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Plant symbiotic microorganisms in acid sulfate soil: significance in the growth of pioneer plants

机译:酸性硫酸盐土壤中的植物共生微生物:对先锋植物生长的意义

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摘要

Acid sulfate soil is generated by chemical and microbial oxidization of sulfide-rich minerals/sediments. Although revegetation of the soil is difficult due to low-pH and poor nutrient availability, pioneer plants may adapt to such an extreme environment via associating with mycorrhizal fungi and/or N-fixing bacteria for acquisition of mineral nutrients. In this study, an abandoned quarry in which acid sulfate soil was found was chosen to investigate the influence of soil acidity on the levels of colonization by the microsymbionts, the identities of the microsymbionts that associated with pioneer plants and the dependency of pioneer plants on the microsymbionts. The levels of arbuscular mycorrhizal (AM) colonization in pioneer grass, forbs and legume shrubs grown in the field were assessed, and no significant decline in the levels with an increase in soil acidity was observed. Most of the legume shrubs formed root nodules. Several AM fungi and bradyrhizobia were cultured from the rhizosphere soils of pioneer plants grown in the quarry and identified based on the sequences of the small subunit ribosomal RNA genes. Pot experiments revealed that the microsymbionts isolated from the field significantly promoted the growths of pioneer grasses and legume shrubs in acid sulfate soil at pH 3.4. These results suggest that plant-microbial symbiotic associations play significant roles in the growth of pioneer plants in acid sulfate soil.
机译:酸性硫酸盐土壤是由富含硫化物的矿物质/沉积物的化学和微生物氧化产生的。尽管由于pH值低和养分利用率低而难以对土壤进行植被恢复,但先锋植物可能会通过与菌根真菌和/或固氮菌结合以获取矿质养分,从而适应这种极端环境。在这项研究中,选择了一个废弃的采石场,在该采石场中发现了酸性硫酸盐土壤,以研究土壤酸度对微共生菌定植水平的影响,与先驱植物相关的微共生菌的身份以及先驱植物对the生植物的依赖性。微共生体。评估了田间种植的先锋草,Forbs和豆类灌木丛中的丛枝菌根(AM)定植水平,但未观察到随土壤酸度增加而显着下降。大多数豆科灌木形成根瘤。从采石场中生长的先锋植物的根际土壤中培养了几种AM真菌和缓生根瘤菌,并根据小亚基核糖体RNA基因的序列进行了鉴定。盆栽实验表明,从田间分离出的微共生菌显着促进了pH值为3.4的酸性硫酸盐土壤中先锋草和豆科灌木的生长。这些结果表明植物-微生物共生协会在酸性硫酸盐土壤中先驱植物的生长中起重要作用。

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