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代谢变化为研究柱花草根系响应磷缺乏提供了新视角。

Metabolic alterations provide insights into Stylosanthes roots responding to phosphorus deficiency.

机构信息

College of Tropical Crops, Hainan University, Institute of Tropical Crop Genetic Resources, Chinese Academy of Tropical Agriculture Sciences, Haikou, 570228, China.

出版信息

BMC Plant Biol. 2020 Feb 22;20(1):85. doi: 10.1186/s12870-020-2283-z.

Abstract

BACKGROUND

Phosphorus (P) deficiency is one of the major constraints limiting plant growth, especially in acid soils. Stylosanthes (stylo) is a pioneer tropical legume with excellent adaptability to low P stress, but its underlying mechanisms remain largely unknown.

RESULTS

In this study, the physiological, molecular and metabolic changes in stylo responding to phosphate (Pi) starvation were investigated. Under low P condition, the growth of stylo root was enhanced, which was attributed to the up-regulation of expansin genes participating in root growth. Metabolic profiling analysis showed that a total of 256 metabolites with differential accumulations were identified in stylo roots response to P deficiency, which mainly included flavonoids, sugars, nucleotides, amino acids, phenylpropanoids and phenylamides. P deficiency led to significant reduction in the accumulation of phosphorylated metabolites (e.g., P-containing sugars, nucleotides and cholines), suggesting that internal P utilization was enhanced in stylo roots subjected to low P stress. However, flavonoid metabolites, such as kaempferol, daidzein and their glycoside derivatives, were increased in P-deficient stylo roots. Furthermore, the qRT-PCR analysis showed that a set of genes involved in flavonoids synthesis were found to be up-regulated by Pi starvation in stylo roots. In addition, the abundances of phenolic acids and phenylamides were significantly increased in stylo roots during P deficiency. The increased accumulation of the metabolites in stylo roots, such as flavonoids, phenolic acids and phenylamides, might facilitate P solubilization and cooperate with beneficial microorganisms in rhizosphere, and thus contributing to P acquisition and utilization in stylo.

CONCLUSIONS

These results suggest that stylo plants cope with P deficiency by modulating root morphology, scavenging internal Pi from phosphorylated metabolites and increasing accumulation of flavonoids, phenolic acids and phenylamides. This study provides valuable insights into the complex responses and adaptive mechanisms of stylo roots to P deficiency.

摘要

背景

磷(P)缺乏是限制植物生长的主要因素之一,尤其是在酸性土壤中。柱花草(Stylo)是一种具有优异耐低磷胁迫能力的热带豆科先锋植物,但其中的机制仍知之甚少。

结果

本研究调查了柱花草对磷酸盐(Pi)饥饿的生理、分子和代谢变化。在低磷条件下,柱花草根的生长增强,这归因于参与根生长的扩展蛋白基因的上调。代谢谱分析表明,在柱花草根对缺磷的响应中,共鉴定出 256 种差异积累的代谢物,主要包括类黄酮、糖、核苷酸、氨基酸、苯丙烷和苯酰胺。缺磷导致磷酸化代谢物(如含磷糖、核苷酸和胆碱)的积累显著减少,表明低磷胁迫下柱花草根内 P 的利用增强。然而,在缺磷的柱花草根中,类黄酮代谢物如槲皮素、大豆苷元和它们的糖苷衍生物增加。此外,qRT-PCR 分析表明,一组参与类黄酮合成的基因在柱花草根中被 Pi 饥饿上调。此外,在柱花草根中,在缺磷期间,酚酸和苯酰胺的丰度显著增加。柱花草根中代谢物的积累增加,如类黄酮、酚酸和苯酰胺,可能有助于 P 的溶解,并与根际有益微生物合作,从而有助于柱花草对 P 的获取和利用。

结论

这些结果表明,柱花草植物通过调节根形态、从磷酸化代谢物中清除内部 P 和增加类黄酮、酚酸和苯酰胺的积累来应对 P 缺乏。本研究为柱花草根对 P 缺乏的复杂反应和适应机制提供了有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b112/7036231/c9e2a774fe59/12870_2020_2283_Fig1_HTML.jpg

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