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1. Light regulates nuclear detainment of intron-retained transcripts through COP1-spliceosome to modulate photomorphogenesis

2. Allantoate Amidohydrolase OsAAH is Essential for Preharvest Sprouting Resistance in Rice

3. Phylogenetic analysis of endogenous viral elements in the rice genome reveals local chromosomal evolution in Oryza AA-genome species

4. Reprogramming of phytopathogen transcriptome by a non-bactericidal pesticide residue alleviates its virulence in rice

5. Comprehensive QTL analyses of nitrogen use efficiency in indica rice

6. Association Study Reveals Genetic Loci Responsible for Arsenic, Cadmium and Lead Accumulation in Rice Grain in Contaminated Farmlands

7. Genomic fossils reveal adaptation of non-autonomous pararetroviruses driven by concerted evolution of noncoding regulatory sequences.

8. Phyllosphere microbiome induces host metabolic defence against rice false-smut disease

9. Identification of a key locus, qNL3.1, associated with seed germination under salt stress via a genome-wide association study in rice

10. OsHIPL1 , a hedgehog‐interacting protein‐like 1 protein, increases seed vigour in rice

11. Bacterial seed endophyte shapes disease resistance in rice

12. Identification of OsPK5 involved in rice glycolytic metabolism and GA/ABA balance for improving seed germination via genome-wide association study

13. Innate Vulnerability of Oryza glaberrima to Rice tungro bacilliform virus

14. TSC1 enables plastid development under dark conditions, contributing to rice adaptation to transplantation shock

16. Genome-wide binding analysis reveals that ANAC060 directly represses sugar-induced transcription of ABI5 in Arabidopsis

17. Ancient Endogenous Pararetroviruses in Oryza Genomes Provide Insights into the Heterogeneity of Viral Gene Macroevolution

18. TSC1 enables plastid development under dark conditions, contributing to rice adaptation to transplantation shock

19. Rice genomes recorded ancient pararetrovirus activities: Virus genealogy and multiple origins of endogenization during rice speciation

20. Evolutionary force of AT-rich repeats to trap genomic and episomal DNAs into the rice genome: lessons from endogenous pararetrovirus

21. Genomic fossils reveal adaptation of non-autonomous pararetroviruses driven by concerted evolution of noncoding regulatory sequences

22. Evolutionary force of AT-rich repeats to trap genomic and episomal DNAs into the rice genome: lessons from endogenous pararetrovirus

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