Pyrenophora graminea Ito e Kuribayshi and P.teres (Died.) Drechsl. respectively cause leaf stripe and net blotch on barley leaves. Both pathogens are seed-borne and can systemically colonize their host. In contrast to P.teres, P. graminea cannot successfully cause disease by direct leaf infection. Since in the most part of their life cycle both pathogens show an intercellular mode of growth in host tissue, it was assumed that enzymes degrading pectic components of plant cell walls are involved in colonization. Previous results showed in Pyrenophora graminea cultured in several media containing pectin high a pectinolytic activity revealed by enzymatic assay while a faint expression of endopolygalacturonase (endo-PG) in Northern blot when...
The proteinaceous extracts of culture filtrates from Pyrenophora teres f. teres (Ptt) have been prev...
In some years, large amounts of organic seed lots are discarded due to the presence of high levels o...
This study investigated the expression and characterization of two polygalacturonases (PG1 and PG2) ...
Pyrenophora graminea Ito e Kuribayshi and P.teres (Died.) Drechsl. respectively cause leaf stripe a...
To penetrate and colonize host tissue most pathogenic fungi produce enzymes degrading the cuticle an...
Fusarium graminearum (teleomorph Giberella zeae) causes important diseases in cereals, like wheat, b...
Non radioactive Differential Display Reverse Transcription- PCR (DDRT-PCR) was used to screen molecu...
Non radioactive Differential Display Reverse Transcription- PCR (DDRT-PCR) was used to screen molecu...
Non radioactive Differential Display Reverse Transcription-PCR (DDRT-PCR) was used to screen molecul...
Pyrenophora teres is the causative agent of net blotch of barley and one of the most economically im...
Pyrenophora graminea Ito and Kuribayashi (anamorph Drechslera graminea) is a seed-borne pathogen cau...
Pyrenophora graminea Ito and Kuribayashi (anamorph Drechslera graminea) is a seed-borne pathogen cau...
Isolates of Rhizoctonia solcmi anastomosis group 8 (AG-8) cause bare patch disease in cereal and leg...
Pyrenophora graminea is the causal agent of barley leaf stripe. A mutant of the fungus (T2) was obta...
Pyrenophora graminea is the causal agent of barley leaf stripe. A mutant of the fungus (T2) was obta...
The proteinaceous extracts of culture filtrates from Pyrenophora teres f. teres (Ptt) have been prev...
In some years, large amounts of organic seed lots are discarded due to the presence of high levels o...
This study investigated the expression and characterization of two polygalacturonases (PG1 and PG2) ...
Pyrenophora graminea Ito e Kuribayshi and P.teres (Died.) Drechsl. respectively cause leaf stripe a...
To penetrate and colonize host tissue most pathogenic fungi produce enzymes degrading the cuticle an...
Fusarium graminearum (teleomorph Giberella zeae) causes important diseases in cereals, like wheat, b...
Non radioactive Differential Display Reverse Transcription- PCR (DDRT-PCR) was used to screen molecu...
Non radioactive Differential Display Reverse Transcription- PCR (DDRT-PCR) was used to screen molecu...
Non radioactive Differential Display Reverse Transcription-PCR (DDRT-PCR) was used to screen molecul...
Pyrenophora teres is the causative agent of net blotch of barley and one of the most economically im...
Pyrenophora graminea Ito and Kuribayashi (anamorph Drechslera graminea) is a seed-borne pathogen cau...
Pyrenophora graminea Ito and Kuribayashi (anamorph Drechslera graminea) is a seed-borne pathogen cau...
Isolates of Rhizoctonia solcmi anastomosis group 8 (AG-8) cause bare patch disease in cereal and leg...
Pyrenophora graminea is the causal agent of barley leaf stripe. A mutant of the fungus (T2) was obta...
Pyrenophora graminea is the causal agent of barley leaf stripe. A mutant of the fungus (T2) was obta...
The proteinaceous extracts of culture filtrates from Pyrenophora teres f. teres (Ptt) have been prev...
In some years, large amounts of organic seed lots are discarded due to the presence of high levels o...
This study investigated the expression and characterization of two polygalacturonases (PG1 and PG2) ...