Silicon (Si) amendment to plants can confer enhanced resistance to herbivores. In the present study, the physiological and cytological mechanisms underlying the enhanced resistance of plants with Si addition were investigated for one of the most destructive rice pests in Asian countries, the rice leaf folder, Cnaphalocrocis medinalis (Guenée). Activities of defense-related enzymes, superoxide dismutase, peroxidase, catalase, phenylalanine ammonia-lyase, and polyphenol oxidase, and concentrations of malondialdehyde and soluble protein in leaves were measured in rice plants with or without leaf folder infestation and with or without Si amendment at 0.32 g Si/kg soil. Silicon amendment significantly reduced leaf folder larval survival. Silicon...
Over the past decades, a multitude of studies have shown the ability of silicon (Si) to protect vari...
As agroecology deteriorates, agricultural production is threatened by the combined stressors of expo...
All essential nutrients can affect the incidence and severity of plant diseases. Although silicon (S...
The rice leaf folder, Cnaphalocrocis medinalis (Guenée), is one of the most destructive rice pests i...
Silicon (Si) application can significantly enhance rice resistance against herbivorous insects. Howe...
Silicon (Si) application can significantly enhance rice resistance against herbivorous insects. Howe...
Abstract Background Silicon (Si) can confer plant resistance to both abiotic and biotic stress. In t...
Promoter or carrier-induced silicon transportation into rice (Oryza sativa L.) in relation to yellow...
Rice blast disease caused by Pyricularia oryzae is the most devastative disease. The alternative in ...
The rice leaf folder, Cnaphalocrocis medinalis (Guenée), is one of the most destructive rice pests i...
This study investigated the effect of silicon (Si) on the potentiation of rice resistance against le...
Not AvailablePromoter or carrier-induced silicon transportation into rice (Oryza sativa L.) in relat...
This study investigated the importance of silicon (Si) in rice grain husk in association with fungic...
Silicon (Si) is essential for normal growth and development in plants and is also beneficial for the...
Soil silicon enhances rice defenses against a range of biotic stresses. However, the magnitude of th...
Over the past decades, a multitude of studies have shown the ability of silicon (Si) to protect vari...
As agroecology deteriorates, agricultural production is threatened by the combined stressors of expo...
All essential nutrients can affect the incidence and severity of plant diseases. Although silicon (S...
The rice leaf folder, Cnaphalocrocis medinalis (Guenée), is one of the most destructive rice pests i...
Silicon (Si) application can significantly enhance rice resistance against herbivorous insects. Howe...
Silicon (Si) application can significantly enhance rice resistance against herbivorous insects. Howe...
Abstract Background Silicon (Si) can confer plant resistance to both abiotic and biotic stress. In t...
Promoter or carrier-induced silicon transportation into rice (Oryza sativa L.) in relation to yellow...
Rice blast disease caused by Pyricularia oryzae is the most devastative disease. The alternative in ...
The rice leaf folder, Cnaphalocrocis medinalis (Guenée), is one of the most destructive rice pests i...
This study investigated the effect of silicon (Si) on the potentiation of rice resistance against le...
Not AvailablePromoter or carrier-induced silicon transportation into rice (Oryza sativa L.) in relat...
This study investigated the importance of silicon (Si) in rice grain husk in association with fungic...
Silicon (Si) is essential for normal growth and development in plants and is also beneficial for the...
Soil silicon enhances rice defenses against a range of biotic stresses. However, the magnitude of th...
Over the past decades, a multitude of studies have shown the ability of silicon (Si) to protect vari...
As agroecology deteriorates, agricultural production is threatened by the combined stressors of expo...
All essential nutrients can affect the incidence and severity of plant diseases. Although silicon (S...