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组织培养苗叶片冻存效果的代谢组学分析。

Metabolomic Analysis of the Effect of Freezing on Leaves of Histoculture Seedlings.

机构信息

Xinjiang Production and Construction Corps Key Laboratory of Special Fruits and Vegetables Cultivation Physiology and Germplasm Resources Utilization, Agricultural College of Shihezi University, Shihezi 832003, China.

出版信息

Int J Mol Sci. 2023 Dec 25;25(1):310. doi: 10.3390/ijms25010310.

Abstract

is the ancestor of cultivated apples, and is an excellent germplasm resource with high resistance to cold. Artificial refrigerators were used to simulate the low temperature of -3 °C to treat histoculture seedlings. Observations were performed to find the effects of freezing stress on the status of open or closed stomata, photosystems, and detection of metabolomic products in leaves of histoculture seedlings. The percentage of closed stomata in the histoculture seedlings increased, the maximum fluorescence (Fm') excited by a strong light (saturating pulse) was weakened relative to the real-time fluorescence in its vicinity, and the quantum yield of unregulated energy dissipation was increased in PSII under freezing stress. The metabolites in the leaves of the histoculture seedlings were analyzed by ultra-performance liquid chromatography-tandem mass spectrometry using CK, T12h, T36 h, and HF24h. Results demonstrated that cold stress in the histoculture seedlings led to wilting, leaf stomatal closure, and photosystem damage. There were 1020 metabolites identified as lipids (10.2%), nucleotides and their derivatives (5.2%), phenolic acids (19.12%), flavonoids (24.51%), amino acids and their derivatives (7.75%), alkaloids (5.39%), terpenoids (8.24%), lignans (3.04%), organic acids (5.88%), and tannins (0.88%). There were 110 differential metabolites at CKvsT12h, 113 differential metabolites at CKvsT36h, 87 differential metabolites at T12hvsT36h, 128 differential metabolites at CKvsHF24h, 121 differential metabolites at T12hvsHF24h, and 152 differential metabolites at T36hvsHF24h. The differential metabolites in the leaves of the seedlings grown under low-temperature stress mainly involved glycolysis, amino acid metabolism, lipid metabolism, pyrimidine metabolism, purine metabolism, and secondary metabolite metabolism. The seedlings responded to the freezing stress by coordinating with each other through these metabolic pathways. The metabolic network of the leaves of the histoculture seedlings under low temperature stress was also proposed based on the above pathways to deepen understanding of the response of metabolites of to low-temperature stress and to lay a theoretical foundation for the development and utilization of cultivation resources.

摘要

是栽培苹果的祖先,是一种抗寒能力很强的优异种质资源。利用人工冷藏箱模拟-3°C的低温处理组培苗,观察低温胁迫对组培苗开放或关闭气孔、光系统状态以及叶片代谢产物的影响。结果表明,在低温胁迫下,组培苗叶片萎蔫,气孔关闭,光系统受损。低温胁迫下,组培苗叶片中的代谢物通过 CK、T12h、T36h 和 HF24h 用超高效液相色谱-串联质谱法进行分析。结果表明,低温胁迫导致组培苗萎蔫、叶片气孔关闭和光系统损伤。共鉴定出 1020 种代谢物,包括脂质(10.2%)、核苷酸及其衍生物(5.2%)、酚酸(19.12%)、类黄酮(24.51%)、氨基酸及其衍生物(7.75%)、生物碱(5.39%)、萜类(8.24%)、木脂素(3.04%)、有机酸(5.88%)和单宁(0.88%)。CKvsT12h 有 110 个差异代谢物,CKvsT36h 有 113 个差异代谢物,T12hvsT36h 有 87 个差异代谢物,CKvsHF24h 有 128 个差异代谢物,T12hvsHF24h 有 121 个差异代谢物,T36hvsHF24h 有 152 个差异代谢物。低温胁迫下组培苗叶片差异代谢物主要涉及糖酵解、氨基酸代谢、脂类代谢、嘧啶代谢、嘌呤代谢和次生代谢物代谢。这些代谢途径相互协调,使组培苗对低温胁迫做出反应。还根据上述途径提出了低温胁迫下组培苗叶片的代谢网络,以加深对低温胁迫下组培苗代谢物的响应的理解,并为组培苗资源的开发利用奠定理论基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d774/10778857/177318d81f02/ijms-25-00310-g001a.jpg

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