Fusarium oxysporum mediates systems metabolic reprogramming of chickpea roots as revealed by a combination of proteomics and metabolomics

Y Kumar, L Zhang, P Panigrahi… - Plant biotechnology …, 2016 - Wiley Online Library
Molecular changes elicited by plants in response to fungal attack and how this affects plant–
pathogen interaction, including susceptibility or resistance, remain elusive. We studied the …

[PDF][PDF] Fusarium oxysporum mediates systems metabolic reprogramming of chickpea roots as revealed by a combination of proteomics and metabolomics

Y Kumar, L Zhang, P Panigrahi… - Plant Biotechnology …, 2016 - researchgate.net
Molecular changes elicited by plants in response to fungal attack and how this affects plant–
pathogen interaction, including susceptibility or resistance, remain elusive. We studied the …

Fusarium oxysporum mediates systems metabolic reprogramming of chickpea roots as revealed by a combination of proteomics and metabolomics.

Y Kumar, L Zhang, P Panigrahi… - Plant Biotechnology …, 2016 - europepmc.org
Molecular changes elicited by plants in response to fungal attack and how this affects plant–
pathogen interaction, including susceptibility or resistance, remain elusive. We studied the …

Fusarium oxysporum mediates systems metabolic reprogramming of chickpea roots as revealed by a combination of proteomics and metabolomics

Y Kumar, L Zhang, P Panigrahi, BB Dholakia… - Plant Biotechnology …, 2016 - cir.nii.ac.jp
抄録< jats: title> Summary</jats: title>< jats: p> Molecular changes elicited by plants in
response to fungal attack and how this affects plant–pathogen interaction, including …

Fusarium oxysporum mediates systems metabolic reprogramming of chickpea roots as revealed by a combination of proteomics and metabolomics

Y Kumar, L Zhang, P Panigrahi… - Plant Biotechnology …, 2016 - search.proquest.com
Molecular changes elicited by plants in response to fungal attack and how this affects plant–
pathogen interaction, including susceptibility or resistance, remain elusive. We studied the …

[PDF][PDF] Fusarium oxysporum mediates systems metabolic reprogramming of chickpea roots as revealed by a combination of proteomics and metabolomics

Y Kumar, L Zhang, P Panigrahi… - Plant Biotechnology …, 2016 - cyberleninka.org
Molecular changes elicited by plants in response to fungal attack and how this affects plant–
pathogen interaction, including susceptibility or resistance, remain elusive. We studied the …

Fusarium oxysporum mediates systems metabolic reprogramming of chickpea roots as revealed by a combination of proteomics and metabolomics

Y Kumar, L Zhang, P Panigrahi… - Plant …, 2016 - pubmed.ncbi.nlm.nih.gov
Molecular changes elicited by plants in response to fungal attack and how this affects plant-
pathogen interaction, including susceptibility or resistance, remain elusive. We studied the …

[PDF][PDF] Fusarium oxysporum mediates systems metabolic reprogramming of chickpea roots as revealed by a combination of proteomics and metabolomics

Y Kumar, L Zhang, P Panigrahi… - Plant Biotechnology …, 2016 - academia.edu
Molecular changes elicited by plants in response to fungal attack and how this affects plant–
pathogen interaction, including susceptibility or resistance, remain elusive. We studied the …

[HTML][HTML] Fusarium oxysporum mediates systems metabolic reprogramming of chickpea roots as revealed by a combination of proteomics and metabolomics

Y Kumar, L Zhang, P Panigrahi… - Plant Biotechnology …, 2016 - ncbi.nlm.nih.gov
Molecular changes elicited by plants in response to fungal attack and how this affects plant–
pathogen interaction, including susceptibility or resistance, remain elusive. We studied the …

Fusarium oxysporum mediates systems metabolic reprogramming of chickpea roots as revealed by a combination of proteomics and metabolomics.

Y Kumar, L Zhang, P Panigrahi, BB Dholakia… - Plant Biotechnology …, 2016 - go.gale.com
Molecular changes elicited by plants in response to fungal attack and how this affects plant–
pathogen interaction, including susceptibility or resistance, remain elusive. We studied the …