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2. Breeding progress and preparedness for mass‐scale deployment of perennial lignocellulosic biomass crops switchgrass, miscanthus, willow and poplar

3. Breeding progress and preparedness for mass-scale deployment of perennial lignocellulosic biomass crops switchgrass, miscanthus, willow and poplar.

4. Yield development and nutrient offtake in contrasting miscanthus hybrids under green and brown harvest regimes.

5. Assessment of Drought and Zinc Stress Tolerance of Novel Miscanthus Hybrids and Arundo donax Clones Using Physiological, Biochemical, and Morphological Traits.

7. Range finding and testing factors affecting Miscanthus germination and early growth data

8. Improving field establishment and yield in seed propagated Miscanthus through manipulating plug size, sowing date and seedling age.

13. Optimizing seed‐based Miscanthus plug plant production with supplemental heat and light, compost type and volume.

14. Using a Taguchi DOE to investigate factors and interactions affecting germination in Miscanthus sinensis

15. Could Miscanthus replace maize as the preferred substrate for anaerobic digestion in the United Kingdom? Future breeding strategies

16. Linkage mapping evidence for a syntenic QTL associated with flowering time in perennial C4 rhizomatous grasses Miscanthus and switchgrass.

17. Commercial experience with miscanthus crops: Establishment, yields and environmental observations.

18. Projections of global and UK bioenergy potential from Miscanthus × giganteus—Feedstock yield, carbon cycling and electricity generation in the 21st century.

19. Measured and modelled effect of land‐use change from temperate grassland to Miscanthus on soil carbon stocks after 12 years.

20. Stem growth characteristics of high yielding Miscanthus correlate with yield, development and intraspecific competition within plots.

21. Assessing seed priming, sowing date, and mulch film to improve the germination and survival of direct‐sown Miscanthus sinensis in the United Kingdom.

22. Partitioning of ecosystem respiration of CO2 released during land-use transition from temperate agricultural grassland to Miscanthus × giganteus.

23. Economic and Environmental Assessment of Seed and Rhizome Propagated Miscanthus in the UK.

24. Towards Miscanthus combustion quality improvement: the role of flowering and senescence.

25. Environmental costs and benefits of growing Miscanthus for bioenergy in the UK.

26. Progress in upscaling Miscanthus biomass production for the European bio-economy with seed-based hybrids.

27. An interyear comparison of CO2 flux and carbon budget at a commercial-scale land-use transition from semi-improved grassland to Miscanthus x giganteus.

28. Land use change from C3 grassland to C4 Miscanthus: effects on soil carbon content and estimated mitigation benefit after six years.

29. Accelerating the domestication of a bioenergy crop: identifying and modelling morphological targets for sustainable yield increase in Miscanthus.

30. Variation in canopy duration in the perennial biofuel crop Miscanthus reveals complex associations with yield.

31. Characterization of chilling-shock responses in four genotypes of Miscanthus reveals the superior tolerance of M. × giganteus compared with M. sinensis and M. sacchariflorus.

32. Seasonal Dynamics of Dry Matter Accumulation and Nutrients in a Mature Miscanthus × giganteus Stand in the Lower Silesia Region of Poland.

33. Wild Miscanthus Germplasm in a Drought-Affected Area: Physiology and Agronomy Appraisals.

34. Breeding Strategies to Improve Miscanthus as a Sustainable Source of Biomass for Bioenergy and Biorenewable Products.

35. Costs of producing miscanthus and switchgrass for bioenergy in Illinois

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