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首页> 外文期刊>Plant biology >Transcriptional and functional variation of NF-YC1 in genetically diverse accessions of Phaseolus vulgaris during the symbiotic association with Rhizobium etli
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Transcriptional and functional variation of NF-YC1 in genetically diverse accessions of Phaseolus vulgaris during the symbiotic association with Rhizobium etli

机译:菜豆与共生根瘤菌共生期间遗传上不同菜豆中NF-YC1的转录和功能变化

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摘要

Phaseolus vulgaris (common bean) is an agronomic important legume crop native to America, where two centres of genetic diversification (GD) are recognised, one in Mesoamerica and the other in the south Andes. Mesoamerican bean accessions have preferential and more efficient nodulation with Rhizobium etli strains carrying the allele nodC type-α, which is predominant in soils of Mesoamerica. It was previously demonstrated that the host nuclear factor NF-YC1, which is involved in nodule formation and rhizobial infection, contributes to this preferential selection and enhances nodulation in the domesticated accession NAG12 from Mesoamerica. Here, we show that both domesticated and wild Mesoamerican beans exhibit higher nodulation performance with a nodC type-α than with a nodC type-δ strain. Transcripts of NF-YC1 significantly increased in roots of these accessions 24 h post-inoculation (hpi) with the nodC type-α strain. On the other hand, accessions from the Andean GD centre formed a higher number of nodules with a strain carrying the nodC type-δ, which is predominant in Andean soils. However, NF-YC1 transcript levels did not exhibit significant changes in Andean accessions upon inoculation with the nodC type-δ strain, at least at 24 hpi. RNA interference (RNAi)-mediated gene silencing of NF-YC1 in the domesticated Andean accession Alubia showed that NF-YC1 or a closely related member of this family is required for nodule formation and bacterial infection, in agreement with observations in Mesoamerican common beans. Isolation and sequencing of the full-length ORF of NF-YC1 from Alubia revealed that it was identical to the sequence previously identified in the Mesoamerican accession NAG12. Interestingly, overexpression of NF-YC1 had a negative impact on nodule formation in the Alubia accession, independently of the R. etli lineage. Our findings suggest that transcriptional and functional variation of NF-YC1 occurs among genetically diverse bean accessions, which might positively or negatively contribute to the fine-tuning mechanisms that regulate nodule formation in the common bean-R. etli symbiosis.
机译:菜豆(菜豆)是一种原产于美国的重要农艺豆类作物,在这里公认有两个遗传多样性中心(GD),一个位于中美洲,另一个位于安第斯山脉南部。中美洲豆种质优先携带携带等位基因nodC型α的根瘤菌(Rhizobium etli)菌株,在中美洲土壤中占主导地位。先前已证明,参与结节形成和根瘤菌感染的宿主核因子NF-YC1有助于这种优先选择,并增强了中美洲美洲驯化NAG12的结节。在这里,我们显示驯化的和野生的中美洲美洲豆与nodCtype-δ菌株相比均显示出更高的nodC型α结瘤性能。接种nodC型α菌株后24 h(hpi),这些种质的根中NF-YC1的转录本显着增加。另一方面,来自安第斯山脉GD中心的种质形成的结节数量更多,带有携带nodC型δ的菌株,这在安第斯土壤中占主导地位。但是,接种nodC型δ菌株后,至少在24 hpi时,NF-YC1转录水平在安第斯种质中未表现出显着变化。 RNA干扰(RNAi)介导的家养安第斯登录号Alubia中NF-YC1的基因沉默表明,结节形成和细菌感染需要NF-YC1或该家族的密切相关成员,这与中美洲普通豆中的观察结果一致。来自Alubia的NF-YC1全长ORF的分离和测序表明,它与先前在中美洲登录号NAG12中鉴定的序列相同。有趣的是,NF-YC1的过表达对Alubia品种中的根瘤形成有负面影响,而与R. etli谱系无关。我们的发现表明,NF-YC1的转录和功能变异发生在遗传多样的豆种之间,这可能对调节普通豆-R中的根瘤形成的微调机制有积极或消极的作用。 etli共生。

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