Henan Biopesticide Engineering Research Center, Henan Agricultural Microbiology Innovation Center, Institute of Plant Protection Research, Henan Academy of Agricultural Sciences, Zhengzhou 450002, China.
College of Life Sciences, Henan Agricultural University, Zhengzhou 450002, China.
J Agric Food Chem. 2024 Sep 18;72(37):20273-20285. doi: 10.1021/acs.jafc.4c02192. Epub 2024 Sep 3.
Transposon mutagenesis screening of YB-1471, a novel rhizosphere biocontrol agent of Fusarium crown rot (FCR) of wheat, resulted in the identification of , linked to reduced biofilm formation. The gene encodes a protein possessing a putative tertiary structure of a "double-wing" DNA-binding domain. Expression of increased during biofilm development in stationary cultures and during rapid growth in shaking cultures. An deletion strain showed reduced biofilm production related to lower levels of the extracellular matrix, and the mutant also had reduced sporulation, adhesion, root colonization, and FCR biocontrol efficiency. Transcriptome analysis of YB-1471 and Δorf04391 in stationary culture showed that the loss of resulted in altered expression of numerous genes, including , an initiator of biofilm formation. DNA binding was shown with his-tagged Orf04391 binding to the operon in vivo and in vitro. Orf04391 appears to be a transcriptional regulator of biofilm formation in through the Spo0A-SinI/SinR pathway.
转座子诱变筛选小麦镰孢菌根腐病(FCR)新型根际生防菌 YB-1471,鉴定出与生物膜形成减少相关的 。该基因编码一种具有“双翅”DNA 结合域假定三级结构的蛋白质。在静止培养物中的生物膜发育过程中以及在摇瓶培养物中的快速生长过程中,表达 增加。缺失 突变株的生物膜产量降低与细胞外基质水平降低有关,该突变体的产孢、粘附、根定植和 FCR 生防效率也降低。在静止培养物中对 YB-1471 和 Δorf04391 的转录组分析表明, 的缺失导致包括生物膜形成起始子 在内的许多基因的表达发生改变。体内和体外实验均表明 His 标记的 Orf04391 与 操纵子结合。Orf04391 似乎通过 Spo0A-SinI/SinR 途径成为 生物膜形成的转录调控因子。