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1. Genome-wide association analysis and pathway enrichment provide insights into the genetic basis of photosynthetic responses to drought stress in Persian walnut

2. Dissecting the Polygenic Basis of Cold Adaptation Using Genome-Wide Association of Traits and Environmental Data in Douglas-fir

3. Genetic Analysis of Walnut (Juglans regia L.) Pellicle Pigment Variation Through a Novel, High-Throughput Phenotyping Platform.

4. Association and linkage mapping to unravel genetic architecture of phenological traits and lateral bearing in Persian walnut (Juglans regia L.)

5. High-quality chromosome-scale assembly of the walnut (Juglans regia L.) reference genome.

9. Quantitative phenotyping of shell suture strength in walnut (Juglans regia L.) enhances precision for detection of QTL and genome-wide association mapping.

10. Development of a highly efficient Axiom™ 70 K SNP array for Pyrus and evaluation for high-density mapping and germplasm characterization

11. Exome resequencing and GWAS for growth, ecophysiology, and chemical and metabolomic composition of wood of Populus trichocarpa.

12. A Reference Genome Sequence for the European Silver Fir (Abies alba Mill.): A Community-Generated Genomic Resource.

13. A new genomic tool for walnut (Juglans regia L.): development and validation of the high‐density Axiom™ J. regia 700K SNP genotyping array

14. Deciphering of the Genetic Control of Phenology, Yield, and Pellicle Color in Persian Walnut (Juglans regia L.)

15. Genomic Variation Among and Within Six Juglans Species.

16. Comparative Transcriptomics Among Four White Pine Species.

17. Genome-wide association study identifies a major gene for beech bark disease resistance in American beech (Fagus grandifolia Ehrh.)

18. Erratum to: An improved assembly of the loblolly pine mega-genome using long-read single-molecule sequencing

19. The Douglas-Fir Genome Sequence Reveals Specialization of the Photosynthetic Apparatus in Pinaceae.

27. Forest Health

35. The Conifers

37. An improved assembly of the loblolly pine mega-genome using long-read single-molecule sequencing

38. Assessing the Gene Content of the Megagenome: Sugar Pine (Pinus lambertiana).

39. Sequence of the Sugar Pine Megagenome.

40. A genome sequence for the threatened whitebark pine

42. Sequencing and Assembly of the 22-Gb Loblolly Pine Genome

43. Decoding the massive genome of loblolly pine using haploid DNA and novel assembly strategies.

44. Unique Features of the Loblolly Pine (Pinus taeda L.) Megagenome Revealed Through Sequence Annotation

45. The Evolutionary Genetics of the Genes Underlying Phenotypic Associations for Loblolly Pine (Pinus taeda, Pinaceae)

47. Development and implementation of a highly-multiplexed SNP array for genetic mapping in maritime pine and comparative mapping with loblolly pine.

48. The Pinus taeda genome is characterized by diverse and highly diverged repetitive sequences

50. Estimation of population structure in coastal Douglas-fir [Pseudotsuga menziesii (Mirb.) Franco var. menziesii] using allozyme and microsatellite markers

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