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Salicornia strobilacea (Synonym of Halocnemum strobilaceum) Grown under Different Tidal Regimes Selects Rhizosphere Bacteria Capable of Promoting Plant Growth

机译:在不同的潮汐条件下生长的Salicornia strobilacea(Salbilnemum strobilaceum的代名词)选择能够促进植物生长的根际细菌

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摘要

Halophytes classified under the common name of salicornia colonize salty and coastal environments across tidal inundation gradients. To unravel the role of tide-related regimes on the structure and functionality of root associated bacteria, the rhizospheric soil of Salicornia strobilacea (synonym of Halocnemum strobilaceum) plants was studied in a tidal zone of the coastline of Southern Tunisia. Although total counts of cultivable bacteria did not change in the rhizosphere of plants grown along a tidal gradient, significant differences were observed in the diversity of both the cultivable and uncultivable bacterial communities. This observation indicates that the tidal regime is contributing to the bacterial species selection in the rhizosphere. Despite the observed diversity in the bacterial community structure, the plant growth promoting (PGP) potential of cultivable rhizospheric bacteria, assessed through in vitro and in vivo tests, was equally distributed along the tidal gradient. Root colonization tests with selected strains proved that halophyte rhizospheric bacteria (i) stably colonize S. strobilacea rhizoplane and the plant shoot suggesting that they move from the root to the shoot and (ii) are capable of improving plant growth. The versatility in the root colonization, the overall PGP traits and the in vivo plant growth promotion under saline condition suggest that such beneficial activities likely take place naturally under a range of tidal regimes.
机译:归类为水杨属的盐生植物在潮汐淹没梯度上定居在咸水和沿海环境中。为了揭示与潮汐有关的机制在根系相关细菌的结构和功能上的作用,在突尼斯南部海岸线的一个潮汐带研究了Salicornia strobilacea(Shalbilemum strobilaceum的代名词)植物的根际土壤。尽管沿潮汐梯度生长的植物的根际中可培养细菌的总数没有变化,但可培养细菌群落和不可培养细菌群落的多样性均存在显着差异。该观察结果表明,潮汐机制有助于根际中细菌种类的选择。尽管观察到细菌群落结构的多样性,但通过体外和体内试验评估的可培养根际细菌的植物生长促进(PGP)潜力沿潮汐梯度均匀分布。用选定菌株进行的根定殖试验证明,盐生植物根际细菌(i)稳定地在s.strobilacea根瘤菌和植物枝条上定殖,表明它们从根部移到枝条上,并且(ii)能够改善植物的生长。根部定植的多功能性,总体PGP性状和在盐条件下促进体内植物生长表明,这种有益的活动可能在一系列潮汐条件下自然发生。

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