[HTML][HTML] Molecular effects of resistance elicitors from biological origin and their potential for crop protection

L Wiesel, AC Newton, I Elliott, D Booty… - Frontiers in plant …, 2014 - frontiersin.org
Plants contain a sophisticated innate immune network to prevent pathogenic microbes from
gaining access to nutrients and from colonizing internal structures. The first layer of inducible …

Molecular effects of resistance elicitors from biological origin and their potential for crop protection.

L Wiesel, AC Newton, I Elliott, D Booty, EM Gilroy… - 2014 - cabidigitallibrary.org
Plants contain a sophisticated innate immune network to prevent pathogenic microbes from
gaining access to nutrients and from colonizing internal structures. The first layer of inducible …

[PDF][PDF] Molecular effects of resistance elicitors from biological origin and their potential for crop protection

L Wiesel, AC Newton, I Elliott, D Booty, EM Gilroy… - researchgate.net
Plants contain a sophisticated innate immune network to prevent pathogenic microbes from
gaining access to nutrients and from colonizing internal structures. The first layer of inducible …

Molecular effects of resistance elicitors from biological origin and their potential for crop protection

L Wiesel, AC Newton, I Elliott, D Booty… - Frontiers in plant …, 2014 - pubmed.ncbi.nlm.nih.gov
Plants contain a sophisticated innate immune network to prevent pathogenic microbes from
gaining access to nutrients and from colonizing internal structures. The first layer of inducible …

[PDF][PDF] Molecular effects of resistance elicitors from biological origin and their potential for crop protection

L Wiesel, AC Newton, I Elliott, D Booty, EM Gilroy… - core.ac.uk
Plants contain a sophisticated innate immune network to prevent pathogenic microbes from
gaining access to nutrients and from colonizing internal structures. The first layer of inducible …

[PDF][PDF] Molecular effects of resistance elicitors from biological origin and their potential for crop protection

L Wiesel, AC Newton, I Elliott, D Booty, EM Gilroy… - academia.edu
Plants contain a sophisticated innate immune network to prevent pathogenic microbes from
gaining access to nutrients and from colonizing internal structures. The first layer of inducible …

Molecular effects of resistance elicitors from biological origin and their potential for crop protection

L Wiesel, AC Newton, I Elliott, D Booty… - Frontiers in Plant …, 2014 - discovery.dundee.ac.uk
Plants contain a sophisticated innate immune network to prevent pathogenic microbes from
gaining access to nutrients and from colonizing internal structures. The first layer of inducible …

Molecular effects of resistance elicitors from biological origin and their potential for crop protection

AC Newton, EM Gilroy, PRJ Birch - 2014 - agris.fao.org
Plants contain a sophisticated innate immune network to prevent pathogenic microbes from
gaining access to nutrients and from colonising internal structures. The first layer of inducible …

[PDF][PDF] Molecular effects of resistance elicitors from biological origin and their potential for crop protection

L Wiesel, AC Newton, I Elliott, D Booty, EM Gilroy… - cyberleninka.org
Plants contain a sophisticated innate immune network to prevent pathogenic microbes from
gaining access to nutrients and from colonizing internal structures. The first layer of inducible …

[HTML][HTML] Molecular effects of resistance elicitors from biological origin and their potential for crop protection

L Wiesel, AC Newton, I Elliott, D Booty… - Frontiers in Plant …, 2014 - ncbi.nlm.nih.gov
Plants contain a sophisticated innate immune network to prevent pathogenic microbes from
gaining access to nutrients and from colonizing internal structures. The first layer of inducible …