首页> 外文期刊>Archives of Agronomy and Soil Science >Effects of inoculation with stress-adapted arbuscular mycorrhizal fungus Glomus deserticola on growth of Solanum melogena L. and Sorghum sudanese Staph. seedlings under salinity and heavy metal stress conditions.
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Effects of inoculation with stress-adapted arbuscular mycorrhizal fungus Glomus deserticola on growth of Solanum melogena L. and Sorghum sudanese Staph. seedlings under salinity and heavy metal stress conditions.

机译:适应胁迫的丛枝菌根真菌Glomus deserticola接种对茄果茄和苏丹草葡萄球菌生长的影响。盐分和重金属胁迫条件下的幼苗。

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摘要

The beneficial effects of a Glomus deserticola strain isolated from the rhizosphere of grasses (belonging to Poaceae family) growing along the industrial waste from a distillery were investigated under stress conditions. The study was conducted to assess the efficacy of the arbuscular mycorrhizal (AM) fungal ecotype in salinity and heavy metal (HM) tolerance of eggplant (Solanum melongena L.) in soils amended with various stress levels of NaCl, zinc and cadmium. Mycorrhizal (M) seedlings produced a significantly (p<0.05) greater growth response and were more tolerant to salt and HM stresses than nonmycorrhizal (NM) seedlings in all treatments. The HM contents in the plant tissues were significantly higher in M than NM eggplants. Furthermore, when the efficacy was compared with other AM isolates in HM-polluted soils with Sudan grass (Sorghum sudanese Staph.) as a test plant, the AM ecotype responded best to these soils, as evident from the significantly greater growth response and its aggressiveness in colonizing roots in all soil types tested. These results suggest that this G. deserticola ecotype can be used as an effective tool to alleviate the adverse effects of excessive salinity and HM toxicity on plant growth. Finally, the isolate may have potential in the bioremediation of polluted soils.
机译:在压力条件下,研究了从沿酿酒厂的工业废料生长的草(属于禾本科)的根际分离的Glomus deserticola菌株的有益效果。进行了这项研究,以评估在不同的NaCl,锌和镉胁迫水平修正的土壤中,丛枝菌根(AM)真菌生态型对茄子(Solanum melongena L.)的盐度和重金属(HM)耐受性的功效。在所有处理中,菌根(M)幼苗均比非菌根(NM)幼苗产生显着(p <0.05)更大的生长响应,并且对盐和HM胁迫的耐受性更高。 M中植物组织中的HM含量显着高于NM茄子。此外,当在以苏丹草(高粱苏丹红葡萄球菌)为试验植物的HM污染土壤中与其他AM分离株进行比较时,AM生态型对这些土壤的响应最佳,这从明显更大的生长响应及其侵略性可以明显看出在所有测试的土壤类型中都可以生根。这些结果表明,该G. deserticola生态型可以用作减轻过度盐度和HM毒性对植物生长的不利影响的有效工具。最后,分离株可能在污染土壤的生物修复中具有潜力。

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