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[内生根囊霉对丹参生长的影响]

[Effect of Rhizophagus intraradices on growth of Salvia miltiorrhiza].

作者信息

Zheng Ling-Ling, Chen Mei-Lan, Kang Li-Ping, Wang Ying-Li, Zhou Xiu-Teng

机构信息

State Key Laboratory Breeding Base of Dao-di Herbs, National Resource Center for Chinese Materia Medica, China Academy of Chinese Medical Sciences Beijing 100700, China Jiangxi Institute of Traditional Chinese Medicine Health Industry/Institute of Traditional Chinese Medicine Health Industry, China Academy of Chinese Medical Sciences Nanchang 330029, China.

State Key Laboratory Breeding Base of Dao-di Herbs, National Resource Center for Chinese Materia Medica, China Academy of Chinese Medical Sciences Beijing 100700, China.

出版信息

Zhongguo Zhong Yao Za Zhi. 2023 Jan;48(2):349-355. doi: 10.19540/j.cnki.cjcmm.20221017.101.

Abstract

The study aimed to explore the effects of inoculation of Rhizophagus intraradices on the biomass, effective component content, and endogenous hormone content of Salvia miltiorrhiza through pot experiments. The number of leaves, plant height, dry weight of aboveground and underground parts, branch number, root number, root length, root diameter, and other biomass were mea-sured by weighing and counting methods. The content of salvianolic acid B, caffeic acid, rosmarinic acid, tanshinone Ⅰ, tanshinone Ⅱ_A, cryptotanshinone, and other effective components was determined by ultra-high performance liquid chromatography. The content of ABA and GA_3 was determined by triple quadrupole mass spectrometry. The correlations between biomass and effective components and between effective components and plant hormones ABA and GA_3 were analyzed. The results showed that R. intraradices significan-tly increased the aboveground dry weight, leaf number, and root number of S. miltiorrhiza by 0.24-0.65 times, respectively. The content of salvianolic acid B and rosmarinic acid in the aboveground part and the content of salvianolic acid B, caffeic acid, rosmarinic acid, tanshinone Ⅰ, and tanshinone Ⅱ_A in the underground part were significantly increased by 0.44-1.78 times, respectively. R. intraradices infection significantly increased the GA_3/ABA values of aboveground and underground parts by 3.82 and 76.47 times, respectively. The correlation analysis showed that caffeic acid, the effective component of the aboveground part, was significantly positively correlated with plant height, tanshinone Ⅱ_A, the effective component of the underground part, was significantly positively correlated with biomass root number, cryptotanshinone, and dry weight, while rosmarinic acid was significantly negatively correlated with dry weight. There were significant positive correlations between cryptotanshinone and ABA, tanshinone Ⅱ_A and ABA and GA_3, and caffeic acid and GA_3. In conclusion, R. intraradices can promote the accumulation of biomass and secondary metabolites of S. miltiorrhiza and regulate the balance between plant hormones ABA and GA_3, thereby promoting the growth of S. miltiorrhiza.

摘要

本研究旨在通过盆栽试验探究接种摩西斗管囊霉对丹参生物量、有效成分含量及内源激素含量的影响。通过称重和计数的方法测量叶片数量、株高、地上和地下部分的干重、分枝数、根数、根长、根直径等生物量。采用超高效液相色谱法测定丹酚酸B、咖啡酸、迷迭香酸、丹参酮Ⅰ、丹参酮Ⅱ_A、隐丹参酮等有效成分的含量。采用三重四极杆质谱法测定脱落酸(ABA)和赤霉素(GA_3)的含量。分析了生物量与有效成分之间以及有效成分与植物激素ABA和GA_3之间的相关性。结果表明,摩西斗管囊霉显著增加了丹参地上干重、叶片数量和根数,分别增加了0.24 - 0.65倍。地上部分丹酚酸B和迷迭香酸的含量以及地下部分丹酚酸B、咖啡酸、迷迭香酸、丹参酮Ⅰ和丹参酮Ⅱ_A的含量分别显著增加了0.44 - 1.78倍。摩西斗管囊霉侵染显著提高了地上和地下部分的GA_3/ABA值,分别提高了3.82倍和76.47倍。相关性分析表明,地上部分有效成分咖啡酸与株高显著正相关,地下部分有效成分丹参酮Ⅱ_A与生物量、根数、隐丹参酮和干重显著正相关,而迷迭香酸与干重显著负相关。隐丹参酮与ABA、丹参酮Ⅱ_A与ABA和GA_3、咖啡酸与GA_3之间存在显著正相关。综上所述,摩西斗管囊霉可促进丹参生物量和次生代谢产物的积累,调节植物激素ABA和GA_3之间的平衡,从而促进丹参生长。

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