首页> 美国卫生研究院文献>Journal of Experimental Botany >E151 (sym15) a pleiotropic mutant of pea (Pisum sativum L.) displays low nodule number enhanced mycorrhizae delayed lateral root emergence and high root cytokinin levels
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E151 (sym15) a pleiotropic mutant of pea (Pisum sativum L.) displays low nodule number enhanced mycorrhizae delayed lateral root emergence and high root cytokinin levels

机译:E151(sym15)是豌豆(Pisum sativum L.)的多效性突变体其结节数低菌根增强侧根出现延迟和根细胞分裂素水平高

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摘要

In legumes, the formation of rhizobial and mycorrhizal root symbioses is a highly regulated process which requires close communication between plant and microorganism. Plant mutants that have difficulties establishing symbioses are valuable tools for unravelling the mechanisms by which these symbioses are formed and regulated. Here E151, a mutant of Pisum sativum cv. Sparkle, was examined to characterize its root growth and symbiotic defects. The symbioses in terms of colonization intensity, functionality of micro-symbionts, and organ dominance were compared between the mutant and wild type. The endogenous cytokinin (CK) and abscisic acid (ABA) levels and the effect of the exogenous application of these two hormones were determined. E151 was found to be a low and delayed nodulator, exhibiting defects in both the epidermal and cortical programmes though a few mature and functional nodules develop. Mycorrhizal colonization of E151 was intensified, although the fungal functionality was impaired. Furthermore, E151 displayed an altered lateral root (LR) phenotype compared with that of the wild type whereby LR emergence is initially delayed but eventually overcome. No differences in ABA levels were found between the mutant and the wild type, but non-inoculated E151 exhibited significantly high CK levels. It is hypothesized that CK plays an essential role in differentially mediating the entry of the two micro-symbionts into the cortex; whereas it would inhibit the entry of the rhizobia in that tissue, it would promote that of the fungus. E151 is a developmental mutant which may prove to be a useful tool in further understanding the role of hormones in the regulation of beneficial root symbioses.
机译:在豆科植物中,根瘤菌和菌根根共生体的形成是一个高度调控的过程,需要植物与微生物之间的密切交流。难以建立共生体的植物突变体是揭示这些共生体形成和调控机制的有价值的工具。这里是E151,一种Pisum sativum cv的突变体。检查了火花,以表征其根部生长和共生缺陷。比较了突变型和野生型之间在定植强度,微共生菌功能和器官优势方面的共生关系。确定了内源性细胞分裂素(CK)和脱落酸(ABA)的水平以及这两种激素的外源应用的影响。 E151被发现是一种低延迟结瘤菌,尽管有一些成熟和功能性结节发展,但在表皮和皮质程序中均表现出缺陷。尽管真菌功能受损,但E151的菌根定植加剧了。此外,与野生型相比,E151表现出改变的侧根(LR)表型,由此LR出现最初被延迟但最终被克服。在突变型和野生型之间未发现ABA水平的差异,但是未接种的E151表现出明显高的CK水平。假设CK在差异介导两个微共生团进入皮层中起着至关重要的作用。而它会抑制根瘤菌进入该组织,却会促进真菌的侵染。 E151是发育突变体,可能被证明是进一步了解激素在调节有益根共生体中的作用的有用工具。

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