摘要
目的研究不同强度的白光、红光和蓝光对丹参根系形态和有效成分积累的影响。方法分别利用4个光照强度的白光、红光和蓝光处理丹参植株,测定各处理组中丹参侧根数、侧根直径等根系形态学指标和7种有效成分的含量。结果在选定的光强范围内,不同的光质对丹参地上部分形态指标的影响不同。100、200μmol/(m^2·s)的红光可以促进侧根的发生,200、300μmol/(m^2·s)的蓝光则可显著提高根生物量。不同成分的积累对光质和光强的响应不同,丹参酮类成分的合成积累较酚酸类成分对光响应更为敏感。结论光对丹参根系形态和有效成分积累具有双重的调控作用,合理地利用光质和光强是提高丹参药材产量和品质的有效途径之一。
Objective Investigate the effects of different intensity of white light,red light and blue light on root morphology and bioactive compounds accumulations of Salvia miltiorrhiza.Methods The seedlings of S.miltiorrhiza were treated with 4 intensities of white light,red light and blue light,respectively,the morphologic index of root such as the lateral root number,lateral root diameter as well as the content of seven bioactive compounds were determined.Results The influences of different light quality on the above-ground morphological indexes of S.miltiorrhiza were distinct.Red light of 100μmol/(m^2·s)and 200μmol/(m^2·s)promoted the occurrence of lateral root,and blue light of 200μmol/(m^2·s)and 300μmol/(m^2·s)significantly increased the root biomass.The accumulation of different bioactive compounds was distinctly affected by light quality and light intensity,the accumulation of tanshinones was more sensitive to the light treatments than that of phenolic acids.Conclusion Light regulates the lateral root development and accumulations of bioactive compounds simultaneously,the application of artificial light is a promising method to improve the yield and quality of S.miltiorrhiza.
作者
冯思念
王瑞
顾雯
佘冰雨
王幼平
冯立国
张顺仓
FENG Si-nian;WANG Rui;GU Wen;SHE Bing-yu;WANG You-ping;FENG Li-guo;ZHANG Shun-cang(College of Bioscience and Biotechnology,Yangzhou University,Yangzhou 225009,China;College of Horticulture and Plant Protection,Yangzhou University,Yangzhou 225009,China)
出处
《中草药》
CAS
CSCD
北大核心
2019年第21期5313-5318,共6页
Chinese Traditional and Herbal Drugs
基金
国家自然科学基金项目(31700257)
江苏省高校自然科学研究面上项目(16KJB180032)
中国博士后科学基金面上项目(2015M571826)
扬州大学大学生学术科技创新基金项目(x20170809,x20180661)
江苏省生物技术品牌专业
关键词
光强
光质
根系形态
有效成分
丹参
light intensity
light quality
root morphology
bioactive compounds
Salvia miltiorrhiza Bge