Molecular module GmPTF1a/b‐GmNPLa regulates rhizobia infection and nodule formation in soybean

生物 根瘤菌 细胞生物学 结核(地质) 遗传学 共生 化学 微生物学 细菌 古生物学
作者
Xiao Zhang,Jia‐Xin Chen,Wenting Lian,Huiwen Zhou,Ying He,Xinxin Li,Hong Liao
出处
期刊:New Phytologist [Wiley]
卷期号:241 (4): 1813-1828 被引量:4
标识
DOI:10.1111/nph.19462
摘要

Summary Nodulation begins with the initiation of infection threads (ITs) in root hairs. Though mutual recognition and early symbiotic signaling cascades in legumes are well understood, molecular mechanisms underlying bacterial infection processes and successive nodule organogenesis remain largely unexplored. We functionally investigated a novel pectate lyase enzyme, GmNPLa, and its transcriptional regulator GmPTF1a/b in soybean ( Glycine max ), where their regulatory roles in IT development and nodule formation were elucidated through investigation of gene expression patterns, bioinformatics analysis, biochemical verification of genetic interactions, and observation of phenotypic impacts in transgenic soybean plants. GmNPLa was specifically induced by rhizobium inoculation in root hairs. Manipulation of GmNPLa produced remarkable effects on IT and nodule formation. GmPTF1a/b displayed similar expression patterns as GmNPLa , and manipulation of GmPTF1a/b also severely influenced nodulation traits. LI soybeans with low nodulation phenotypes were nearly restored to HI nodulation level by complementation of GmNPLa and/or GmPTF1a. Further genetic and biochemical analysis demonstrated that GmPTF1a can bind to the E‐box motif to activate transcription of GmNPLa , and thereby facilitate nodulation. Taken together, our findings potentially reveal novel mediation of cell wall gene expression involving the basic helix–loop–helix transcription factor GmPTF1a/b acts as a key early regulator of nodulation in soybean.
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