木质素
化学
作物生产力
转录组
生物化学
食品科学
营养物
植物
叶绿素
转录因子
作物
生物技术
信号转导
光合作用
竹子
生物
基因表达
基因
细胞生长
植物激素
生物合成
有机化学
碳纤维
多酚
植物生长
植物生理学
下调和上调
作者
Ruonan Shi,Dandan Wu,Sehrish Manan,M. Mostafizur Rahman,Chaofeng Zhang,Wenjuan Wu,Bo Jiang,Yongcan Jin
标识
DOI:10.1021/acs.jafc.5c12293
摘要
Lignin is a promising biostimulant for enhancing plant growth and stress tolerance. In this study, bamboo kraft lignin (BKL) and its oxygen-alkali-modified derivative (OBKL) were applied to maize seedlings to elucidate the structure-function relationship. The increased hydrophilic groups of OBKL improved its capacity to enhance water and nutrient uptake, resulting in a 50% increase in root elongation, 65% enhancement in photosynthesis, and a 106% rise in transpiration. Low-molecular-weight OBKL promoted chlorophyll synthesis and stress resilience, whereas high-molecular-weight lignin suppressed growth. Transcriptomics analysis revealed that OBKL upregulated 1333 genes, including key transcription factors such as AP2/ERF, WRKY, MYB, and NAC, which are involved in regulating cell proliferation, tropisms, carbon metabolism, and stress responses. Genomes and Gene Ontology analysis further identified plant hormone signal transduction regulated by lignin as a major pathway. These findings reveal that OBKL is an effective biostimulant for improving crop productivity and environmental adaptability.
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