| Literature DB >> 35701557 |
Dan Han1, Kai Wang2, Feng Long1, Wangbin Zhang3, Xiang Yao4, Shuihong Chen5.
Abstract
It is currently unclear whether the mechanism of endophytic fungi improving the alkali tolerance of Hordeum bogdanii affects secondary metabolites. Unveiling this knowledge is crucial for understanding the tolerance mechanism of H. bogdanii to alkaline stress. The aim of this study was to investigate how endophytic fungi affect secondary metabolites of H. bogdanii under alkaline stress at different concentrations. Endophyte-infected (E +) and endophyte-free (E-) individuals of H. bogdanii were used as materials in this study. The method of indoor vermiculite aseptic planting was adopted. After mixed alkali stress treatment, the roots, stems, and leaves of the plants were collected to measure the indicators related to secondary metabolites. The results showed that endophytic fungi improved the alkali resistance of H. bogdanii by improving the related indicators of secondary metabolites. endophytic fungi significantly increased the contents of phosphorus, polyphenols, and alkaloids, and the activities of polyphenol oxidase and acid phosphatase, and significantly reduced flavonoid content. The content of polyphenols and alkaloids in stems, polyphenol oxidase activity in stems and leaves, and acid phosphatase activity in leaves were significantly affected. The findings of this study may aid in amplifying the alkali resistance mechanism of endophytic fungi to H. bogdanii as well as provide insights into improving the alkali resistance of other plants.Entities:
Keywords: Alkaline stress; Endophytic fungi; Flavonoid; Hordeum bogdani; Polyphenol; Secondary metabolite
Year: 2022 PMID: 35701557 PMCID: PMC9198191 DOI: 10.1186/s13568-022-01414-w
Source DB: PubMed Journal: AMB Express ISSN: 2191-0855 Impact factor: 4.126
Fig. 1Phosphorus content in E + and E− Hordeum bogdanii roots under different concentrations of alkaliIn different treatments, in the same E + or E−, different lowercase letters show significant differences (P < 0.05); in the same treatment of E + and E−, significant differences between pairs are indicated by "*" (P < 0.05), as shown above.
Two-factor analysis of endophytic fungi on the phosphorus content, flavonoids, and alkaloids of Hordeum bogdanii under alkali stress
| Phosphorus content | Flavonoid content | Alkaloid content | |||||
|---|---|---|---|---|---|---|---|
| df | F | F | F | ||||
| Endophytic Fungi | 1 | 409.034 | 0.000 | 114.922 | 0.000 | 1281.122 | 0.000 |
| Alkali treatment | 5 | 3305.367 | 0.000 | 32.157 | 0.000 | 549.658 | 0.000 |
| Endophytic Fungi × Alkali treatment | 5 | 68.466 | 0.000 | 6.634 | 0.001 | 31.433 | 0.000 |
df is the degree of freedom, F is the statistic of F test, P is statistical significance, as shown above
Fig. 2Flavonoid contents in stems of E + and E− Hordeum bogdanii under different concentrations of alkali
Fig. 3Polyphenol content in the stems and roots of E + and E− Hordeum bogdanii under different concentrations of alkali (A is the stem, B is the root)
Fig. 4Alkaloid content in the stems of E + and E− Hordeum bogdanii under different concentrations of alkali
Fig. 5Polyphenol oxidase activity and acid phosphatase activity in stems and leaves of E + and E− Hordeum bogdanii under different concentrations of alkali (picture A is polyphenol oxidase activity in stem, picture B is polyphenol oxidase activity in leaves, picture C is acid phosphatase activity in leaves)
Two-factor analysis of effect of endophytic fungi on the polyphenol content, and the activities of polyphenol oxidase and acid phosphatase in Hordeum bogdanii under alkali stress
| Polyphenol content (stem) | Polyphenol content (root) | Polyphenol oxidase activity (stem) | Polyphenol oxidase activity (leaf) | Acid phosphatase activity | |||||||
|---|---|---|---|---|---|---|---|---|---|---|---|
| df | F | F | F | F | F | ||||||
| Endophytic Fungi | 1 | 74.062 | 0.000 | 584.955 | 0.000 | 1841.759 | 0.000 | 284.999 | 0.000 | 240.783 | 0.000 |
| Alkali treatment | 5 | 161.645 | 0.000 | 186.247 | 0.000 | 3881.38 | 0.000 | 1465.891 | 0.000 | 576.207 | 0.000 |
| Endophytic Fungi × Alkali treatment | 5 | 6.593 | 0.000 | 49.902 | 0.000 | 420.888 | 0.000 | 8.817 | 0.000 | 12.002 | 0.000 |