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转录组分析揭示了受精对浙贝母生长和品质的影响。

Transcriptomic analysis reveals effects of fertilization towards growth and quality of Fritillariae thunbergii bulbus.

机构信息

College of Life Sciences and Medicine, Zhejiang Sci-Tech University, Hangzhou, P.R. China.

Zhejiang Institute for Food and Drug Control, Hangzhou, P.R. China.

出版信息

PLoS One. 2024 Sep 20;19(9):e0309978. doi: 10.1371/journal.pone.0309978. eCollection 2024.

Abstract

Fritillariae thunbergii Bulbus (FTB) is a traditional Chinese medicine that has been widely cultivated for its expectorant, antitussive, antiasthmatic, antiviral, and anticancer properties. The yield and quality of F. thunbergii are influenced by cultivation conditions, such as the use of fertilizers. However, the optimal type of fertilizers for maximum quality and yield and underlying mechanisms are not clear. We collected F. thunbergii using raw chicken manure (RC), organic fertilizer (OF), and plant ash (PA) as the base fertilizer in Pan'an County, Jinhua City, Zhejiang Province as experimental materials. The combined results of HPLC-ELSD detection and yield statistics showed that the F. thunbergii with OF application was the best, with the content of peimine and peiminine reaching 0.0603% and 0.0502%, respectively. In addition, the yield was 2.70 kg/m2. Transcriptome analysis indicated that up-regulation of the ABA signaling pathway might promote bulb yield. Furthermore, putative key genes responsible for steroidal alkaloid accumulation were identified. These results provided guiding significance for the rational fertilization conditions of F. thunbergii as well as the basis for the exploration of functional genes related to the alkaloid biosynthesis pathway.

摘要

浙贝母(Fritillariae thunbergii Bulbus,FTB)是一种传统的中药材,具有化痰、止咳、平喘、抗病毒和抗癌等功效。其产量和质量受栽培条件的影响,如肥料的使用。然而,对于获得最佳质量和产量的最佳肥料类型及其潜在机制尚不清楚。本研究以浙江省金华市磐安县采集的浙贝母为实验材料,分别使用生鸡粪(RC)、有机肥(OF)和草木灰(PA)作为基肥。HPLC-ELSD 检测和产量统计的综合结果表明,施用 OF 的浙贝母质量最佳,其浙贝甲素和浙贝乙素含量分别达到 0.0603%和 0.0502%。此外,产量为 2.70kg/m2。转录组分析表明,ABA 信号通路的上调可能促进鳞茎的产量。此外,还鉴定了可能与甾体生物碱积累相关的关键基因。这些结果为浙贝母的合理施肥条件提供了指导意义,也为探索与生物碱生物合成途径相关的功能基因奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5c4/11414930/901202c9e9d6/pone.0309978.g001.jpg

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