The Experts below are selected from a list of 207 Experts worldwide ranked by ideXlab platform

Jeroen Wagemans - One of the best experts on this subject based on the ideXlab platform.

  • The future of phage bioControl in Integrated plant protection for sustainable crop production
    Current opinion in biotechnology, 2020
    Co-Authors: Dominique Holtappels, Kiandro Fortuna, Rob Lavigne, Jeroen Wagemans
    Abstract:

    Bacterial phytopathogens significantly reduce crop yields and hence, pose a threat to the food supply of our increasing world population. In this context, bacteriophages are investigated as potential sustainable bioControl agents. Here, recent advances in phage bioControl are reviewed and considered within the framework of Integrated plant protection strategies. This shows that understanding the pathogen’s biology is crucial to develop a targeted strategy, tailored to individual pathosystems and driven by biotechnological insights. Moreover, the potential synergy of phages in contemporary farming practices based on the Internet of Things is proposed, potentially enabling a timely and cost-efficient treatment of plants at an early stage of the disease. Finally, these prospects are placed in the regulatory context of virus-oriented Integrated Pest Control.

Dominique Holtappels - One of the best experts on this subject based on the ideXlab platform.

  • The future of phage bioControl in Integrated plant protection for sustainable crop production
    Current opinion in biotechnology, 2020
    Co-Authors: Dominique Holtappels, Kiandro Fortuna, Rob Lavigne, Jeroen Wagemans
    Abstract:

    Bacterial phytopathogens significantly reduce crop yields and hence, pose a threat to the food supply of our increasing world population. In this context, bacteriophages are investigated as potential sustainable bioControl agents. Here, recent advances in phage bioControl are reviewed and considered within the framework of Integrated plant protection strategies. This shows that understanding the pathogen’s biology is crucial to develop a targeted strategy, tailored to individual pathosystems and driven by biotechnological insights. Moreover, the potential synergy of phages in contemporary farming practices based on the Internet of Things is proposed, potentially enabling a timely and cost-efficient treatment of plants at an early stage of the disease. Finally, these prospects are placed in the regulatory context of virus-oriented Integrated Pest Control.

Li Chang-tong - One of the best experts on this subject based on the ideXlab platform.

Feng Xiao-zhou - One of the best experts on this subject based on the ideXlab platform.

  • The dynamics behavior of predator-prey model with Integrated Pest Control
    Basic Sciences Journal of Textile Universities, 2011
    Co-Authors: Feng Xiao-zhou
    Abstract:

    According to the fact Integrated Pest management,the Lotka-Volterra predator-prey system with impulsive effect is proposed and investigated.There exists a globally asymptotically stable Pest-free periodic solution when R01 by Floquet theory and differential comparison theory.The condition for the permanence is also given when R01.The numerical results provide that the threshold is affected by the fact including instantaneous killing rates of Pesticides on Pests and natural enemies.The results provide tactical basis for the practical Pest management.

Rob Lavigne - One of the best experts on this subject based on the ideXlab platform.

  • The future of phage bioControl in Integrated plant protection for sustainable crop production
    Current opinion in biotechnology, 2020
    Co-Authors: Dominique Holtappels, Kiandro Fortuna, Rob Lavigne, Jeroen Wagemans
    Abstract:

    Bacterial phytopathogens significantly reduce crop yields and hence, pose a threat to the food supply of our increasing world population. In this context, bacteriophages are investigated as potential sustainable bioControl agents. Here, recent advances in phage bioControl are reviewed and considered within the framework of Integrated plant protection strategies. This shows that understanding the pathogen’s biology is crucial to develop a targeted strategy, tailored to individual pathosystems and driven by biotechnological insights. Moreover, the potential synergy of phages in contemporary farming practices based on the Internet of Things is proposed, potentially enabling a timely and cost-efficient treatment of plants at an early stage of the disease. Finally, these prospects are placed in the regulatory context of virus-oriented Integrated Pest Control.