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1. Pupylation-based proximity labeling reveals regulatory factors in cellulose biosynthesis in Arabidopsis.

2. The fnr-like mutants confer isoxaben tolerance by initiating mitochondrial retrograde signalling.

3. NKS1/ELMO4 is an integral protein of a pectin synthesis protein complex and maintains Golgi morphology and cell adhesion in Arabidopsis .

4. Tip Growth Defective1 interacts with the cellulose synthase complex to regulate cellulose synthesis in Arabidopsis thaliana.

5. Phosphate starvation regulates cellulose synthesis to modify root growth.

7. Structure of Arabidopsis CESA3 catalytic domain with its substrate UDP-glucose provides insight into the mechanism of cellulose synthesis.

8. The transcription and export complex THO/TREX contributes to transcription termination in plants.

9. The companion of cellulose synthase 1 confers salt tolerance through a Tau-like mechanism in plants.

10. Cell wall integrity modulates Arabidopsis thaliana cell cycle gene expression in a cytokinin- and nitrate reductase-dependent manner.

11. Phosphate Deficiency Induces the Jasmonate Pathway and Enhances Resistance to Insect Herbivory.

12. The EXS Domain of PHO1 Participates in the Response of Shoots to Phosphate Deficiency via a Root-to-Shoot Signal.

13. Coordination between zinc and phosphate homeostasis involves the transcription factor PHR1, the phosphate exporter PHO1, and its homologue PHO1;H3 in Arabidopsis.

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