Rosier Amanda, Bais Harsh P
Department of Plant and Soil Sciences, University of Delaware, 311 AP Biopharma, 590 Avenue 1743, Newark, DE, 19713, USA.
Plant Methods. 2022 Sep 16;18(1):112. doi: 10.1186/s13007-022-00944-5.
Defining interactions of bacteria in the rhizosphere (encompassing the area near and on the plant root) is important to understand how they affect plant health. Some rhizosphere bacteria, including plant growth promoting rhizobacteria (PGPR) engage in the intraspecies communication known as quorum sensing (QS). Many species of Gram-negative bacteria use extracellular autoinducer signal molecules called N-acyl homoserine lactones (AHLs) for QS. Other rhizobacteria species, including PGPRs, can interfere with or disrupt QS through quorum quenching (QQ). Current AHL biosensor assays used for screening and identifying QS and QQ bacteria interactions fail to account for the role of the plant root.
Medicago spp. seedlings germinated on Lullien agar were transferred to soft-agar plates containing the broad-range AHL biosensor Agrobacterium tumefaciens KYC55 and X-gal substrate. Cultures of QS and QQ bacteria as well as pure AHLs and a QQ enzyme were applied to the plant roots and incubated for 3 days.
We show that this expanded use of an AHL biosensor successfully allowed for visualization of QS/QQ interactions localized at the plant root. KYC55 detected pure AHLs as well as AHLs from live bacteria cultures grown directly on the media. We also showed clear detection of QQ interactions occurring in the presence of the plant root.
Our novel tri-trophic system using an AHL biosensor is useful to study QS interspecies interactions in the rhizosphere.
定义根际(包括植物根系附近和根系上的区域)中细菌之间的相互作用对于理解它们如何影响植物健康至关重要。一些根际细菌,包括促进植物生长的根际细菌(PGPR),参与了被称为群体感应(QS)的种内通讯。许多革兰氏阴性细菌使用称为N-酰基高丝氨酸内酯(AHLs)的细胞外自诱导信号分子进行群体感应。其他根际细菌物种,包括PGPR,可以通过群体猝灭(QQ)干扰或破坏群体感应。目前用于筛选和鉴定群体感应和群体猝灭细菌相互作用的AHL生物传感器检测方法没有考虑到植物根系的作用。
将在Lullien琼脂上萌发的苜蓿属幼苗转移到含有广谱AHL生物传感器根癌农杆菌KYC55和X-gal底物的软琼脂平板上。将群体感应和群体猝灭细菌培养物以及纯AHLs和一种群体猝灭酶应用于植物根系,并孵育3天。
我们表明,这种对AHL生物传感器的扩展应用成功地实现了对定位于植物根系的群体感应/群体猝灭相互作用的可视化。KYC55检测到纯AHLs以及直接在培养基上生长的活细菌培养物中的AHLs。我们还清楚地检测到在植物根系存在的情况下发生的群体猝灭相互作用。
我们使用AHL生物传感器的新型三营养系统有助于研究根际中的群体感应种间相互作用。