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2. The Evolution of an Invasive Plant, Sorghum halepense L. (Johnsongrass).

5. GRABSEEDS: extraction of plant organ traits through image analysis.

7. Rice Seedlings and Microorganisms Mediate Biotransformation of Se in CdSe/ZnS Quantum Dots to Volatile Alkyl Selenides

8. Sorghum SbGhd7 is a major regulator of floral transition and directly represses genes crucial for flowering activation.

9. Discussion: Prioritize perennial grain development for sustainable food production and environmental benefits

11. Genome and evolution of Prosopis alba Griseb., a drought and salinity tolerant tree legume crop for arid climates

14. Prioritize perennial grain development for sustainable food production and environmental benefits:Discussion

20. Comparative evolution of vegetative branching in sorghum

24. The Evolution of an Invasive Plant, Sorghum halepense L. ('Johnsongrass')

26. Genetic variation underlying kernel size, shape, and color in two interspecific S. bicolor2 × S. halepense subpopulations.

29. The Evolution of an Invasive Plant, Sorghum halepense L. (‘Johnsongrass’)

35. Genotyping by Sequencing of 393 Sorghum bicolor BTx623 × IS3620C Recombinant Inbred Lines Improves Sensitivity and Resolution of QTL Detection

36. Genotyping by sequencing of 393Sorghum bicolorBTx623 × IS3620C recombinant inbred lines improves sensitivity and resolution of QTL detection

38. Multi-Phase US Spread and Habitat Switching of a Post-Columbian Invasive, Sorghum halepense

39. Multi-Phase US Spread and Habitat Switching of a Post-Columbian Invasive, Sorghum halepense

42. High proportion of diploid hybrids produced by interspecific diploid × tetraploid <italic>Sorghum</italic> hybridization.

46. Genetic Analysis of Recombinant Inbred Lines forSorghum bicolor × Sorghum propinquum

47. Reconstructing changes in the genotype, phenotype, and climatic niche of an introduced species.

48. GENETIC ANALYSIS OF RHIZOMATOUSNESS AND ITS RELATIONSHIP WITH VEGETATIVE BRANCHING OF RECOMBINANT INBRED LINES OF SORGHUM BICOLOR X S. PROPINQUUM.

49. Genetic Analysis of Stem Diameter and Water Contents To Improve Sorghum Bioenergy Efficiency.

50. Genotyping by Sequencing of 393 Sorghum bicolor BTx623 × IS3620C Recombinant Inbred Lines Improves Sensitivity and Resolution of QTL Detection.

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