<p><b>A.</b> Structural modeling of the functional domain of SolyWRKY33 protein at both N-terminal and C-terminal end and W-box DNA using DS Modeller <b>A.</b> Structure of the modeled W-box DNA <b>B.</b> The N-terminal SolyWRKY33 domain (NTD) <b>C.</b> The C-terminal SolyWRKY33 domain (CTD) <b>D</b>. The SolyWRKY37 WRKY domain.</p
WRKYs, a large family of transcription factors, are involved in plant response to biotic and abiotic...
Resistance (R) genes and endophytic organisms can both protect plants against pathogens. Although th...
Resistance (R) genes and endophytic organisms can both protect plants against pathogens. Although th...
<p>The stereo chemical spatial arrangement of amino acid residues in the modeled domain structure fo...
<p><b>A.</b> Heat map diagramme showing the differentially upregulated WRKY transcripts (SolyWRKY4, ...
The WRKY transcription factors have indispensable role in plant growth, development and defense resp...
<p><b>A.</b> Interaction network of WRKY33 protein in <i>Arabidopsis</i> homologue of tomato. The co...
<p><b>A.</b> Histochemical staining for observation of accumulated H<sub>2</sub>O<sub>2</sub> in con...
Breeding for resistance is the most effective tool for controlling the corky root disease of tomato ...
Background: Fusarium oxysporum f. sp. lycopersici is the causal agent of vascular wilt disease in to...
The fungal pathogen Cladosporium fulvum causes leaf mould of tomato, a disease that causes serious e...
Resistance (R) genes and endophytic organisms can both protect plants against pathogens. Although th...
Resistance (R) genes and endophytic organisms can both protect plants against pathogens. Although th...
Resistance (R) genes and endophytic organisms can both protect plants against pathogens. Although th...
Tomato powdery mildew, caused by Oidium neolycopersici, is a destructive fungal disease that damages...
WRKYs, a large family of transcription factors, are involved in plant response to biotic and abiotic...
Resistance (R) genes and endophytic organisms can both protect plants against pathogens. Although th...
Resistance (R) genes and endophytic organisms can both protect plants against pathogens. Although th...
<p>The stereo chemical spatial arrangement of amino acid residues in the modeled domain structure fo...
<p><b>A.</b> Heat map diagramme showing the differentially upregulated WRKY transcripts (SolyWRKY4, ...
The WRKY transcription factors have indispensable role in plant growth, development and defense resp...
<p><b>A.</b> Interaction network of WRKY33 protein in <i>Arabidopsis</i> homologue of tomato. The co...
<p><b>A.</b> Histochemical staining for observation of accumulated H<sub>2</sub>O<sub>2</sub> in con...
Breeding for resistance is the most effective tool for controlling the corky root disease of tomato ...
Background: Fusarium oxysporum f. sp. lycopersici is the causal agent of vascular wilt disease in to...
The fungal pathogen Cladosporium fulvum causes leaf mould of tomato, a disease that causes serious e...
Resistance (R) genes and endophytic organisms can both protect plants against pathogens. Although th...
Resistance (R) genes and endophytic organisms can both protect plants against pathogens. Although th...
Resistance (R) genes and endophytic organisms can both protect plants against pathogens. Although th...
Tomato powdery mildew, caused by Oidium neolycopersici, is a destructive fungal disease that damages...
WRKYs, a large family of transcription factors, are involved in plant response to biotic and abiotic...
Resistance (R) genes and endophytic organisms can both protect plants against pathogens. Although th...
Resistance (R) genes and endophytic organisms can both protect plants against pathogens. Although th...