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首页> 外文期刊>Israel Journal of Plant Sciences >Optimal plant growth-promoting concentration of Azospirillum brasilense inoculated to cucumber, lettuce and tomato seeds varies between bacterial strains
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Optimal plant growth-promoting concentration of Azospirillum brasilense inoculated to cucumber, lettuce and tomato seeds varies between bacterial strains

机译:接种到黄瓜,生菜和番茄种子上的巴西固氮螺菌的最佳植物生长促进浓度因细菌菌株而异

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摘要

Azospirillum brasilense is a well-known plant growth-promoting rhizobacteria (PGPR) that can have positive impact on plant growth when present in sufficient density. The production of phytohormones by Azospirillum has been proposed as one of the major mechanisms responsible for the observed plant growth effects. In particular, this plant growth-promoting effect could be mediated by IAA (indole-3-acetic acid), a phytohormone produced by Azospirillum in substantial amount, because the effect of inoculation with higher inoculum density on root morphology mimicked the increasing concentration of exogenous IAA applied to the seed. This study evaluated the effect of inoculation with different bacterial concentrations of three A. brasilense strains (Sp7, Sp7-S and Sp245) on the early seedling growth and endogenous plant IAA of cucumber, lettuce and tomato. Seeds were inoculated with 8, 7 and 6 log cfu ml(-1) of each strain before germinating in Petri dishes. The early seedling growth of vegetables was affected by the inoculation with the A. brasilense strains. In cucumber, seeds inoculated with Sp7 at log 8 and 6 cfu ml(-1), Sp7-S and Sp245 at log 8 and 7 increased seedling growth, vigor index and endogenous plant IAA by up to 55%. In lettuce, the inoculation with log 6 of Sp7, log 7 and 6 of Sp7-S, and log 8 and 7 of Sp245 yielded superior seedling growth with improved seedling vigor. In addition, log 7 and 8 of Sp7 and Sp7-S, respectively, increased IAA concentration by more than 20%. In tomato, Sp7 at log 6, Sp7-S and Sp245 at log 7 exerted more positive effects on root biomass. IAA concentrations increased up to 171% by inoculation with all concentrations of Sp7 and Sp7-S and more than 300% by Sp245 at log 8. The bacteria-elicited promotion of plant IAA production might improve plant function via effects on metabolism and morphology. These results demonstrate that seed inoculation with the strains at the studied range of cell concentrations stimulated early seedling development. However, the optimal promoting concentration varied between strains. Strain Sp7 appeared to be more beneficial at log 6 cfu ml(-1) while Sp7-S and Sp245 were more beneficial at log 7 or higher.
机译:巴西固氮螺菌是一种众所周知的促进植物生长的根际细菌(PGPR),如果存在足够的密度,它会对植物的生长产生积极的影响。已提出由固氮螺菌生产植物激素是引起所观察到的植物生长效应的主要机制之一。尤其是,这种植物的生长促进作用可能是由固氮螺旋菌产生的大量植物激素IAA(吲哚-3-乙酸)介导的,因为接种量较高的接种物对根系形态的影响模仿了外源浓度的增加IAA应用于种子。这项研究评估了接种不同细菌浓度的三种巴西盲肠念珠菌菌株(Sp7,Sp7-S和Sp245)对黄瓜,生菜和番茄的幼苗早期生长和内源植物IAA的影响。在培养皿中发芽之前,分别用8、7和6 log cfu ml(-1)的每种菌株接种种子。蔬菜的早期幼苗生长受到巴西农杆菌的接种的影响。在黄瓜中,在log 8和6 cfu ml(-1)处接种Sp7的种子,在log 8和7处接种Sp7-S和Sp245的种子可使幼苗生长,活力指数和内源植物IAA最多增加55%。在生菜中,接种Sp7的log 6,Sp7-S的log 7和6以及Sp245的log 8和7可以提高幼苗生长力,提高幼苗活力。另外,Sp7和Sp7-S的log 7和8分别使IAA浓度增加了20%以上。在番茄中,log 7处的Sp7,log 7处的Sp7-S和Sp245对根生物量发挥了更积极的作用。在log 8处接种所有浓度的Sp7和Sp7-S时,IAA浓度增加至171%,而通过Sp245接种时,IAA浓度增加至300%以上。细菌引起的植物IAA产生的促进作用可能通过影响代谢和形态而改善植物功能。这些结果表明,在研究的细胞浓度范围内用菌株接种种子可以刺激幼苗的早期发育。然而,最佳促进浓度在菌株之间变化。 Sp7菌株在log 6 cfu ml(-1)时似乎更有益,而Sp7-S和Sp245在log 7或更高时更有益。

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