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1. Refining the relationship between gut microbiota and common hematologic malignancies: insights from a bidirectional Mendelian randomization study

2. Deciphering genetic factors contributing to enhanced resistance against Cercospora leaf blight in soybean (Glycine max L.) using GWAS analysis

3. Global, national, and regional burden of acute myeloid leukemia among 60–89 years-old individuals: insights from a study covering the period 1990 to 2019

4. Identification of Quantitative Trait Loci (QTL) for Sucrose and Protein Content in Soybean Seed

5. Genome-wide association analysis of sucrose and alanine contents in edamame beans

6. Identification of genomic regions associated with soybean responses to off-target dicamba exposure

7. Incorporation of Soil-Derived Covariates in Progeny Testing and Line Selection to Enhance Genomic Prediction Accuracy in Soybean Breeding

8. Estimation of Off-Target Dicamba Damage on Soybean Using UAV Imagery and Deep Learning

9. Exploring Machine Learning Algorithms to Unveil Genomic Regions Associated With Resistance to Southern Root-Knot Nematode in Soybeans

10. Improve Soybean Variety Selection Accuracy Using UAV-Based High-Throughput Phenotyping Technology

11. Identification of new loci for salt tolerance in soybean by high-resolution genome-wide association mapping

12. Decades of Genetic Research on Soybean mosaic virus Resistance in Soybean

13. Differentiate Soybean Response to Off-Target Dicamba Damage Based on UAV Imagery and Machine Learning

14. Effect of Planting Date and Cultivar Maturity in Edamame Quality and Harvest Window

15. Utilizing Consumer Perception of Edamame to Guide New Variety Development

16. Genome-wide association study and genomic selection for yield and related traits in soybean.

17. Qualification of Soybean Responses to Flooding Stress Using UAV-Based Imagery and Deep Learning

18. Quality of Acid-Preserved Edamame Soybean at Immature and Mature Stages

19. Identification of a major quantitative trait locus underlying salt tolerance in ‘Jidou 12’ soybean cultivar

20. TILLING-by-Sequencing+ Reveals the Role of Novel Fatty Acid Desaturases (GmFAD2-2s) in Increasing Soybean Seed Oleic Acid Content

21. Evaluation of soybean genotypes for reaction to natural field infection by Cercospora species causing purple seed stain.

22. The effects of infrared treatment on physicochemical characteristics of vegetable soybean

23. Workflow for the Quantification of Soluble and Insoluble Carbohydrates in Soybean Seed

24. Information and order of information effects on consumers' acceptance and valuation for genetically modified edamame soybean.

25. iTRAQ protein profile analysis of developmental dynamics in soybean [Glycine max (L.) Merr.] leaves.

26. Genetic variation of maturity groups and four E genes in the Chinese soybean mini core collection.

27. BinPacker: Packing-Based De Novo Transcriptome Assembly from RNA-seq Data.

28. Deciphering genetic factors contributing to enhanced resistance against Cercospora leaf blight in soybean (Glycine max L.) using GWAS analysis.

29. Registration of ‘S17‐2243C’: A non‐genetically modified maturity group IV soybean cultivar with high yield and elevated oil concentration

30. Registration of ‘S16‐11644C’: A maturity group IV soybean cultivar with high‐yielding performance and broad disease resistance

32. Registration of ‘S16‐3747GT’: A high‐yielding determinate maturity group V soybean cultivar with broad biotic and abiotic stressors tolerance

33. Registration of ‘S16‐11651C’, a conventional soybean cultivar with high yield, resistance to multiple diseases, and broad adaptation

34. ‘ShowMeSoy 4301’: High‐yielding soybean with multiple disease resistance and elevated seed oil content

35. Registration of ‘S15‐10434C’ soybean cultivar with high yield, resistance to multiple diseases, and wide adaptation

36. Registration of ‘S16‐15170C’ soybean: A high‐yielding indeterminate maturity group V cultivar with wide adaptability and multiple disease resistance

37. Registration of ‘S16‐5540GT’ soybean cultivar with high yield, resistance to multiple diseases, elevated protein content, and wide adaptation

38. Registration of ‘S13‐10592C’, a high‐yielding soybean cultivar with resistance to multiple diseases and elevated oil content

40. Developing a high‐throughput method to screen soybean germplasm for hypoxia tolerance in a hydroponic system

41. Response to selection to different breeding methods for soybean flood tolerance

43. Registration of ‘S13‐3851C’ soybean as a high‐yielding conventional cultivar with high oil content and broad disease resistance and adaptation

45. ‘S13‐1955C’: A high‐yielding conventional soybean with high oil content, multiple disease resistance, and broad adaptation

47. Registration of ‘S13‐2743C’ as a conventional soybean cultivar with high oil content, broad disease resistance, and high yield potential

48. Registration of ‘R13‐13997’ soybean cultivar

49. Yield estimation of soybean breeding lines under drought stress using unmanned aerial vehicle-based imagery and convolutional neural network

50. Correction to: Breeding for disease resistance in soybean: a global perspective

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