[Genetic diversity of SP1 population of space mutagenized Pueraria montana].

Q3 Pharmacology, Toxicology and Pharmaceutics Zhongguo Zhongyao Zazhi Pub Date : 2024-07-01 DOI:10.19540/j.cnki.cjcmm.20240415.102
Ji-Dan Hu, Li-Hua Dong, Wei-Feng Zhu, Bin Wang, Yi-Ming Chen, Xiao-Yun Wang, Yu-Ye Zhu, Fei Ge
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Abstract

To explore the mutagenic effect of the space environment on Pueraria montana and select the elite germplasm with good growth conditions and high isoflavone content, this study observed the agronomic traits, determined the flower isoflavone content, and labeled amplified fragment length polymorphism(AFLP) fluorescent molecular markers of 79 P. montana plants exposed to space mutagenesis(SP1 group) and 10 control plants of P. montana(CK group). Excel 2019, SPSS 25.0, NTSYSpc-2.11F, and Popgen 32 were employed to analyze the genetic diversity and perform the cluster analysis. The results showed that the SP1 group presented changed leaf hairy attitude and flower structure and higher CV and H' of quantitative traits than the CK group. The cluster analysis screened out five plants in the SP1 group. Ten P. montana plants in the SP1 group had higher content of 6″-O-xylosyl-tectoridin and tectoridin in the flowers than the control group, with the total content of both exceeding 11%. After clustering, 9 plants in the SP1 group were separated. Nine pairs of polymorphic primers were screened out frrom 64 pairs of primers. A total of 1 620 polymorphic loci were detected, with the average percentage of polymorphic loci(PPL) of 83.33%. The average Nei's gene diversity index(H) and Shannon's information index(I) were 0.192 2 and 0.305 2, respectively. After clustering, 4 plants in the SP1 group were screened out. According to the above results, plants No. 30, No. 66, and No. 89 in the SP1 group were subjected to greater mutagenic effect by the space environment and presented better growth and higher flower isoflavone content. Moreover, plant No. 30 showed the flower structure variation and flower weight two times of that in the CK group. These plants can be used as key materials for the subsequent experiments.

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[空间诱变葛根 SP1 群体的遗传多样性]。
为探讨空间环境对葛根的诱变效应,筛选出生长条件好、异黄酮含量高的优良种质,本研究对79株暴露于空间诱变的葛根植株(SP1组)和10株对照葛根植株(CK组)进行了农艺性状观察、花异黄酮含量测定和扩增片段长度多态性(AFLP)荧光分子标记标记。采用 Excel 2019、SPSS 25.0、NTSYSpc-2.11F 和 Popgen 32 分析遗传多样性并进行聚类分析。结果表明,SP1组的叶毛姿态和花的结构发生了变化,数量性状的CV和H'均高于CK组。聚类分析筛选出 SP1 组中的 5 株植株。SP1组中的10株蒙花花朵中6″-O-木糖基蝶啶和蝶啶的含量高于对照组,总含量超过11%。经过聚类,SP1 组中的 9 株植物被分离出来。从 64 对引物中筛选出 9 对多态引物。共检测到 1 620 个多态性位点,平均多态性位点百分比(PPL)为 83.33%。平均内氏基因多样性指数(H)和香农信息指数(I)分别为 0.192 2 和 0.305 2。经过聚类,筛选出 SP1 组中的 4 株植物。根据上述结果,SP1 组中的 30 号、66 号和 89 号植株受到空间环境的诱变作用较大,生长较好,花异黄酮含量较高。此外,30 号植株的花结构变化和花重是 CK 组的 2 倍。这些植物可作为后续实验的关键材料。
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来源期刊
Zhongguo Zhongyao Zazhi
Zhongguo Zhongyao Zazhi Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (all)
CiteScore
1.50
自引率
0.00%
发文量
581
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