Novel Plant Growth Regulator Guvermectin from Plant Growth-Promoting Rhizobacteria Boosts Biomass and Grain Yield in Rice

生长素 油菜素甾醇 根际细菌 拟南芥 生物 赤霉素 细胞分裂素 下胚轴 转录组 胚芽鞘 植物 突变体 根际 基因 基因表达 生物化学 遗传学 细菌
作者
Chongxi Liu,Lu Bai,Peng Cao,Shanshan Li,Sheng‐Xiong Huang,Jidong Wang,Lei Li,Ji Zhang,Junwei Zhao,Jia Song,Peng Sun,Yanyan Zhang,Hui Zhang,Xiaowei Guo,Xilang Yang,Xinqiu Tan,Wende Liu,Xiangjing Wang,Wensheng Xiang
出处
期刊:Journal of Agricultural and Food Chemistry [American Chemical Society]
卷期号:70 (51): 16229-16240 被引量:39
标识
DOI:10.1021/acs.jafc.2c07072
摘要

Food is a fundamental human right, and global food security is threatened by crop production. Plant growth regulators (PGRs) play an essential role in improving crop yield and quality, and this study reports on a novel PGR, termed guvermectin (GV), isolated from plant growth-promoting rhizobacteria, which can promote root and coleoptile growth, tillering, and early maturing in rice. GV is a nucleoside analogue like cytokinin (CK), but it was found that GV significantly promoted root and hypocotyl growth, which is different from the function of CK in Arabidopsis. The Arabidopsis CK receptor triple mutant ahk2-2 ahk3-3 cre1-12 still showed a GV response. Moreover, GV led different growth-promoting traits from auxin, gibberellin (GA), and brassinosteroid (BR) in Arabidopsis and rice. The results from a four-year field trial involving 28 rice varieties showed that seed-soaking treatment with GV increased the yields by 6.2 to 19.6%, outperforming the 4.0 to 10.8% for CK, 1.6 to 16.9% for BR, and 2.2 to 7.1% for GA-auxin-BR mixture. Transcriptome analysis demonstrated that GV induced different transcriptome patterns from CK, auxin, BR, and GA, and SAUR genes may regulate GV-mediated plant growth and development. This study suggests that GV represents a novel PGR with a unique signal perception and transduction pathway in plants.
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