20 results on '"Chai, Tuanyao"'
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2. Synergistic role of phenylpropanoid biosynthesis and citrate cycle pathways in heavy metal detoxification through secretion of organic acids
3. Scenedesmus acuminatus as a potential phycoremediator: Enrichment and detoxification of cadmium/lead
4. Combined analysis of Polygonum cuspidatum transcriptome and metabolome revealed that PcMYB62, a transcription factor, responds to methyl jasmonate and inhibits resveratrol biosynthesis
5. Nitrate confers rice adaptation to high ammonium by suppressing its uptake but promoting its assimilation
6. New potential transporter CIPAS8 enhances cadmium hypersensitivity and cobalt tolerance
7. Overexpression of the Polygonum cuspidatum PcDREB2A Gene Encoding a DRE-Binding Transcription Factor Enhances the Drought Tolerance of Transgenic Arabidopsis thaliana
8. Transient expression of a TaGRF4-TaGIF1 complex stimulates wheat regeneration and improves genome editing
9. De novo assembly and comparative analysis of the mitochondrial genome of Reynoutria japonica
10. Chlorella pyrenoidosa as a potential bioremediator: Its tolerance and molecular responses to cadmium and lead
11. Plant cadmium resistance 10 enhances tolerance to toxic heavy metals in poplar
12. An endoplasmic reticulum-associated degradation–related E2–E3 enzyme pair controls grain size and weight through the brassinosteroid signaling pathway in rice
13. A Comparative Phylogenetic Analysis on the Chloroplast Genome in Different Reynoutria japonica Populations
14. Requirement and functional redundancy of two large ribonucleotide reductase subunit genes for cell cycle, chloroplast biogenesis and photosynthesis in tomato
15. Crosstalk Between Iron and Sulfur Homeostasis Networks in Arabidopsis
16. MTP8 from Triticum urartu Is Primarily Responsible for Manganese Tolerance
17. PcWRKY11, an II-d WRKY Transcription Factor from Polygonum cuspidatum, Enhances Salt Tolerance in Transgenic Arabidopsis thaliana
18. An endoplasmic reticulum-associated degradation–related E2–E3 enzyme pair controls grain size and weight through the brassinosteroid signaling pathway in rice.
19. New Biofortification Tool: Wheat TaCNR5 Enhances Zinc and Manganese Tolerance and Increases Zinc and Manganese Accumulation in Rice Grains
20. Chlorella pyrenoidosa as a potential bioremediator: Its tolerance and molecular responses to cadmium and lead.
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