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转录组和代谢组的综合分析揭示了厚朴中响应生物气候因子的木质素生物合成的全面机制。

Integrative analyses of the transcriptome and metabolome reveal comprehensive mechanisms of monolignol biosynthesis in response to bioclimatic factors in Magnolia officinalis.

作者信息

Zhong Mingxin, Wang Qian, Tian Hui, Zhang Bainian, Xu Zhuo, Zhang Yuanyuan, Tan Chengjia, Hu Xin, Wang Tao, Feng Daren, Xi Zhenpeng

机构信息

Key Laboratory for Quality Control and Evaluation of Traditional Chinese Medicine in Mianyang, Mianyang Teachers' College, No. 166 Mianxing West Road, Fucheng District, Mianyang, Sichuan Province, 621000, China.

Ecological Security and Protection Key Laboratory of Sichuan Province, Mianyang, 621000, China.

出版信息

BMC Plant Biol. 2024 Dec 19;24(1):1210. doi: 10.1186/s12870-024-05933-5.

Abstract

BACKGROUND

Magnolia officinalis (M. officinalis) thrives in temperate, elevated regions, and its desiccated bark comprises medicinal monolignol. Both abiotic and biotic factors can influence the pharmacodynamic compounds of M. officinalis, which display a variety of capabilities. It was the goal of this study to find the main bioclimatic factors that impact the amount of helpful compounds in M. officinalis and to show how these bioclimatic factors influence the metabolic pathways of magnolol and honokiol through actions on transcripts and molecules. We assessed the amounts of medicinal compounds in M. officinalis from Baoxing (BX), Nanjiang (NJ), Xuanhan (XH), and Beichuan (BC) in Sichuan Province. After that, the bioclimatic factors were gathered and put together that affected the growth and used the transcriptome and metabolome to label the M. officinalis data. The associated metabolic pathways were analyzed based on significant alterations in bioclimatic factors.

RESULTS

Temperature and precipitation influence the accumulation of bioactive compounds in M. officinalis, as well as the metabolism of monolignol, amino acids, flavonoids, α-linolenic acid, and arachidonic acids. Moreover, temperature was negatively related to the mounts of phenylalanine ammonia-lyase (PAL), 4-coumarate-CoA ligase (4CL), and cinnamoyl-CoA reductase (CCR) in the monolignol biosynthetic pathway, as well as to the amounts of cinnamyl alcohol and 4-coumaryl alcohol that were made.

CONCLUSIONS

Moderate temperatures and appropriate precipitation enhanced the metabolism of monolignols in M. officinalis, ascribed to elevated levels of effective enzyme that correlated with the temperature and precipitation modulation of PAL, 4CL, and CCR activity. Furthermore, this study discovered that cinnamonyl alcohol and 4-coumaryl alcohol were critical precursors for the production of magnolol and honokiol, indicating potential strategies for improving M. officinalis' pharmacodynamic characteristics.

摘要

背景

厚朴生长于温带高海拔地区,其干燥树皮含有药用单木酚。非生物和生物因素均可影响厚朴的药效成分,这些成分具有多种功能。本研究旨在找出影响厚朴中有益化合物含量的主要生物气候因素,并展示这些生物气候因素如何通过作用于转录本和分子来影响厚朴酚和和厚朴酚的代谢途径。我们评估了四川省宝兴(BX)、南江(NJ)、宣汉(XH)和北川(BC)厚朴中药用化合物的含量。之后,收集并整合了影响其生长的生物气候因素,并利用转录组和代谢组对厚朴数据进行标记。基于生物气候因素的显著变化分析了相关代谢途径。

结果

温度和降水影响厚朴中生物活性化合物的积累,以及单木酚、氨基酸、黄酮类化合物、α-亚麻酸和花生四烯酸的代谢。此外,温度与单木酚生物合成途径中苯丙氨酸解氨酶(PAL)、4-香豆酸辅酶A连接酶(4CL)和肉桂酰辅酶A还原酶(CCR)的含量呈负相关,也与生成的肉桂醇和4-香豆醇的含量呈负相关。

结论

适度的温度和适宜的降水增强了厚朴中单木酚的代谢,这归因于有效酶水平的提高,而有效酶水平与PAL、4CL和CCR活性的温度和降水调节相关。此外,本研究发现肉桂醇和4-香豆醇是厚朴酚和和厚朴酚产生的关键前体,这为改善厚朴的药效特性指明了潜在策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95a1/11657092/930760916cfa/12870_2024_5933_Fig1_HTML.jpg

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