Root-knot nematode [RKN] (Meloidogyne incognita) can increase the severity of Verticillium (V dahliae) and Fusarium (F oxysporum f.sp. vasinfectum) wilt diseases in cotton (Gossypium hirsutum). This study was conducted to determine some of the physiological responses caused by nematode invasion that might decrease resistance to vascular wilt diseases. The effect of RKN was investigated on spore germination and protein, carbohydrate and peroxidase content in the xylem fluids extracted from nematode-infected plants. Two cotton cultivars were used with different levels of resistance to both of the wilt pathogens. Spore germination was greater in the xylem fluids from nematode-infected plants than from nematode-free plants. The effect on spore ...
Pretreatment of cotton seeds with tested herbicides markedly increased resistance of cotton plants t...
The toxin of F. vasinfectum, fusaric acid, has no host specificity despite the fact that there is sp...
Arbuscular mycorrhizal fungi (AMF) play an important role in nutrient cycling processes and plant st...
The effect of root-knot nematode (RKN) (Meloidogyne incognita) on Verticillium dahliae and Fusarium ...
Abstract Verticillium wilt is the second serious vascular wilt caused by the phytopathogenic fungus ...
Verticillium wilt is a soil-borne disease, and severely limits the development of cotton production....
Susceptible and resistant cotton lines were cytologically and histochemically investigated for their...
Previous studies have shown that the dead mycelium of Penicillium chrysogenum at 900-1,500 kg ha�1 e...
Fusarium wilt, caused by Fusarium oxysporum f. sp. vasinfectum, is a new and important disease of co...
Water relations in cotton plants infected with Phymatotrichum omnivorum were studied to determine th...
Fusarium wilt, caused by Fusarium oxysporum f. sp. vasinfectum, is a new and important disease of co...
Specific chitin-binding isozymes of peroxidase (POX) play an important role in pathogenesis of plant...
Verticillium wilt is threatening cotton productivity globally. This disease is caused by soil-borne...
Accessions of Gossypium spp., some of them never previously tested, were evaluated for resistance to...
dahliae, is a widespread disease that occurs in most cotton-producing areas. V. dahliae is a soil-bo...
Pretreatment of cotton seeds with tested herbicides markedly increased resistance of cotton plants t...
The toxin of F. vasinfectum, fusaric acid, has no host specificity despite the fact that there is sp...
Arbuscular mycorrhizal fungi (AMF) play an important role in nutrient cycling processes and plant st...
The effect of root-knot nematode (RKN) (Meloidogyne incognita) on Verticillium dahliae and Fusarium ...
Abstract Verticillium wilt is the second serious vascular wilt caused by the phytopathogenic fungus ...
Verticillium wilt is a soil-borne disease, and severely limits the development of cotton production....
Susceptible and resistant cotton lines were cytologically and histochemically investigated for their...
Previous studies have shown that the dead mycelium of Penicillium chrysogenum at 900-1,500 kg ha�1 e...
Fusarium wilt, caused by Fusarium oxysporum f. sp. vasinfectum, is a new and important disease of co...
Water relations in cotton plants infected with Phymatotrichum omnivorum were studied to determine th...
Fusarium wilt, caused by Fusarium oxysporum f. sp. vasinfectum, is a new and important disease of co...
Specific chitin-binding isozymes of peroxidase (POX) play an important role in pathogenesis of plant...
Verticillium wilt is threatening cotton productivity globally. This disease is caused by soil-borne...
Accessions of Gossypium spp., some of them never previously tested, were evaluated for resistance to...
dahliae, is a widespread disease that occurs in most cotton-producing areas. V. dahliae is a soil-bo...
Pretreatment of cotton seeds with tested herbicides markedly increased resistance of cotton plants t...
The toxin of F. vasinfectum, fusaric acid, has no host specificity despite the fact that there is sp...
Arbuscular mycorrhizal fungi (AMF) play an important role in nutrient cycling processes and plant st...