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Interactions between ethylene gibberellins and brassinosteroids in the development of rhizobial and mycorrhizal symbioses of pea

机译:乙烯赤霉素和油菜素类固醇在豌豆的根瘤菌和菌根共生体发育中的相互作用

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摘要

The regulation of arbuscular mycorrhizal development and nodulation involves complex interactions between the plant and its microbial symbionts. In this study, we use the recently identified ethylene-insensitive ein2 mutant in pea (Pisum sativum L.) to explore the role of ethylene in the development of these symbioses. We show that ethylene acts as a strong negative regulator of nodulation, confirming reports in other legumes. Minor changes in gibberellin1 and indole-3-acetic acid levels in ein2 roots appear insufficient to explain the differences in nodulation. Double mutants produced by crosses between ein2 and the severely gibberellin-deficient na and brassinosteroid-deficient lk mutants showed increased nodule numbers and reduced nodule spacing compared with the na and lk single mutants, but nodule numbers and spacing were typical of ein2 plants, suggesting that the reduced number of nodules in na and lk plants is largely due to the elevated ethylene levels previously reported in these mutants. We show that ethylene can also negatively regulate mycorrhizae development when ethylene levels are elevated above basal levels, consistent with a role for ethylene in reducing symbiotic development under stressful conditions. In contrast to the hormone interactions in nodulation, ein2 does not override the effect of lk or na on the development of arbuscular mycorrhizae, suggesting that brassinosteroids and gibberellins influence this process largely independently of ethylene.
机译:丛枝菌根发育和结瘤的调控涉及植物与其微生物共生体之间的复杂相互作用。在这项研究中,我们使用最近鉴定的豌豆(Pisum sativum L.)中对乙烯不敏感的ein2突变体来探索乙烯在这些共生酶发育中的作用。我们证明乙烯是结瘤的强有力的负调节剂,证实了其他豆类中的报道。 ein2根中赤霉素1和吲哚-3-乙酸水平的微小变化似乎不足以解释结瘤的差异。与na和lk单突变体相比,ein2与严重赤霉素缺乏的na和油菜素甾体缺陷型lk突变体杂交产生的双突变体显示出结节数增加和结节间距减小,但结节数和间距是ein2植物的典型特征。 na和lk植物中根瘤数量减少的主要原因是先前在这些突变体中报道的乙烯含量升高。我们显示,当乙烯水平升高到高于基础水平时,乙烯还可以负面调节菌根的发育,这与乙烯在压力条件下减少共生的作用一致。与结瘤中的激素相互作用相反,ein2不能覆盖lk或na对丛枝菌根发育的影响,这表明油菜素固醇和赤霉素在很大程度上独立于乙烯而影响该过程。

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