首页> 外文期刊>Applied Microbiology >Genetic Interaction Studies Reveal Superior Performance of Rhizobium tropici CIAT899 on a Range of Diverse East African Common Bean (Phaseolus vulgaris L.) Genotypes
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Genetic Interaction Studies Reveal Superior Performance of Rhizobium tropici CIAT899 on a Range of Diverse East African Common Bean (Phaseolus vulgaris L.) Genotypes

机译:遗传相互作用研究揭示了根瘤菌CIAT899在一系列不同的东非普通豆(Phaseolus vulgaris L.)基因型上的优异性能。

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We studied symbiotic performance of factorial combinations of diverse rhizobial genotypes (GR) and East African common bean varieties (GL) that comprise Andean and Mesoamerican genetic groups. An initial wide screening in modified Leonard jars (LJ) was followed by evaluation of a subset of strains and genotypes in pots (contained the same, sterile medium) in which fixed nitrogen was also quantified. An additive main effect and multiplicative interaction (AMMI) model was used to identify the contribution of individual strains and plant genotypes to the GL × GR interaction. Strong and highly significant GL × GR interaction was found in the LJ experiment but with little evidence of a relation to genetic background or growth habits. The interaction was much weaker in the pot experiment, with all bean genotypes and Rhizobium strains having relatively stable performance. We found that R. etli strain CFN42 and R. tropici strains CIAT899 and NAK91 were effective across bean genotypes but with the latter showing evidence of positive interaction with two specific bean genotypes. This suggests that selection of bean varieties based on their response to inoculation is possible. On the other hand, we show that symbiotic performance is not predicted by any a priori grouping, limiting the scope for more general recommendations. The fact that the strength and pattern of GL × GR depended on growing conditions provides an important cautionary message for future studies.IMPORTANCE The existence of genotype-by-strain (GL × GR) interaction has implications for the expected stability of performance of legume inoculants and could represent both challenges and opportunities for improvement of nitrogen fixation. We find that significant genotype-by-strain interaction exists in common bean (Phaseolus vulgaris L.) but that the strength and direction of this interaction depends on the growing environment used to evaluate biomass. Strong genotype and strain main effects, combined with a lack of predictable patterns in GL × GR, suggests that at best individual bean genotypes and strains can be selected for superior additive performance. The observation that the screening environment may affect experimental outcome of GL × GR means that identified patterns should be corroborated under more realistic conditions.
机译:我们研究了包括安第斯和中美洲遗传群体在内的多种根瘤菌基因型(GR)和东非普通豆品种(GL)的因子组合的共生性能。首先在改良的伦纳德广口瓶(LJ)中进行广泛筛选,然后评估其中也定量了固定氮的盆(包含相同的无菌培养基)中的一部分菌株和基因型。使用加性主效应和乘性相互作用(AMMI)模型来确定单个菌株和植物基因型对GL×GR相互作用的贡献。在LJ实验中发现了强烈且高度重要的GL×GR相互作用,但几乎没有证据表明其与遗传背景或生长习性有关。在盆栽试验中,该相互作用弱得多,所有豆基因型和根瘤菌菌株均具有相对稳定的性能。我们发现,R。etli菌株CFN42和R.tropici菌株CIAT899和NAK91在所有豆型基因型上均有效,但后者显示出与两种特定豆型基因正相互作用的证据。这表明可以根据其对接种的反应选择豆类。另一方面,我们表明,任何先验组合都无法预测共生表现,从而限制了更一般性建议的范围。 GL×GR的强度和模式取决于生长条件,这一事实为将来的研究提供了重要的警告信息。并可能代表着改善固氮的挑战和机遇。我们发现普通豆(菜豆)中存在显着的基因型-菌株相互作用,但是这种相互作用的强度和方向取决于用来评估生物量的生长环境。强大的基因型和菌株主效应,再加上GL×GR缺乏可预测的模式,表明最多可以选择单个豆的基因型和菌株以获得优异的添加性能。筛选环境可能会影响GL×GR的实验结果的观察结果表明,应该在更现实的条件下证实已确定的模式。

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