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[1]Tang Y, et al. Unveiling the molecular symphony: microRNA160a-Auxin Response Factor 18 module orchestrates low potassium tolerance in banana.Plant science,JCR 1区,2024,
[2]Jia XC et al. MaHOS15 negatively regulates plant immune defense induced by banana Fusarium wilt via salicylic acid pathway.Physiological and Molecular Plant Pathology,2024,
[3]Chen WL, et al. Combined analysis of mRNA and miRNA reveals the banana potassium absorption regulatory network and validation of miRNA160a.Plant Molecular Biology, JCR 2区,2022,
[4]唐易, 等. 微生物肥对永春芦柑品质及土壤养分的影响.华侨大学学报(自然科学版),2022,
[5]陈文亮, 等. 香蕉SCoT-PCR反应体系优化及遗传多样性分析.分子植物育种,2021,
[6]Ping Lin, et al. Expression analysis of MaTGA8 transcription factor in banana and its defence functional analysis by overexpression in Arabidopsis.International Journal of Molecular Sciences,JCR 2区,2021,
[7]Niexia Zou, et al. A novel antifungal actinomycete Streptomyces sp. strain H3-2 effectively controls banana Fusarium wilt.Frontiers in Microbiology,JCR 2区,2021,
[8]徐志周,等. 伯克霍尔德菌HQB-1抑制香蕉枯萎病菌的活性化合物分离鉴定.[J].微生物学通报,2021,
[9]Ping Lin, et al. Inoculation with arbuscular mycorrhizal fungus modulates defense- 1 related genes expression in banana seedlings susceptible to wilt disease.Plant Signaling & Behavior,JCR 4区,2021,
[10]Xu Zhizhou, et al. Isolation Burkholderia sp. HQB-1, a promising biocontrol bacteria to protect banana against Fusarium wilt through phenazine-1-carboxylic acid secretion..Frontiers in microbiology,JCR 2区,2020,
[11]林萍,等. 香蕉 TGA 转录因子家族的鉴定及枯萎病菌胁迫下的表达分析.热带作物学报,2020,
[12]张敏瑜,等. 接种丛枝菌根真菌对柑橘生长与次生代谢的影响.热带亚热带植物学报,2020,
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