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首页> 外文期刊>Revista de microbiologia >Physiological response of Cucurbita pepo var. pepo mycorrhized by Sonoran desert native arbuscular fungi to drought and salinity stresses
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Physiological response of Cucurbita pepo var. pepo mycorrhized by Sonoran desert native arbuscular fungi to drought and salinity stresses

机译:西葫芦的生理响应索诺兰沙漠原生丛枝真菌使佩珀菌落对干旱和盐分胁迫

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Plants response to symbiosis with arbuscular mycorrhizal fungi (AMF) under water stress is important to agriculture. Under abiotic stress conditions native fungi are more effective than exotics in improving plant growth and water status. Mycorrhization efficiency is related to soil fungi development and energy cost-benefit ratio. In this study, we assessed the effect on growth, water status and energy metabolism of Cucurbita pepo var. pepo when inoculated with native AMF from the Sonoran desert Mexico (mixed isolate and field consortium), and compared with an exotic species from a temperate region, under drought, low and high salinity conditions. Dry weights, leaf water content, water and osmotic potentials, construction costs, photochemistry and mycorrhization features were quantified. Under drought and low salinity conditions, the mixed isolate increased plant growth and leaf water content. Leaf water potential was increased only by the field consortium under drought conditions (0.5-0.9 MPa). Under high salinity, the field consortium increased aerial dry weight (more than 1 g) and osmotic potential (0.54 MPa), as compared to non-mycorrhized controls. Plants inoculated with native AMF, which supposedly diminish the effects of stress, exhibited low construction costs, increased photochemical capacity, and grew larger external mycelia in comparison to the exotic inoculum.
机译:水分胁迫下植物对丛枝菌根真菌(AMF)共生的反应对农业很重要。在非生物胁迫条件下,原生真菌在改善植物生长和水分状况方面比外来真菌更有效。菌根效率与土壤真菌的发育和能量成本效益比有关。在这项研究中,我们评估了对南瓜生长,水分状况和能量代谢的影响。 pepo接种来自墨西哥Sonoran沙漠的本地AMF(混合分离物和田间财团)时,与干旱,低盐和高盐度条件下的温带地区外来物种进行比较。对干重,叶片含水量,水和渗透势,建筑成本,光化学和菌根特征进行了定量。在干旱和低盐度条件下,混合分离株提高了植物生长和叶片含水量。在干旱条件下(0.5-0.9 MPa),田间财团仅增加了叶水势。与未菌根对照相比,在高盐度下,田间联合体增加了空气干重(大于1 g)和渗透势(0.54 MPa)。与外来接种物相比,用天然AMF接种的植物据说可以减轻胁迫的影响,其造价低廉,光化学能力增强并且外部菌丝体长得更大。

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