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Plant-Environment Interactions

Advances in the elucidation of nuclear proteins in the model plant Arabidopsis thaliana: based on protein interactions and bioinformatics analysis

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Pages 481-493 | Received 09 Aug 2021, Accepted 20 Oct 2021, Published online: 13 Nov 2021

Figures & data

Figure 1. Visualizing the reviewed nuclear interactome of Arabidopsis. (A) the PPI network of reviewed nuclear proteins interaction. (B) the degree of proteins in nuclear interactome. (C) the interaction network of top degree protein SKP1A (Q39255).

Figure 1. Visualizing the reviewed nuclear interactome of Arabidopsis. (A) the PPI network of reviewed nuclear proteins interaction. (B) the degree of proteins in nuclear interactome. (C) the interaction network of top degree protein SKP1A (Q39255).

Figure 2. A subnetwork of top five pathways of Arabidopsis nuclear proteins. Co-pathway proteins were circled together.

Figure 2. A subnetwork of top five pathways of Arabidopsis nuclear proteins. Co-pathway proteins were circled together.

Figure 3. A subnetwork of plant hormone signal transduction of Arabidopsis nuclear proteins.

Figure 3. A subnetwork of plant hormone signal transduction of Arabidopsis nuclear proteins.

Figure 4. Homologous proteins related to plant hormone signal transduction pathway of dicotyledonous crops. (A) Glycine max. (B) Arachis hypogaea.

Figure 4. Homologous proteins related to plant hormone signal transduction pathway of dicotyledonous crops. (A) Glycine max. (B) Arachis hypogaea.
Supplemental material

Supplemental Material

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