Systemic defense activation by COS-OGA in rice against root-knot nematodes depends on stimulation of the phenylpropanoid pathway

RR Singh, B Chinnasri, L De Smet, A Haeck… - Plant Physiology and …, 2019 - Elsevier
Activation of induced plant resistance to control pests and diseases is regaining attention in
the current climate where chemical pesticides are being progressively banned. Formulations …

[PDF][PDF] researchportal. unamur. be

RR Singh, B Chinnasri, L De Smet, A Haeck… - 2019 - pure.unamur.be
The results show a significant reduction in root-galling and nematode development in rice
29 plants that were treated through foliar application with the COS-OGA formulations …

Systemic defense activation by COS-OGA in rice against root-knot nematodes depends on stimulation of the phenylpropanoid pathway

RR Singh, B Chinnasri, L De Smet… - Plant Physiology …, 2019 - ui.adsabs.harvard.edu
Activation of induced plant resistance to control pests and diseases is regaining attention in
the current climate where chemical pesticides are being progressively banned. Formulations …

Systemic defense activation by COS-OGA in rice against root-knot nematodes depends on stimulation of the phenylpropanoid pathway

RR Singh, B Chinnasri, L De Smet… - Plant Physiology …, 2019 - researchportal.unamur.be
Activation of induced plant resistance to control pests and diseases is regaining attention in
the current climate where chemical pesticides are being progressively banned. Formulations …

Systemic defense activation by COS-OGA in rice against root-knot nematodes depends on stimulation of the phenylpropanoid pathway

RR Singh, B Chinnasri, L De Smet… - Plant physiology …, 2019 - pubmed.ncbi.nlm.nih.gov
Activation of induced plant resistance to control pests and diseases is regaining attention in
the current climate where chemical pesticides are being progressively banned. Formulations …

Systemic defense activation by COS-OGA in rice against root-knot nematodes depends on stimulation of the phenylpropanoid pathway.

RR Singh, B Chinnasri, L Smet, A Haeck… - 2019 - cabidigitallibrary.org
Activation of induced plant resistance to control pests and diseases is regaining attention in
the current climate where chemical pesticides are being progressively banned. Formulations …

Systemic defense activation by COS-OGA in rice against root-knot nematodes depends on stimulation of the phenylpropanoid pathway.

RR Singh, B Chinnasri, L De Smet, A Haeck… - Plant Physiology and …, 2019 - europepmc.org
Activation of induced plant resistance to control pests and diseases is regaining attention in
the current climate where chemical pesticides are being progressively banned. Formulations …

[PDF][PDF] Systemic defense activation by COS-OGA in rice against root-knot nematodes depends on stimulation of the phenylpropanoid pathway

RR Singh, B Chinnasri, L De Smet, A Haeck… - Plant Physiology and …, 2019 - core.ac.uk
Activation of induced plant resistance to control pests and diseases is regaining attention in
the current climate where chemical pesticides are being progressively banned. Formulations …

Systemic defense activation by, COS-OGA in rice against root-knot nematodes depends on stimulation of the phenylpropanoid pathway

RR Singh, B Chinnasri, L De Smet, A Haeck… - PLANT PHYSIOLOGY …, 2019 - biblio.ugent.be
Activation of induced plant resistance to control pests and diseases is regaining attention in
the current climate where chemical pesticides are being progressively banned. Formulations …

[引用][C] Systemic defense activation by COS-OGA in rice against root-knot nematodes depends on stimulation of the phenylpropanoid pathway

RR Singh, B Chinnasri, L De Smet, A Haeck… - 2019