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1. Algal light sensing and photoacclimation in aquatic environments.

2. Marine algae and land plants share conserved phytochrome signaling systems.

3. Eukaryotic algal phytochromes span the visible spectrum.

4. Retrograde bilin signaling enables Chlamydomonas greening and phototrophic survival.

5. Signaling by reactive molecules and antioxidants in legume nodules.

6. Persulfidation of plant and bacteroid proteins is involved in legume nodule development and senescence.

7. Wild species rice OsCERK1DY-mediated arbuscular mycorrhiza symbiosis boosts yield and nutrient use efficiency in rice breeding.

8. Dynamics of hemoglobins during nodule development, nitrate response, and dark stress in Lotus japonicus.

9. Heme catabolism mediated by heme oxygenase in uninfected interstitial cells enables efficient symbiotic nitrogen fixation in Lotus japonicus nodules.

10. ARBUSCULAR MYCORRHIZA-INDUCED KINASES AMK8 and AMK24 associate with the receptor-like kinase KINASE3 to regulate arbuscular mycorrhizal symbiosis in Lotus japonicus.

11. A transcription factor of the NAC family regulates nitrate‐induced legume nodule senescence.

12. A Wild Rice Rhizobacterium Burkholderia cepacia BRDJ Enhances Nitrogen Use Efficiency in Rice.

13. Expansion of bilin‐based red light sensors in the subaerial desert cyanobacterium Nostoc flagelliforme.

14. Three classes of hemoglobins are required for optimal vegetative and reproductive growth of Lotus japonicus: genetic and biochemical characterization of LjGlb2-1.

15. Single cell‐type transcriptome profiling reveals genes that promote nitrogen fixation in the infected and uninfected cells of legume nodules.

16. Bilin-dependent regulation of chlorophyll biosynthesis by GUN4.

17. Natural variation at OsCERK1 regulates arbuscular mycorrhizal symbiosis in rice.

18. CRISPR/Cas9 knockout of leghemoglobin genes in Lotus japonicus uncovers their synergistic roles in symbiotic nitrogen fixation.

19. Overexpression of particular MADS‐box transcription factors in heat‐stressed plants induces chloroplast biogenesis in petals.

20. Suppression of innate immunity mediated by the CDPK‐Rboh complex is required for rhizobial colonization in Medicago truncatula nodules.

21. A C3HC4‐type RING finger protein regulates rhizobial infection and nodule organogenesis in Lotus japonicus.

22. Bilin-Dependent Photoacclimation in Chlamydomonas reinhardtii.

23. NODULES WITH ACTIVATED DEFENSE 1 is required for maintenance of rhizobial endosymbiosis in Medicago truncatula.

24. Molecular Characterization of Carbonic Anhydrase Genes in Lotus japonicus and Their Potential Roles in Symbiotic Nitrogen Fixation.

25. Using Amaranthus green proteins as universal biosurfactant and biosorbent for effective enzymatic degradation of diverse lignocellulose residues and efficient multiple trace metals remediation of farming lands.

26. Dephosphorylation of LjMPK6 by Phosphatase LjPP2C is Involved in Regulating Nodule Organogenesis in Lotus japonicus.

27. Genome Editing in Cowpea Vigna unguiculata Using CRISPR-Cas9.

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