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第三代太空诱变中光合作用、次生代谢产物及抗氧化活性的变化

Variation of photosynthesis, secondary metabolites and antioxidant activities in third generation of spaceflight-induced .

作者信息

Peng Liang, Ru Mei, Liang Zongsuo

机构信息

College of Pharmacy, Shaanxi University of Chinese Medicine, Xi'an 710000, China.

College of Life Sciences, Northwest A & F University, Yangling 712100, China.

出版信息

Chin Herb Med. 2022 Sep 15;14(4):592-601. doi: 10.1016/j.chmed.2022.02.005. eCollection 2022 Oct.

Abstract

OBJECTIVE

Spaceflight has long been perceived as an effective way to improve the quantity and quality of plants with wide applications. In order to obtain stable and inheritable descendants of spaceflight-induced lines, we investigated and analyzed four lines m16, m50, m51, m57 (three individuals of each line) and the ground control (three individuals) of the third generation of spaceflight-induced from primary/secondary metabolism and antioxidative abilities.

METHODS

A portable photosynthesis system (Li-6400) with red/blue LED light source was used to perform the photosynthetic characteristics to evaluate their primary productivity. The secondary metabolites (phenolic acids, tanshinones, total phenolics and flavonoids) and antioxidant activity of roots were analyzed to assess their quality.

RESULTS

Compared with control, line m16 presented weak photosynthetic ability, but high apparent quantum yield (AQY), higher contents of secondary metabolites, and stronger antioxidative abilities. Line m57 had a strong gas exchange ability, relatively higher secondary metabolites contents, and ascending antioxidative abilities. Lines m50 and m51 were in the middle level of lines m16 and m57. The principal component analysis for all the original data revealed three components including a root-related index, a leaf-related index, and a CO response parameter could be used to distinguish spaceflight-induced lines.

CONCLUSION

Line m57 could be an appropriate material for the investigation of targeted breeding towards high production, and line m16 could be used to identify essential genes and unravel sophisticated pathways underlying the secondary metabolisms.

摘要

目的

长期以来,太空飞行一直被视为一种改良植物数量和质量的有效方法,具有广泛应用。为了获得太空诱变品系稳定且可遗传的后代,我们从初级/次级代谢及抗氧化能力方面,对太空诱变第三代的4个品系m16、m50、m51、m57(每个品系3株)及地面对照(3株)进行了调查与分析。

方法

使用配备红/蓝LED光源的便携式光合作用系统(Li-6400)测定光合特性,以评估其初级生产力。分析根中的次生代谢产物(酚酸、丹参酮、总酚和类黄酮)及抗氧化活性,以评估其品质。

结果

与对照相比,品系m16光合能力较弱,但表观量子产率(AQY)较高,次生代谢产物含量较高,抗氧化能力较强。品系m57气体交换能力较强,次生代谢产物含量相对较高,抗氧化能力呈上升趋势。品系m50和m51处于品系m16和m57的中间水平。对所有原始数据进行主成分分析发现,包括一个根相关指标、一个叶相关指标和一个CO响应参数的三个成分可用于区分太空诱变种系。

结论

品系m57可能是高产定向育种研究的合适材料,品系m16可用于鉴定关键基因并揭示次生代谢背后的复杂途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/673d/9669357/9e91cd67374c/gr1.jpg

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