Jiangsu Key Laboratory for Pathogen and Ecosystems, Jiangsu Engineering and Technology Research Center for Industrialization of Microbial Resources, College of Life Sciences, Nanjing Normal University, Nanjing, Jiangsu Province, China.
BMC Plant Biol. 2024 Nov 19;24(1):1095. doi: 10.1186/s12870-024-05826-7.
Endophytes play an important role in promoting plant growth. To date, although many reports provided insight into the function of endophytes in their hosts, few reports focus on their impact on nearby plants. Intraspecific allelopathy in plant community is common and presents a notable challenge to medicinal plant yield and productivity. Atractylodes lancea is a perennial herb that has relatively low yields due to intraspecific allelopathy. The bacterial endophyte Pseudomonas fluorescens ALEB7B has previously been found to increase essential oil content of A. lancea, but the role of ALEB7B in A. lancea allelopathy is still unknown.
Noninoculated A. lancea exhibited growth retardation when it was grown in a community, which was related to ethylene-induced intraspecific allelopathy. Further experiment showed that exposing A. lancea to volatile from noninoculated A. lancea or same concentration of ethylene reduced growth of A. lancea. P. fluorescens-inoculated plants showed reduced ethylene emission and relieved growth retardation on neighboring noninoculated A. lancea. Moreover, P. fluorescens inoculation had little allelopathic effect when receivers were treated with ethylene receptor inhibitor or when emitters were treated with ethylene production inhibitor. Transcriptomic analysis revealed that endophyte ALEB7B altered transcriptional response associated with ethylene response and essential oil production in neighboring A. lancea.
Our results demonstrated that the bacterial endophyte ALEB7B provides fitness benefits for both hosts and neighbors. The allelopathic effect on nearby plants can be alleviated by altering airborne signals, such as ethylene, in endophytic bacteria.
内生菌在促进植物生长方面发挥着重要作用。迄今为止,尽管许多报告深入了解了内生菌在其宿主中的功能,但很少有报告关注它们对附近植物的影响。植物群落种内化感作用很常见,这对药用植物的产量和生产力构成了显著挑战。苍术是一种多年生草本植物,由于种内化感作用,其产量相对较低。先前发现细菌内生菌荧光假单胞菌 ALEB7B 可以增加苍术的精油含量,但 ALEB7B 在苍术化感作用中的作用尚不清楚。
未接种的苍术在群落中生长时表现出生长迟缓,这与乙烯诱导的种内化感作用有关。进一步的实验表明,将苍术暴露于未接种的苍术中的挥发性物质或相同浓度的乙烯会降低苍术的生长。荧光假单胞菌接种的植物表现出较低的乙烯排放,并缓解了对邻近未接种的苍术的生长迟缓。此外,当受体用乙烯受体抑制剂处理或发射体用乙烯产生抑制剂处理时,荧光假单胞菌接种对接收体几乎没有化感作用。转录组分析显示,内生菌 ALEB7B 改变了与乙烯反应和邻近苍术精油产生相关的转录反应。
我们的结果表明,细菌内生菌 ALEB7B 为宿主和邻居提供了适应性益处。通过改变内生细菌中的空气传播信号(如乙烯),可以减轻对附近植物的化感作用。