increased as water stress increased in source plants, while inoculation was not affected by water status of recipient vines. Thus, under no-choice conditions, plant water stress increased transmission of X. fastidiosa. However, when vectors had a choice of an uninfected well-watered versus an infected water-stressed grapevine, transmission efficiency declined as water stress levels increased. While our experimental results produced wide uncertainty estimates, the epidemiological modeling suggested a non-linear relationship between water stress and pathogen spread: moderate water stress enhances pathogen spread but severe or no stress produce equivalent spread. In summary, both host plant condition and vector host preference interacted to determine transmission efficiency of X. fastidiosa.

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Year:  2018        PMID: 30247531     DOI: 10.1093/ee/nvy136

Source DB:  PubMed          Journal:  Environ Entomol        ISSN: 0046-225X            Impact factor:   2.377


  3 in total

1.  CRISPR/Cas9-mediated targeted mutagenesis of TAS4 and MYBA7 loci in grapevine rootstock 101-14.

Authors:  Sukumaran Sunitha; Christopher D Rock
Journal:  Transgenic Res       Date:  2020-04-23       Impact factor: 2.788

2.  Fluid dynamic simulations at the interface of the blue-green sharpshooter functional foregut and grapevine xylem sap with implications for transmission of Xylella fastidiosa.

Authors:  Ian M Marcus; Daniel White; Elaine A Backus; Sharon L Walker; M Caroline Roper
Journal:  PLoS One       Date:  2022-03-22       Impact factor: 3.240

Review 3.  The Role of Endophytes in Combating Fungal- and Bacterial-Induced Stress in Plants.

Authors:  Manjula Muthu Narayanan; Norhayati Ahmad; Pooja Shivanand; Faizah Metali
Journal:  Molecules       Date:  2022-10-03       Impact factor: 4.927

  3 in total

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