Keyphrases
Fagus Sylvatica
77%
Phytophthora
63%
Phytophthora Citricola
40%
Beech
38%
Phytophthora Quercina
37%
Spruce Needles
30%
Elicitin
28%
European Beech
27%
Fine Roots
22%
Chlorophyll a (Chl a)
21%
Picea Abies (L.) Karst
20%
Phytophthora Plurivora
20%
Sweet Orange
19%
Europe
18%
Spruce
18%
Saplings
18%
Chitinase
17%
Root Pathogen
17%
Chitosanase Activity
16%
Ethane
16%
Acid Mist
15%
Oxygen Activation
15%
Fungal Infection
15%
Free Air
15%
Hydrogen Peroxide
14%
Callus Tissue
14%
Bavaria
14%
Superoxide
14%
Beech Tree
13%
Quercus Robur
13%
Horseradish Peroxidase
13%
Fusarium Solani
13%
Acidic chitinase
12%
Virulence
12%
Beech Seedling
12%
Ascorbic Acid Content
11%
Glutathione Content
11%
Glutathione
11%
Sink Strength
11%
Carbon Sink
11%
Naphthazarin
11%
Diaphorase
11%
Ascorbic Acid
11%
Phytophthora Cambivora
11%
Ethylene Formation
11%
Citrus
11%
Root Infection
10%
Acid-catalyzed
10%
Mineral Acids
10%
Phytophthora Alni
10%
Agricultural and Biological Sciences
Phytophthora
100%
Beech
71%
Fagus Sylvatica
65%
Phytophthora citricola
35%
Quercus
29%
Fine Root
25%
Picea Abies
21%
Root Rot
20%
Chlorophyll
13%
Quercus Robur
12%
Carbon Sink
12%
Chloroplast
11%
Photobleaching
11%
Branches
11%
Glutathione
10%
Photosynthetic Pigment
10%
Polymerase Chain Reaction
10%
Photosystem
10%
Host Plant
10%
Cell Wall
10%
Ascorbic Acid
10%
Sweating
10%
Alnus
9%
Forest Trees
9%
Real-Time Polymerase Chain Reaction
8%
Rhizosphere
8%
Zoospore
8%
Necrosis
8%
Woody Plant
6%
Cell Membrane
6%
Tree Crown
6%
Amplicon
6%
Transmission Electron Microscopy
6%
Collar Rot
6%
Pythium
6%
Antioxidant
6%
Photosystem I
6%
New Species
6%
Alnus glutinosa
5%
Climate Change
5%
Plant Diseases
5%
Leaf Water Potential
5%
Cinnamic Acid
5%
Cell Suspension Culture
5%
Phytophthora cinnamomi
5%
Deciduous
5%
Biotic Stress
5%
Mycosis
5%
Antiserum
5%
Plasma Membrane
5%