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Symbiotic performance of several leguminous plants with legume nodule bacteria isolated from siratro (Macroptilium atropurpureum) at Mount Merapi Eruption, Indonesia

机译:几个豆类结节细菌的豆科植物分离的共生性能,从Siratro(Macrodilium Atropurpureum)在Merapi Buluption,印度尼西亚

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Legume nodule bacteria (LNB) have the host specific nodulation in forming a symbiosis with leguminous plants. This research was conducted to investigate the symbiotic performance of 27 LNB isolates from Siratro (Macroptilium atropurpureum) at Mount Merapi Eruption, Indonesia with six legumes species such as Medicago sativa, Pisum sativum, Phaseolus vulgaris, Glycine max, Arachis hypogeal and M. atropurpureum. The successful cross inoculation group of LNB were further identified phenotypically. This research was designed with a completely randomized design using plastic pouch method for analyzing their symbiotic performance with three replications. The symbiotic relationship with those leguminous plants species were observed by the root nodule formations. The results revealed significant the root nodule formations in G. max which inoculating of each 4 isolates (MPB8, MPB9, MPB25 and MPB27), whereas the successful root nodule formation of M. atropurpureum was only observed which inoculating of MPB25 isolate. Furthermore, acetylene reduction assay of M. atropurpureum root nodules which inoculating MPB25 isolate showed the highest nitrogenase activity (0.0087 mmol N_2 g~(-1) hour~(-1)). In contrast, the lowest nitrogenase activity was measured at G. max nodules which inoculated by MPB25 isolate (0.0004 mmol N_2 g~(-1) hour~(-1)). Those nodule diameter results showed positive correlation significantly between fresh weight (r= 0.9) and dry weight of their nodules (r= 0.8), while nitrogenase activity showed negatively correlation between nodule diameter (r=-0.6), nodule number (r=-0.3) and fresh weight of nodule(r=- 0.7). Based on the phenotypic characterization, MPB8 and MPB9 isolates were identified genus Rhizobium, whereas MPB25 and MPB27 isolates were identified genus Ensifer.
机译:豆类结节细菌(LNB)具有宿主特异性结节,用​​于形成豆类植物的共生。进行了该研究,以研究Merapi火山山脉Siratro(Macrodillium Atropureum)的27LNB分离物的共生性能,其中六种豆类种类如Medicago Sativa,Pisum Sativum,pumsolus vulgaris,Glycine Max,Arachis Hymogeal和M. Atropurpureum。进一步鉴定了LNB的成功交叉接种组。本研究采用完全随机设计的设计,采用塑料袋方法,用于分析其共生性能三种复制。通过根结节形成观察与那些豆科植物物种的共生关系。结果揭示了G. MAX中的根瘤形成的显着性,其接种每种分离物(MPB8,MPB9,MPB25和MPB27),而仅观察到M. Atropurpureum的成功根结节形成,其接种MPB25分离物。此外,接种MPB25分离物的M. Asropureum根结节的乙炔还原测定结果显示出最高的氮酶活性(0.0087mmol N_2g〜(-1)小时〜(-1))。相反,在通过MPB25分离物接种的G. MAX结节中测量最低的氮酶活性(0.0004mmol N_2g〜(-1)小时〜(-1))。那些结节直径结果在新鲜重量(R = 0.9)和它们结节的干重之间显着显着相关(R = 0.8),而氮酶活性在结节直径(R = -0.6)之间存在负相关性(R = -0.6)(R = - 0.3)结节的新鲜重量(r = - 0.7)。基于表型表征,鉴定了基于根瘤菌属的MPB8和MPB9分离物,而MPB25和MPB27分离物被鉴定为enefer。

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