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首页> 外文期刊>New Forests >Cultured arbuscular mycorrhizal fungi and native soil inocula improve seedling development of two pioneer trees in the Andean region
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Cultured arbuscular mycorrhizal fungi and native soil inocula improve seedling development of two pioneer trees in the Andean region

机译:培养的丛枝菌根真菌和天然土壤接种物可改善安第斯地区的两种先锋树的幼苗发育

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The tree species Alnus acuminata and Morella pubescens, native to South America, are candidates for soil quality improvement and afforestation of degraded areas and may serve as nurse trees for later inter-planting of other trees, including native crop trees. Both species not only form symbioses with arbuscular mycorrhizal fungi (AMF) and ectomycorrhizal fungi (EMF), but also with N-2-fixing actinobacteria. Because tree seedlings inoculated with appropriate mycorrhizal fungi in the nursery resist transplanting stress better than non-mycorrhizal seedlings, we evaluated for A. acuminata and M. pubescens the potential of inoculation with mycorrhizal fungi for obtaining robust tree seedlings. For the first time, a laboratory-produced mixed AMF inoculum was tested in comparison with native soil from stands of both tree species, which contains AMF and EMF. Seedlings of both tree species reacted positively to both types of inocula and showed an increase in height, root collar diameter and above- and belowground biomass production, although mycorrhizal root colonization was rather low in M. pubescens. After 6 months, biomass was significantly higher for all mycorrhizal treatments when compared to control treatments, whereas aboveground biomass was approximately doubled for most treatments. To test whether mycorrhiza formation positively influences plant performance under reduced water supply the experiment was conducted under two irrigation regimes. There was no strong response to different levels of watering. Overall, application of native soil inoculum improved growth most. It contained sufficient AMF propagules but potentially also other soil microorganisms that synergistically enhance plant growth performance. However, the AMF inoculum pot-produced under controlled conditions was an efficient alternative for better management of A. acuminata and M. pubescens in the nursery, which in the future may be combined with defined EMF and Frankia inocula for improved management practices
机译:南美洲原产的树种Alnus acuminata和Morella pubescens是土壤质量改善和退化地区绿化的候选树种,可以作为护士树用于以后的其他树种间种植,包括本地农作物树。两种物种不仅与丛枝菌根真菌(AMF)和外生菌根真菌(EMF)形成共生菌,而且还与固定N-2的放线菌形成共生菌。因为在苗圃中接种了适当的菌根真菌的树苗比非菌根苗更好地抵抗了移栽胁迫,所以我们评估了A. acuminata和M. pubescens接种菌根真菌以获得坚固的树苗的潜力。首次对实验室生产的混合AMF接种物进行了测试,并与两种树木的林分中的原生土壤进行了比较,其中含有AMF和EMF。两种树种的幼苗对两种接种物均呈阳性反应,并显示出其高度,根颈直径以及地上和地下生物量的产生增加,尽管菌根根定殖在相当低的水平上。 6个月后,与对照相比,所有菌根治疗的生物量均显着较高,而大多数治疗的地上生物量大约翻倍。为了测试菌根的形成是否在供水减少的情况下对植物性能产生积极影响,在两种灌溉制度下进行了该实验。对不同水平的浇水没有强烈反应。总体而言,使用原生土壤接种物最能促进生长。它含有足够的AMF繁殖体,但也可能含有其他土壤微生物,可以协同增强植物的生长性能。但是,在受控条件下盆栽生产的AMF接种物是在苗圃中更好地管理A. acuminata和M. pubescens的有效替代品,将来可能与确定的EMF和Frankia接种物结合使用,以改善管理方法

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