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Nod factor requirements for efficient stem and root nodulation of the tropical legume Sesbania rostrata

机译:对热带豆科植物sesbania rostrata的有效声音和根瘤结瘤的点头因子要求

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摘要

Azorhizobium caulinodans ORS571 synthesizes mainly pentameric Nod factors with a household fatty acid, an N-methyl, and a 6-O-carbamoyl group at the nonreducing-terminal residue and with a D-arabinosyl, an L-fucosyl group, or both at the reducing-terminal residue. Nodulation on Sesbania rostrata was carried out with a set of bacterial mutants that produce well characterized Nod factor populations. Purified Nod factors were tested for their capacity to induce root hair formation and for their stability in an in vitro degradation assay with extracts of uninfected adventitious rootlets. The glycosylations increased synergistically the nodulation efficiency and the capacity to induce root hairs, and they protected the Nod factor against degradation. The D-arabinosyl group was more important than the L-fucosyl group for nodulation efficiency. Replacement of the 6-O-L-fucosyl group by a 6-O-sulfate ester did not affect Nod factor stability, but reduced nodulation efficiency, indicating that the L-fucosyl group may play a role in recognition. The 6-O-carbamoyl group contributes to nodulation efficiency, biological activity, and protection, but could be replaced by a 6-O-acetyl group for root nodulation. The results demonstrate that none of the studied substitutions is strictly required for triggering normal nodule formation. However, the nodulation efficiency was greatly determined by the synergistic presence of substitutions. Within the range tested, fluctuations of Nod factor amounts had little impact on the symbiotic phenotype.
机译:恶臭单胞菌(Azorhizobium caulinodans)ORS571主要合成五聚体Nod因子,其家用脂肪酸,N-甲基和6-O-氨基甲酰基在非还原末端残基,D-阿拉伯糖基,L-岩藻糖基或两者在还原末端残基。用一组细菌突变体对Sesbania rostrata进行结瘤,该突变体产生特征明确的Nod因子种群。在未经感染的不定根提取物的体外降解试验中,测试了纯化的Nod因子诱导根毛形成的能力及其稳定性。糖基化协同增加了结瘤效率和诱导根毛的能力,并且它们保护了Nod因子免于降解。就结瘤效率而言,D-阿拉伯糖基比L-岩藻糖基更重要。用6-O-硫酸酯代替6-O-L-岩藻糖基不会影响Nod因子的稳定性,但会降低结瘤效率,表明L-岩藻糖基可能在识别中起作用。 6-O-氨基甲酰基有助于结瘤效率,生物活性和保护作用,但可以被6-O-乙酰基取代以根瘤化。结果表明,没有任何研究的替代是触发正常结节形成的严格要求。但是,结瘤效率很大程度上取决于取代的协同作用。在测试范围内,Nod因子含量的波动对共生表型影响很小。

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