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1. Wild rodents seed choice is relevant for sustainable agriculture

2. GmABCG5, an ATP-binding cassette G transporter gene, is involved in the iron deficiency response in soybean

3. Combination Effects of Sulfur Fertilizer and Rhizobium Inoculant on Photosynthesis Dynamics and Yield Components of Soybean

4. Transcriptome analysis of strawberry (Fragaria × ananasa) responsive to Colletotrichum gloeosporioides inoculation and mining of resistance genes

5. Genome-wide association study uncovers major genetic loci associated with flowering time in response to active accumulated temperature in wild soybean population

6. Genome Survey and Chromosome-Level Draft Genome Assembly of Glycine max var. Dongfudou 3: Insights into Genome Characteristics and Protein Deficiencies

7. Long-Term Corn–Soybean Rotation and Soil Fertilization: Impacts on Yield and Agronomic Traits

8. The Evaluation of Agronomic Traits of Wild Soybean Accessions (Glycine soja Sieb. and Zucc.) in Heilongjiang Province, China

9. Heterosis and combining ability estimates in isoflavone content using different parental soybean accessions: wild soybean, a valuable germplasm for soybean breeding.

11. Enhanced Germination and Growth of Alfalfa with Seed Presoaking and Hydroponic Culture in Fe2O3 Magnetic Nanoparticles

12. [Regulation of plant iron homeostasis by abscisic acid: a review]

13. First Report of Powdery Mildew on

14. The genetic basis of high-latitude adaptation in wild soybean

15. CmPMRl and CmPMrs Were Responsible for Resistance to Powdery Mildew Caused by Podosphaera Xanthii Race 1 in Melon

16. A functionally divergent SOC1 homolog improves soybean yield and latitudinal adaptation

17. CmPMRl and CmPMrs are responsible for resistance to powdery mildew caused by Podosphaera xanthii race 1 in Melon

18. QTL mapping and GWAS for identification of loci conferring partial resistance to Pythium sylvaticum in soybean (Glycine max (L.) Merr)

20. Isolation and functional analysis of transcription factor GmWRKY57B from soybean

21. The fasciclin-like arabinogalactan protein family of Eucalyptus grandis contains members that impact wood biology and biomechanics

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