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10 merged results for "Drought and Salt Tolerance"

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  1. Genome-wide analysis of the mango YUCCA family and overexpression of MiYUCCA10A/B confers early flowering and stress tolerance in transgenic Arabidopsis and tomato.

    He Z, Hu W, Qin L, Huang C · 2026 · Plant cell reports

    limited evidence Transparent signal score 43/100 · policy 1.0.0

    Found in pubmed · DOI 10.1007/s00299-026-03981-9

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  2. Genome‑wide identification of NAC transcription factor family members and functional characterization of FaNAC7‑Fve6 in low‑temperature tolerance via the ROS scavenging pathway in Fragaria × ananassa.

    Han J, Li X, Zhang L, Liu W · 2026 · Plant science : an international journal of experimental plant biology

    limited evidence Transparent signal score 43/100 · policy 1.0.0

    Found in pubmed · DOI 10.1016/j.plantsci.2026.113451

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  3. Identification and analysis of glutaredoxin genes in Amaranthus palmeri reveal roles in abiotic stress responses.

    Jin K, Wang Y, Bimpong D, Chen W · 2026 · Plant physiology and biochemistry : PPB

    limited evidence Transparent signal score 43/100 · policy 1.0.0

    Found in pubmed · DOI 10.1016/j.plaphy.2026.111770

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  4. Systematic identification and functional characterization of EPF/EPFL peptides involved in drought stress responses in tobacco.

    Wen L, Xiong T, Xu W, Wan S · 2026 · Plant physiology and biochemistry : PPB

    limited evidence Transparent signal score 43/100 · policy 1.0.0

    Found in pubmed · DOI 10.1016/j.plaphy.2026.111771

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  5. Comprehensive analysis of ABA-aldehyde oxidase genes associated with drought and salt stress tolerance in wheat (Triticum aestivum L.).

    Fan Z, Ma Y, Sun X, Lu X · 2026 · Frontiers in plant science

    limited evidence Transparent signal score 45/100 · policy 1.0.0

    Found in pubmed · DOI 10.3389/fpls.2026.1897567

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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
  6. Comparative genomics and stress-responsive expression of the IMP gene family in Sorghum bicolor.

    Zheng L, Zhou X, Wei F, Han Y · 2026 · Frontiers in plant science

    limited evidence Transparent signal score 45/100 · policy 1.0.0

    Found in pubmed · DOI 10.3389/fpls.2026.1941259

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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
  7. Whole Genome Sequencing of the Moruga Hill Rice (Oryza glaberrima) Reveals Its African Ancestry and the Presence of Candidate Stress-Tolerance Genes.

    Sahadeo UM, Ali O, Ramsubhag A, Carrington C · 2026 · Biotech (Basel (Switzerland))

    limited evidence Transparent signal score 45/100 · policy 1.0.0

    Found in pubmed · DOI 10.3390/biotech15040073

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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
  8. Genome-Wide Identification of the Soybean GH5 Gene Family and Functional Analysis of GmGH5-22 in Salt Tolerance.

    Chen X, Ren L, Mu N, Guo X · 2026 · Plants (Basel, Switzerland)

    limited evidence Transparent signal score 45/100 · policy 1.0.0

    Found in pubmed · DOI 10.3390/plants15172700

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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
  9. Time-Course Transcriptomic Analysis Identifies MsTIFY11B as a Promising Candidate Regulator of Salt-Alkali Tolerance in Alfalfa (Medicago sativa L.).

    Cheng L, Liu Y, Liu Q, Li D · 2026 · Plants (Basel, Switzerland)

    limited evidence Transparent signal score 45/100 · policy 1.0.0

    Found in pubmed · DOI 10.3390/plants15172714

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  10. Generating drought- and salt-tolerant tomato germplasm through bioengineering of the ethylene response factor SlERF.J2.

    Chen YN, Huang SY, Wang ZY, Sun YH · 2026 · Engineering in life sciences

    limited evidence Transparent signal score 45/100 · policy 1.0.0

    Found in pubmed · DOI 10.48130/els-0026-0003

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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer