Dragojević Milica, Stankovic Nada, Djokic Lidija, Raičević Vera, Jovičić-Petrović Jelena
Faculty of Agriculture, University of Belgrade, Nemanjina 6, Zemun, 11080, Serbia.
Institute of Molecular Genetics and Genetic Engineering, University of Belgrade, Vojvode Stepe 444a, Belgrade, Serbia.
Environ Microbiome. 2023 Mar 18;18(1):20. doi: 10.1186/s40793-023-00477-x.
The adaptability of halophytes to increased soil salinity is related to complex rhizosphere interactions. In this study, an integrative approach, combining culture-independent and culture-dependent techniques was used to analyze the bacterial communities in the endorizosphere of indigenous succulent halophytes Salicornia europaea, Suaeda maritima, and Camphorosma annua from the natural salt marshes of Slano Kopovo (Serbia). The 16 S rDNA analyses gave, for the first time, an insight into the composition of the endophytic bacterial communities of S. maritima and C. annua. We have found that the composition of endophyte microbiomes in the same habitat is to some extent influenced by plant species. A cultivable portion of the halophyte microbiota was tested at different NaCl concentrations for the set of plant growth promoting (PGP) traits. Through the mining of indigenous halotolerant endophytes, we obtained a collection representing a core endophyte microbiome conferring desirable PGP traits. The majority (65%) of the selected strains belonged to the common halotolerant/halophilic genera Halomonas, Kushneria, and Halobacillus, with representatives exhibiting multiple PGP traits, and retaining beneficial traits in conditions of the increased salinity. The results suggest that the root endosphere of halophytes is a valuable source of PGP bacteria supporting plant growth and fitness in salt-affected soils.
盐生植物对土壤盐分增加的适应性与复杂的根际相互作用有关。在本研究中,采用了一种综合方法,将非培养技术和培养技术相结合,来分析来自塞尔维亚斯拉诺科波沃天然盐沼的本土肉质盐生植物欧洲海蓬子、海滨碱蓬和一年生樟味藜根内圈的细菌群落。16S rDNA分析首次深入了解了海滨碱蓬和一年生樟味藜内生细菌群落的组成。我们发现,同一栖息地内生微生物组的组成在一定程度上受植物种类的影响。在不同NaCl浓度下,对盐生植物微生物群中可培养部分进行了一组植物促生(PGP)性状测试。通过挖掘本土耐盐内生菌,我们获得了一个代表具有理想PGP性状的核心内生微生物组的集合。所选菌株的大多数(65%)属于常见的耐盐/嗜盐属,如嗜盐单胞菌属、库什纳氏菌属和嗜盐芽孢杆菌属,其代表菌株表现出多种PGP性状,并在盐分增加的条件下保持有益性状。结果表明,盐生植物的根内圈是支持盐渍土壤中植物生长和健康的PGP细菌的宝贵来源。