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Evaluation of Rhizobium tropici-Derived Extracellular Polymeric Substances on Selected Soil Properties, Seed Germination, and Growth of Black-Eyed Peas (Vigna unguiculata)
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作者 Jonathan Alunge Metuge Erneste Havugimana +2 位作者 Jean Rugandirababisha Zachary N. Senwo Marie Chantal Mutimawurugo 《Agricultural Sciences》 2024年第5期548-564,共17页
Rhizobium tropici-derived extracellular polymeric substances (EPS) have been used in soils to enhance soil structures and mitigate soil erosions. However, information on their use to improve soil health and fertility ... Rhizobium tropici-derived extracellular polymeric substances (EPS) have been used in soils to enhance soil structures and mitigate soil erosions. However, information on their use to improve soil health and fertility indicators, and plant growth is limited. In a greenhouse study, we investigated their effects on some soil health, soil fertility indices, and the growth of black-eyed peas (Vigna unguiculate). Results showed that soils incubated with EPS significantly increased basal soil respiration, soil microbial biomass, permanganate oxidizable carbon (POC), and potentially mineralizable nitrogen (PMN). The EPS shifted microbial populations from bacteria to fungi and Gram (−ve) to Gram ( ve) bacteria. However, it had little or no effects on soil pH, soil organic matter (SOM), and cation exchange capacity (CEC). The EPS decreased soil moisture loss, increased soil aggregate stability, but delayed blacked-eyed peas germinations in the soils. At 0.1% (w/w) concentrations in soils, there was increase in plant root nodulations and vegetative growth. This study was carried out within 40 days of incubating soils with EPS or growing the black-eyed peas in a greenhouse study. The plant growth parameters were taken before flowering and fruiting. Further studies of the effects of incubating soils with the extracellular polymeric substances on plant growth. Soil microbial biomass, microbial diversities, and other soil fertility indices are deemed necessary. 展开更多
关键词 Rhizobium tropici Extracellular Polymeric Substances Soil Respiration Soil Microbial Biomass Black-Eyed Peas
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尖峰岭抗逆性根瘤菌的筛选及其16S rDNA序列的测定 被引量:3
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作者 彭玉红 焦如珍 牟新涛 《林业科学研究》 CSCD 北大核心 2010年第4期530-536,共7页
为了探讨木本豆科植物根瘤菌对不良环境的抵抗能力,对分离自海南尖峰岭国家自然保护区的9株根瘤菌进行了初步研究。结果发现:9株根瘤菌最适生长pH值均为7,最适NaCl含量均为10.0 g.kg-1;菌株CAF224的最适生长温度为37℃,菌株CAF416、CAF... 为了探讨木本豆科植物根瘤菌对不良环境的抵抗能力,对分离自海南尖峰岭国家自然保护区的9株根瘤菌进行了初步研究。结果发现:9株根瘤菌最适生长pH值均为7,最适NaCl含量均为10.0 g.kg-1;菌株CAF224的最适生长温度为37℃,菌株CAF416、CAF438和CAF279的最适温度为20-28℃,其余5株为28℃。9株根瘤菌均可在pH值4-11、NaCl 20.0 g.kg-1、37℃条件下生长,其中CAF224和CAF276菌株耐受pH值3;CAF226可以在40.0 g.kg-1NaCl培养基中生长;CAF276可耐受20 min 50℃、10 min 60℃高温。不同宿主、不同生态条件下的根瘤菌株具有不同的抗逆性,通过综合分析,筛选出4株高抗菌株(CAF226、CAF276、CAF224、CAF414)。16S rDNA序列系统发育分析表明:9菌株在系统进化树上与GenBank中序列号为EF054889的Rhizobium tropiciClone H12(热带根瘤菌)聚为一族,相似度为99.4%,初步确定9株根瘤菌为热带根瘤菌。 展开更多
关键词 尖峰岭 耐盐性试验 pH范围 抗逆性 16S RDNA序列 热带根瘤菌
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