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Co-inoculation Effect of Rhizobia and Plant Growth Promoting Rhizobacteria on Common Bean Growth in a Low Phosphorus Soil

机译:根瘤菌和促进根瘤菌生长的植物对低磷土壤普通豆生长的共同接种效应

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摘要

Nitrogen (N) fixation through legume-Rhizobium symbiosis is important for enhancing agricultural productivity and is therefore of great economic interest. Growing evidence indicates that other soil beneficial bacteria can positively affect symbiotic performance of rhizobia. Nodule endophytic plant growth promoting rhizobacteria (PGPR) were isolated from common bean nodules from Nakuru County in Kenya and characterized 16S rDNA partial gene sequencing. The effect of co-inoculation of rhizobium and PGPR, on nodulation and growth of common bean (Phaseolus vulgaris L.) was also investigated using a low phosphorous soil under greenhouse conditions. Gram-positive nodule endophytic PGPR belonging to the genus Bacillus were successfully isolated and characterized. Two PGPR strains (Paenibacillus polymyxa and Bacillus megaterium), two rhizobia strains (IITA-PAU 987 and IITA-PAU 983) and one reference rhizobia strain (CIAT 899) were used in the co-inoculation study. Two common bean varieties were inoculated with Rhizobium strains singly or in a combination with PGPR to evaluate the effect on nodulation and growth parameters. Co-inoculation of IITA-PAU 987 + B. megaterium recorded the highest nodule weight (405.2 mg) compared to IITA-PAU 987 alone (324.8 mg), while CIAT 899 + B. megaterium (401.2 mg) compared to CIAT 899 alone (337.2 mg). CIAT 899 + B. megaterium recorded a significantly higher shoot dry weight (7.23 g) compared to CIAT 899 alone (5.80 g). However, there was no significant difference between CIAT 899 + P. polymyxa and CIAT 899 alone. Combination of IITA-PAU 987 and B. megaterium led to significantly higher shoot dry weight (6.84 g) compared to IITA-PAU 987 alone (5.32 g) but no significant difference was observed when co-inoculated with P. polymyxa. IITA-PAU 983 in combination with P. polymyxa led to significantly higher shoot dry weight (7.15 g) compared to IITA-PAU 983 alone (5.14 g). Plants inoculated with IITA-PAU 987 and B. megaterium received 24.0 % of their nitrogen demand from atmosphere, which showed a 31.1% increase compared to rhizobium alone. Contrast analysis confirmed the difference between the co-inoculation of rhizobia strains and PGPR compared to single rhizobia inoculation on the root dry weight. These results show that co-inoculation of PGPR and Rhizobia has a synergistic effect on bean growth. Use of PGPR may improve effectiveness of Rhizobium biofertilizers for common bean production. Testing of PGPR under field conditions will further elucidate their effectiveness on grain yields of common bean.
机译:通过豆类-根瘤菌共生固定氮(N)对提高农业生产率很重要,因此具有极大的经济意义。越来越多的证据表明,其他对土壤有益的细菌也可以对根瘤菌的共生性能产生积极影响。从肯尼亚纳库鲁县的普通豆节中分离出根瘤内生植物根瘤菌(PGPR),并对其16S rDNA部分基因进行了测序。还研究了在温室条件下使用低磷土壤,共同接种根瘤菌和PGPR对普通豆(菜豆)的结瘤和生长的影响。成功分离并鉴定了芽孢杆菌属的革兰氏阳性结节内生PGPR。两种PGPR菌株(多粘芽孢杆菌和巨大芽孢杆菌),两种根瘤菌菌株(IITA-PAU 987和IITA-PAU 983)和一种参考根瘤菌菌株(CIAT 899)用于共同接种研究。将两个普通豆品种单独或与PGPR组合接种根瘤菌菌株,以评估其对结瘤和生长参数的影响。与单独的IITA-PAU 987(324.8 mg)相比,IITA-PAU 987 +巨大芽孢杆菌的共接种记录了最高的结节重量(405.2 mg),而与单独的CIAT 899相比,CIAT 899 +巨大芽孢杆菌(401.2 mg) 337.2毫克)。与单独的CIAT 899(5.80 g)相比,CIAT 899 +巨大芽孢杆菌记录的茎干重(7.23 g)明显更高。但是,单独的CIAT 899 +多粘菌与CIAT 899之间没有显着差异。与单独的IITA-PAU 987(5.32 g)相比,IITA-PAU 987和巨型芽孢杆菌的组合导致茎干重(6.84 g)明显更高,但与多粘芽孢杆菌共接种时未观察到显着差异。与单独的IITA-PAU 983(5.14 g)相比,将IITA-PAU 983与多粘菌结合使用可显着提高枝干重量(7.15 g)。接种了IITA-PAU 987和巨型芽孢杆菌的植物从大气中获得了24.0%的氮需求量,与仅根瘤菌相比增加了31.1%。对比分析证实,根瘤菌干重与根瘤菌单次接种相比,根瘤菌菌株和PGPR共同接种之间存在差异。这些结果表明,PGPR和根瘤菌的共同接种对豆类的生长具有协同作用。 PGPR的使用可以提高根瘤菌生物肥料生产普通豆的有效性。在田间条件下进行PGPR的测试将进一步阐明它们对普通豆谷物产量的有效性。

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