首页> 外文OA文献 >Potential of indigenous bradyrhizobia versus commercial inoculants to improve cowpea (Vigna unguiculata L. walp.) and green gram (Vigna radiata L. wilczek.) yields in Kenya
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Potential of indigenous bradyrhizobia versus commercial inoculants to improve cowpea (Vigna unguiculata L. walp.) and green gram (Vigna radiata L. wilczek.) yields in Kenya

机译:肯尼亚当地的缓生根瘤菌与商业接种剂相比有潜力改善肯尼亚的cow豆(Vigna unguiculata L. walp。)和绿豆(Vigna radiata L. wilczek。)产量

摘要

Limited information is available on reduced cowpea (Vigna unguiculata L. Walp.) and green gram (Vigna radiata L.Wilczek.) yields in Kenya. Declining soil fertility and absence or presence of ineffective indigenous rhizobia in soils are assumptions that have been formulated but still require to be demonstrated. In this study, soils were collected from legume growing areas of Western (Bungoma), Nyanza (Bondo), Eastern (Isiolo), Central (Meru) and Coast (Kilifi) provinces in Kenya to assess indigenous rhizobia in soils nodulating cowpea and green gram under greenhouse conditions. Our results showed that highest nodule fresh weights of 4.63 and 3.32 g plant_1 for cowpea and green gram were observed in one soil from Isiolo and another from Kilifi, respectively, suggesting the presence of significant infective indigenous strains in both soils. On the other hand, the lowest nodule fresh weights of 2.17 and 0.72 g plant_1 were observed in one soil from Bungoma for cowpea and green gram, respectively. Symbiotic nitrogen (N) fixation by cowpea and green gram was highest in Kilifi soil with values of 98% and 97%, respectively. A second greenhouse experiment was undertaken to evaluate the performance of commercial rhizobial inoculants with both legumes in Chonyi soil (also from Coast province) containing significant indigenous rhizobia [13.5_103 Colony Forming Units (CFU) g_1]. Rhizobial inoculation did not significantly (P 0.05) affect nodulation, biomass yield and shoot N content in cowpea and green gram compared with controls. Polymerase chain reaction-restriction fragment length polymorphism (PCR-RFLP) of the 16S-23S rDNA intergenic spacer (IGS) region analysis of nodules revealed six groups of which only IGS Group IV corresponded with those from commercial inoculants applied, indicating a lower competitiveness of inoculated strains. In cowpea, IGS III was dominant in nodules of plants inoculated with Biofix and Rizoliq commercial inoculants, and the uninoculated control treatment (63.2, 60 and 52.9%, respectively). Similarly, in green gram, IGS Group III was dominant in nodules of plants inoculated with Biofix 704 and Rizoliq commercial inoculants, and the uninoculated control treatment (75, 73.7 and 61.1%, respectively). Our results suggest that the systematic inoculation of both legumes with current available commercial inoculants to improve biomass yields is not necessary in these regions of Kenya. Also, according to our study, it would make sense to promote the utilization of indigenous strains performing well with both legumes. (Résumé d'auteur)
机译:关于肯尼亚减少的cow豆产量(Vigna unguiculata L. Walp。)和绿豆产量(Vigna radiata L.Wilczek。)的信息有限。土壤肥力下降,土壤中不存在或缺乏无效的原生根瘤菌是已经提出但仍需证明的假设。在这项研究中,从肯尼亚西部(邦戈马),尼扬扎(邦多),东部(伊西奥洛),中部(梅鲁)和沿海(基利菲)省的豆科植物生长地区收集土壤,以评估结节cow豆和绿豆科植物土壤中的原生根瘤菌。在温室条件下。我们的结果表明,在来自Isiolo的一种土壤和来自Kilifi的另一种土壤中分别观察到cow豆和绿豆的最高根瘤鲜重分别为4.63和3.32 g,这表明这两种土壤中均存在重要的传染性本地菌株。另一方面,在邦戈玛的一种土壤中,for豆和绿豆的最低根瘤鲜重分别为2.17和0.72 g plant_1。 K豆和绿革兰对Kilifi土壤的共生氮(N)固定最高,分别为98%和97%。进行了第二个温室实验,以评估在含有显着土著根瘤菌[> 13.5_103菌落形成单位(CFU)g_1]的Chonyi土壤(也来自沿海省)中,两种豆科植物的商业根瘤菌接种剂的性能。与对照相比,接种根瘤菌对cow豆和绿豆中的结瘤,生物量产量和芽N含量没有显着影响(P <0.05)。结核的16S-23S rDNA基因间隔区(IGS)区域的聚合酶链反应-限制性片段长度多态性(PCR-RFLP)分析显示有6组,其中只有IGS IV组与应用的商业接种剂相对应,表明IGS组的竞争力较低接种菌株。在cow豆中,IGS III在接种Biofix和Rizoliq商业接种剂的植物的结节以及未接种的对照处理中占主导地位(分别为63.2%,60%和52.9%)。类似地,以绿豆科植物为例,IGS III组在接种Biofix 704和Rizoliq商业接种剂的植物的结节以及未接种的对照处理中占优势(分别为75%,73.7%和61.1%)。我们的结果表明,在肯尼亚的这些地区,没有必要用目前可用的商业接种剂对两种豆科植物进行系统接种,以提高生物量的产量。另外,根据我们的研究,促进对两种豆类均表现良好的本地菌株的利用是有意义的。 (Résuméd'auteur)

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