The field inoculation of Acacia saligna with efficient rhizobia strains for sand quarry restoration in Algeria

Sonia Sekkour, Nadjia Benhamed, Abdelkader Bekki
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Abstract

Sand quarries constituting very specific environments where native plants and surface soil are destroyed. The resulting substrates are practically sterile from an organic and biological point of view due to the absence of humus, microfauna and flora. planting legumes like Acacia saligna inoculated with his microbial partner rhizobia is strategic key to enhance the substrate fertility and lead to an ecological restoration of sandpits. Here we have selected the most efficient couple A. saligna-rhizobia with the goal to rehabilitate Sidi Lakhdar sandpit in the end of exploitation and to follow the filed persistence of introduced rhizobia into A. saligna nodules. The in vitro efficiency test permitted the selection of three inocula which performed differently once transferred onto natural soil and in the field. The ASB13 (Ensifer sp.) were found to be better inoculum for sandpit rehabilitation and A. saligna-rhizobia couple introduction for above and underground degraded sites. The introduced rhizobia didn’t persist in nodules of A. saligna in different treated blocks which were revealed by the PCR-RFLP profiles after the digestion by restriction enzyme HaeIII. These results support the literature data on failure/success of inoculants pertain to the persistence of rhizobia (inoculants) in soil, inoculant success is affected not only by environmental conditions such as temperature, pH, salinity but also by competitivity of indigenous rhizobia. We conclude that the rhizobia-based inocula selection for field application necessitates testing selected strains under the environmental conditions prevailing in the site intended to be rehabilitated.
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阿尔及利亚采石场采石场有效根瘤菌田间接种金合欢的研究
采石场构成了非常特殊的环境,原生植物和表层土壤被破坏。从有机和生物学的角度来看,由于没有腐殖质,微型动物和植物群,所得基质实际上是无菌的。种植豆科植物,如金合木,接种其微生物伙伴根瘤菌,是提高基质肥力和导致沙坑生态恢复的战略关键。在此,我们选择了最有效的盐芽草-根瘤菌组合,目的是在开发结束后恢复西迪拉赫达尔沙坑,并跟踪引入根瘤菌在盐芽草根瘤中的田间持久性。体外效率试验允许选择三种接种剂,一旦转移到自然土壤和在田间表现不同。发现ASB13 (Ensifer sp.)是沙坑修复和盐渍草-根瘤菌对地上和地下退化场地较好的接种物。经限制性内切酶HaeIII酶切后的PCR-RFLP图谱显示,不同处理块中引入的根瘤菌均未在盐藻根瘤中持续存在。这些结果支持了有关接种剂的失败/成功与根瘤菌(接种剂)在土壤中的持久性有关的文献数据,接种剂的成功不仅受温度、pH、盐度等环境条件的影响,还受本地根瘤菌竞争力的影响。我们得出结论,基于根瘤菌的田间接种选择需要在拟建场地的普遍环境条件下对所选菌株进行测试。
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