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1. OsRH52A, a DEAD-box protein, regulates functional megaspore specification and is required for embryo sac development in rice.

2. MORE FLORET1 controls anther development by negatively regulating key tapetal genes in both diploid and tetraploid rice.

3. An uncharacterized protein NY1 targets EAT1 to regulate anther tapetum development in polyploid rice.

4. Cytological Observations and Bulked-Segregant Analysis Coupled Global Genome Sequencing Reveal Two Genes Associated with Pollen Fertility in Tetraploid Rice.

5. Transcriptome and Gene Editing Analyses Reveal MOF1a Defect Alters the Expression of Genes Associated with Tapetum Development and Chromosome Behavior at Meiosis Stage Resulting in Low Pollen Fertility of Tetraploid Rice.

6. Comparative Cytological and Transcriptome Analysis Revealed the Normal Pollen Development Process and Up-Regulation of Fertility-Related Genes in Newly Developed Tetraploid Rice.

7. Global identification and analysis revealed differentially expressed lncRNAs associated with meiosis and low fertility in autotetraploid rice.

8. Analysis of small RNAs revealed differential expressions during pollen and embryo sac development in autotetraploid rice.

9. Transcriptome analysis of neo-tetraploid rice reveals specific differential gene expressions associated with fertility and heterosis.

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