Department of Molecular Ecology, Max Planck Institute for Chemical Ecology, Jena, Germany.
Front Plant Sci. 2012 Jun 11;3:112. doi: 10.3389/fpls.2012.00112. eCollection 2012.
Many plants have intimate relationships with soil microbes, which improve the plant's growth and fitness through a variety of mechanisms. Bacillus sp. isolates are natural root-associated bacteria, isolated from Nicotiana attenuata plant roots growing in native soils. A particular isolate B55, was found to have dramatic plant growth promotion (PGP) effects on wild type (WT) and transgenic plants impaired in ethylene (ET) perception (35S-etr1), the genotype from which this bacterium was first isolated. B55 not only improves N. attenuata growth under in vitro, glasshouse, and field conditions, but it also "rescues" many of the deleterious phenotypes associated with ET insensitivity. Most notably, B55 dramatically increases the growth and survival of 35S-etr1 plants under field conditions. To our knowledge, this is the first demonstration of a PGP effect in a native plant-microbe association under natural conditions. Our study demonstrates that this facultative mutualistic plant-microbe interaction should be viewed as part of the plant's extended phenotype. Possible modalities of recruitment and mechanisms of PGP are discussed.
许多植物与土壤微生物有着密切的关系,这些微生物通过多种机制来提高植物的生长和适应性。芽孢杆菌分离株是天然的根相关细菌,从生长在原生土壤中的烟草衰减植物根系中分离出来。发现一种特定的分离株 B55 对野生型(WT)和乙烯(ET)感知受损的转基因植物(35S-etr1)具有显著的植物生长促进(PGP)作用,这种细菌最初就是从这个基因型中分离出来的。B55 不仅可以提高烟草衰减植物在体外、温室和田间条件下的生长,还可以“挽救”许多与 ET 不敏感相关的有害表型。最值得注意的是,B55 显著增加了 35S-etr1 植物在田间条件下的生长和存活率。据我们所知,这是在自然条件下,对原生植物-微生物共生体中 PGP 效应的首次证明。我们的研究表明,这种兼性互惠植物-微生物相互作用应该被视为植物扩展表型的一部分。讨论了募集的可能方式和 PGP 的机制。