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19 results on '"Yue, Yuesen"'

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1. Transcriptomic and physiological analysis provide new insight into seed shattering mechanism in Pennisetum alopecuroides 'Liqiu'.

2. Octoploids Show Enhanced Salt Tolerance through Chromosome Doubling in Switchgrass ( Panicum virgatum L.).

3. Chromosome-level reference genome assembly provides insights into the evolution of Pennisetum alopecuroides .

4. The first complete mitochondrial genome of Carex (C. breviculmis): a significantly expanded genome with highly structural variations.

5. Chloroplast genomes of four Carex species: Long repetitive sequences trigger dramatic changes in chloroplast genome structure.

6. Effects of Nitrogen Forms on the Growth and Nitrogen Accumulation in Buchloe dactyloides Seedlings.

7. Single-molecule long-read sequencing analysis improves genome annotation and sheds new light on the transcripts and splice isoforms of Zoysia japonica.

8. Zoysia japonica Chlorophyll b Reductase Gene NOL Participates in Chlorophyll Degradation and Photosynthesis.

9. Seed Germination Mechanism of Carex rigescens Under Variable Temperature Determinded Using Integrated Single-Molecule Long-Read and Illumina Sequence Analysis.

10. Functional Characterization of the Pheophytinase Gene, ZjPPH , From Zoysia japonica in Regulating Chlorophyll Degradation and Photosynthesis.

11. PacBio single-molecule long-read sequencing shed new light on the complexity of the Carex breviculmis transcriptome.

12. Heterologous Expression of a Novel Zoysia japonica C 2 H 2 Zinc Finger Gene, ZjZFN1 , Improved Salt Tolerance in Arabidopsis.

13. Extended light exposure increases stem digestibility and biomass production of switchgrass.

14. Comparative Genomic and Regulatory Analyses of Natamycin Production of Streptomyces lydicus A02.

15. Tassel removal positively affects biomass production coupled with significantly increasing stem digestibility in switchgrass.

16. Overexpression of Arabidopsis molybdenum cofactor sulfurase gene confers drought tolerance in maize (Zea mays L.).

17. Overexpression of the AtLOS5 gene increased abscisic acid level and drought tolerance in transgenic cotton.

18. SOS1 gene overexpression increased salt tolerance in transgenic tobacco by maintaining a higher K(+)/Na(+) ratio.

19. Arabidopsis LOS5/ABA3 overexpression in transgenic tobacco (Nicotiana tabacum cv. Xanthi-nc) results in enhanced drought tolerance.

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