Fig. 5. Gene Ontology (GO) classification of genes that only expressed differently in tolerant material 'Dianbei' and expressed differently between two materials all the time. (a) Gene Ontology (GO) classification of 1395 genes only expressed differently in tolerant material 'Dianbei'; (b) GO classification of 18 genes that were found to expressed differently between two materials all the time.Published as part of Zeng, Bing, Zhang, Yajie, Zhang, Ailing, Qiao, Dandan, Ren, Juncai, Li, Mingyang, Cai, Kai, Zhang, Jinhua & Huang, Linkai, 2020, Transcriptome profiling of two Dactylis glomerata L. cultivars with different tolerance in response to submergence stress, pp. 1-11 in Phytochemistry (112378) 175 on page 7, DOI: 10.1016/j.phytochem.2020...
Copyright © 2014 Hui-Yee Yong et al. This is an open access article distributed under the Creative C...
Fig. 1. Volcano plot showing the DEGs of G34-S3 vs G34-CK comparison. The up-regulated genes with st...
<p>Gene Ontology classifications of differential expressed unigenes in roots (A) and leaves (B) unde...
Fig. 3. Gene Ontology (GO) classification of assembled unigenes in two D. glomerata cultivars, subme...
Fig. 2. Venn diagram of differentially expressed genes (DEGs).Published as part of Zeng, Bing, Zhang...
Fig. 1. Hierarchical clustering analysis of changes in gene expression in two D. glomerata cultivars...
Fig. 4. Scatterplot of enriched KEGG pathways for differentially expressed genes between two D. glom...
Zeng, Bing, Zhang, Yajie, Zhang, Ailing, Qiao, Dandan, Ren, Juncai, Li, Mingyang, Cai, Kai, Zhang, J...
IntroductionSubmergence stress creates a hypoxic environment. Roots are the first plant organ to fac...
IntroductionSubmergence stress creates a hypoxic environment. Roots are the first plant organ to fac...
IntroductionSubmergence stress creates a hypoxic environment. Roots are the first plant organ to fac...
IntroductionSubmergence stress creates a hypoxic environment. Roots are the first plant organ to fac...
IntroductionSubmergence stress creates a hypoxic environment. Roots are the first plant organ to fac...
IntroductionSubmergence stress creates a hypoxic environment. Roots are the first plant organ to fac...
Fig. 3. Functional annotation of differentially expressed genes (DEGs) based on gene ontology catego...
Copyright © 2014 Hui-Yee Yong et al. This is an open access article distributed under the Creative C...
Fig. 1. Volcano plot showing the DEGs of G34-S3 vs G34-CK comparison. The up-regulated genes with st...
<p>Gene Ontology classifications of differential expressed unigenes in roots (A) and leaves (B) unde...
Fig. 3. Gene Ontology (GO) classification of assembled unigenes in two D. glomerata cultivars, subme...
Fig. 2. Venn diagram of differentially expressed genes (DEGs).Published as part of Zeng, Bing, Zhang...
Fig. 1. Hierarchical clustering analysis of changes in gene expression in two D. glomerata cultivars...
Fig. 4. Scatterplot of enriched KEGG pathways for differentially expressed genes between two D. glom...
Zeng, Bing, Zhang, Yajie, Zhang, Ailing, Qiao, Dandan, Ren, Juncai, Li, Mingyang, Cai, Kai, Zhang, J...
IntroductionSubmergence stress creates a hypoxic environment. Roots are the first plant organ to fac...
IntroductionSubmergence stress creates a hypoxic environment. Roots are the first plant organ to fac...
IntroductionSubmergence stress creates a hypoxic environment. Roots are the first plant organ to fac...
IntroductionSubmergence stress creates a hypoxic environment. Roots are the first plant organ to fac...
IntroductionSubmergence stress creates a hypoxic environment. Roots are the first plant organ to fac...
IntroductionSubmergence stress creates a hypoxic environment. Roots are the first plant organ to fac...
Fig. 3. Functional annotation of differentially expressed genes (DEGs) based on gene ontology catego...
Copyright © 2014 Hui-Yee Yong et al. This is an open access article distributed under the Creative C...
Fig. 1. Volcano plot showing the DEGs of G34-S3 vs G34-CK comparison. The up-regulated genes with st...
<p>Gene Ontology classifications of differential expressed unigenes in roots (A) and leaves (B) unde...