Cloning parasitism genes encoding secretory proteins expressed in the esophageal gland cells is the key to understanding the molecular basis of nematode parasitism of plants. Suppression subtractive hybridization (SSH) with the microaspirated contents from Heterodera glycines esophageal gland cells and intestinal region was used to isolate genes expressed preferentially in the gland cells of parasitic stages. Twenty-three unique cDNA sequences from a SSH cDNA library were identified and hybridized to the genomic DNA of H. glycines in Southern blots. Full-length cDNAs of 21 clones were obtained by screening a gland-cell long-distance polymerase chain reaction cDNA library. Deduced proteins of 10 clones were preceded by a signal peptide for s...
The most evolutionary advanced adaptations for plant parasitism by nematodes are the products of par...
A method is presented for in-situ hybridization to mRNA in second-stage juveniles (J2) of the soybea...
Background: Cyst nematodes are devastating plant parasites that become sedentary within plant roots ...
Parasitism genes expressed in the esophageal gland cells of phytonematodes encode secretions that co...
Identifying parasitism genes encoding proteins secreted from a nematode\u27s esophageal gland cells ...
Heterodera glycines, the soybean cyst nematode, is the number one pathogen of soybean (Glycine max)....
Abstract only availableFaculty Mentor: Melissa G. Mitchum, Division of Plant SciencesNematode secret...
Secretions from the esophageal gland cells of plantparasitic nematodes play critical roles in the ne...
The plant-parasitic nematodes Pratylenchus penetrans and Heterodera glycines are of major economic i...
Identifying parasitism genes encoding proteins secreted from a nematode\u27s esophageal gland cells ...
Background: Cyst nematodes are devastating plant parasites that become sedentary within plant roots ...
Abstract only availableNematode secreted proteins originating from esophageal gland cells are inject...
Secretory proteins encoded by parasitism genes expressed in the esophageal gland cells of plant-para...
Esophageal glands of plant-parasitic nematodes are highly specialized cells whose gene expression pr...
The most evolutionary advanced adaptations for plant parasitism by nematodes are the products of par...
The most evolutionary advanced adaptations for plant parasitism by nematodes are the products of par...
A method is presented for in-situ hybridization to mRNA in second-stage juveniles (J2) of the soybea...
Background: Cyst nematodes are devastating plant parasites that become sedentary within plant roots ...
Parasitism genes expressed in the esophageal gland cells of phytonematodes encode secretions that co...
Identifying parasitism genes encoding proteins secreted from a nematode\u27s esophageal gland cells ...
Heterodera glycines, the soybean cyst nematode, is the number one pathogen of soybean (Glycine max)....
Abstract only availableFaculty Mentor: Melissa G. Mitchum, Division of Plant SciencesNematode secret...
Secretions from the esophageal gland cells of plantparasitic nematodes play critical roles in the ne...
The plant-parasitic nematodes Pratylenchus penetrans and Heterodera glycines are of major economic i...
Identifying parasitism genes encoding proteins secreted from a nematode\u27s esophageal gland cells ...
Background: Cyst nematodes are devastating plant parasites that become sedentary within plant roots ...
Abstract only availableNematode secreted proteins originating from esophageal gland cells are inject...
Secretory proteins encoded by parasitism genes expressed in the esophageal gland cells of plant-para...
Esophageal glands of plant-parasitic nematodes are highly specialized cells whose gene expression pr...
The most evolutionary advanced adaptations for plant parasitism by nematodes are the products of par...
The most evolutionary advanced adaptations for plant parasitism by nematodes are the products of par...
A method is presented for in-situ hybridization to mRNA in second-stage juveniles (J2) of the soybea...
Background: Cyst nematodes are devastating plant parasites that become sedentary within plant roots ...