首页> 外文期刊>Planta: An International Journal of Plant Biology >Brassinosteroids play multiple roles in nodulation of pea via interactions with ethylene and auxin
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Brassinosteroids play multiple roles in nodulation of pea via interactions with ethylene and auxin

机译:芸苔类固醇通过与乙烯和养蛋的相互作用发挥多种作用

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Main conclusion A comprehensive analysis of the role of brassinosteroids in nodulation, including their interactions with auxin and ethylene revealed that brassinosteroids inhibit infection, promote nodule initiation but do not influence nodule organogenesis or function. Nodulation, the symbiosis between legumes and rhizobial bacteria, is regulated by a suite of hormones including brassinosteroids. Previous studies have found that brassinosteroids promote nodule number by inhibiting ethylene biosynthesis. In this study, we examined the influence of brassinosteroids on the various stages of infection and nodule development. We utilise pea mutants, including brassinosteroid mutantslk,lkaandlkb,the ethylene insensitiveein2mutant and thelk ein2double mutant, along with transgenic lines expressing theDR5::GUS auxin activity marker to investigate how brassinosteroids interact with ethylene and auxin during nodulation. We show that brassinosteroids inhibit the early stages of nodulation, including auxin accumulation, root hair deformation and infection thread formation, and demonstrate that infection thread formation is regulated by brassinosteroids in an ethylene independent manner. In contrast, brassinosteroids appear to act as promoters of nodule initiation through both an ethylene dependent and independent pathway. Although brassinosteroids positively influence the ultimate number of nodules formed, we found that brassinosteroid-deficiency did not influence nodule structure including the vascular pattern of auxin activity or nitrogen-fixation capacity. These findings suggest that brassinosteroids are negative regulators of infection but positive regulators of nodule initiation. Furthermore, brassinosteroids do not appear to be essential for nodule organogenesis or function. Given the influence of brassinosteroids on discreet stages of nodulation but not nodule function, manipulation of brassinosteroids may be an interesting avenue for future research on the optimisation of nodulation.
机译:主要结论综合分析芸苔类固醇在旋转染色中的作用,包括它们与生长素和乙烯的相互作用表明,芸苔类固醇抑制感染,促进结节引发,但不会影响结节的子组织或功能。培训,豆类和根瘤菌细菌之间的共生是由包括芸苔类固醇的套件调节。以前的研究发现,通过抑制乙烯生物合成,芸苔类固醇促进结节数。在这项研究中,我们研究了芸苔类固醇对感染和结节发育的各个阶段的影响。我们利用豌豆突变体,包括芸苔类固醇异样蛋白,LKAandlkb,乙烯insensettein2制型和Thelk ein2double突变体,以及表达Thedr5 :: Gus毒素活性标记物的转基因素,以研究铜刀甾体醇在旋转过程中如何与乙烯和养肝剂相互作用。我们表明,芸苔类固醇抑制了染色的早期阶段,包括养阴积聚,根毛变形和感染螺纹形成,并证明感染螺纹形成由芸苔类化合物以乙烯独立的方式调节。相反,芸苔类固醇似乎通过乙烯依赖性和独立途径作为结节引发的启动子。虽然芸苔类化合物积极影响所形成的结节的最终数量,但我们发现芸苔类化缺乏症不影响包括血管活性或氮固定能力的血管模式的结节结构。这些研究结果表明,芸苔类化合物是感染的负调节因子,但结节炎的阳性调节剂。此外,芸苔类固醇似乎对结节器官发生或功能至关重要。鉴于芸苔类固醇对脱节阶段的影响而不是结节函数,芸苔类固醇的操纵可能是未来对染色的优化研究的有趣途径。

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