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1. The chromosome-level genome assembly of Cananga odorata provides i.. [327]
2. Ethnobotanical surveys reveal the crucial role of medicinal plants.. [313]
3. Inducer of CBF Expression1 (ICE1) Interacts With WRKY46 to Modulat.. [225]
4. A telomere-to-telomere gap-free reference genome assembly of avoca.. [217]
5. Targeting urinary calcium oxalate crystallization with inulin-type.. [200]
6. 青藏高原蔓菁的传播之旅 [198]
7. Phylogeny and biogeography of Maianthemum (Asparagaceae: Nolinoide.. [195]
8. Chromosome-level genome assembly of Hippophae rhamnoides variety [184]
9. Fungal succession in decomposing woody debris across a tropical fo.. [180]
10. The chromosome-scale genomes of two Tinospora species reveal diffe.. [176]
11. The genome of Hippophae salicifolia provides new insights into the.. [169]
12. 我国橡胶树育种的技术瓶颈与创新发展建议 [164]
13. Physiological and rhizospheric response characteristics to cadmium.. [152]
14. Comparative transcriptomics analysis reveals differential Cd respo.. [150]
15. U-box E3 ubiquitin ligase PUB8 attenuates abscisic acid responses .. [148]
16. Differences in floral traits and flower visitation rates in mating.. [146]
17. UVR8-TCP4-LOX2 module regulates UV-B tolerance in Arabidopsis [145]
18. 云贵川渝生态安全屏障建设的科技挑战与发展方向 [138]
19. 中国西南干热河谷萨王纳植被综述 [123]
20. Quantitative Succinyl-Proteome Profiling of Turnip (Brassica rapa .. [114]
21. Chromosome-level genome assembly of Nothapodytes nimmoniana [107]
22. Polyaspartic acid enhances the Cd phytoextraction efficiency of Bi.. [91]
23. Mammalian research, diversity and conservation in the Far Eastern .. [90]
24. Comparative Transcriptome Analysis Reveals the Complex Molecular M.. [88]
25. ICE1 interacts with IDD14 to transcriptionally activate QQS to inc.. [82]
26. Cold Response Transcriptome Analysis of the Alternative Splicing E.. [78]
27. Ecological Restoration of Rubber Monocultures: Strategies for Biod.. [77]
28. 一种天然橡胶乳清提取方法 [76]
29. Diversity of medicinal plants and their therapeutic usages of Kach.. [75]
30. Rhizospheric microbiomics integrated with plant transcriptomics pr.. [72]
31. Integrative Conservation: A new journal from the conservation fron.. [66]
32. A functional FRIa variant drives turnip adaptation to the Qinghai-.. [3]

Downloads

1. Ethnobotanical surveys reveal the crucial role of medicinal plants.. [225]
2. The chromosome-level genome assembly of Cananga odorata provides i.. [221]
3. 青藏高原蔓菁的传播之旅 [159]
4. A telomere-to-telomere gap-free reference genome assembly of avoca.. [134]
5. Inducer of CBF Expression1 (ICE1) Interacts With WRKY46 to Modulat.. [134]
6. Targeting urinary calcium oxalate crystallization with inulin-type.. [114]
7. Chromosome-level genome assembly of Hippophae rhamnoides variety [97]
8. Fungal succession in decomposing woody debris across a tropical fo.. [95]
9. Phylogeny and biogeography of Maianthemum (Asparagaceae: Nolinoide.. [94]
10. Physiological and rhizospheric response characteristics to cadmium.. [93]
11. Differences in floral traits and flower visitation rates in mating.. [91]
12. U-box E3 ubiquitin ligase PUB8 attenuates abscisic acid responses .. [89]
13. The genome of Hippophae salicifolia provides new insights into the.. [87]
14. UVR8-TCP4-LOX2 module regulates UV-B tolerance in Arabidopsis [74]
15. 我国橡胶树育种的技术瓶颈与创新发展建议 [70]
16. The chromosome-scale genomes of two Tinospora species reveal diffe.. [69]
17. Quantitative Succinyl-Proteome Profiling of Turnip (Brassica rapa .. [62]
18. 中国西南干热河谷萨王纳植被综述 [48]
19. 云贵川渝生态安全屏障建设的科技挑战与发展方向 [44]
20. Chromosome-level genome assembly of Nothapodytes nimmoniana [44]
21. Ecological Restoration of Rubber Monocultures: Strategies for Biod.. [42]
22. Polyaspartic acid enhances the Cd phytoextraction efficiency of Bi.. [35]
23. Integrative Conservation: A new journal from the conservation fron.. [32]
24. Rhizospheric microbiomics integrated with plant transcriptomics pr.. [21]
25. Mammalian research, diversity and conservation in the Far Eastern .. [19]
26. Cold Response Transcriptome Analysis of the Alternative Splicing E.. [19]
27. Diversity of medicinal plants and their therapeutic usages of Kach.. [18]
28. Comparative Transcriptome Analysis Reveals the Complex Molecular M.. [17]
29. ICE1 interacts with IDD14 to transcriptionally activate QQS to inc.. [16]
30. Comparative transcriptomics analysis reveals differential Cd respo.. [9]
31. A functional FRIa variant drives turnip adaptation to the Qinghai-.. [3]