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利用dQTG.seq模型对影响大豆异黄酮含量表型可塑性的遗传位点进行分析。

The analysis of the genetic loci affecting phenotypic plasticity of soybean isoflavone content by dQTG.seq model.

作者信息

Yang Zhenhong, Zhan Yuhang, Zhu Yina, Zhu Hanhan, Zhou Changjun, Yuan Ming, Li Haiyan, Liu Miao, Teng Weili, Li Yongguang, Zhao Xue, Wang Yuhe, Han Yingpeng

机构信息

Key Laboratory of Soybean Biology in Chinese Ministry of Education (Key Laboratory of Soybean Biology and Breeding/Genetics of Chinese Agriculture Ministry), Northeast Agricultural University, Harbin, 150030, China.

Daqing Branch, Heilongjiang Academy of Agricultural Science, Daqing, China.

出版信息

Theor Appl Genet. 2024 Dec 17;138(1):9. doi: 10.1007/s00122-024-04798-4.

Abstract

The dQTG.seq model was utilized to investigate the genetic underpinnings of phenotypic plasticity in soybean isoflavone content, leading to the identification of 100 marker sites associated with phenotypic plasticity, including 27 transcription factors. Overexpression of Glyma.18G091600 (GmERF7) hairy roots under low temperature, salt, and drought stress confirmed the regulatory role of GmERF7 in the phenotypic plasticity of soybean isoflavone content. Phenotypic plasticity is characteristic of organisms that undergo phenotypic changes in response to environmental fluctuations. This phenomenon is pivotal in evolutionary processes and the emergence of new traits. Isoflavones, significant secondary metabolites found in soybeans, have garnered considerable attention owing to their beneficial physiological effects on human health. The variation in isoflavone content among different soybean varieties is influenced by diverse environmental factors, thereby influencing the evaluation of high and low isoflavone varieties. In this study, we measured the phenotypic plasticity of isoflavone content in recombinant inbred lines Hefeng 25 and L-28 in three different environments over two years. Utilizing the dQTG.seq model, 100 statistically significant markers were identified, and 101 potential genes, including 27 transcription factors, were screened. Through qRT-PCR analysis, elevated expression levels of Glyma.18G091600, Glyma.09G196200, and Glyma.05G229500 were observed in various parts of soybean plants. Under low temperature, drought or salt stress conditions, the related enzymes involved in the isoflavone synthesis pathway were notably upregulated in Glyma.18G091600 (GmERF7) overexpressed hairy roots compared to wild-type controls, resulting to higher phenotypic plasticity values for DZ, GC, GT, and TI. These results suggest that GmERF7 influences the phenotypic plasticity of soybean isoflavone content, enhancing adaptation to adverse environments, while also promoting the synthesis and accumulation of soybean isoflavones.

摘要

利用dQTG.seq模型研究大豆异黄酮含量表型可塑性的遗传基础,从而鉴定出100个与表型可塑性相关的标记位点,其中包括27个转录因子。在低温、盐和干旱胁迫下,Glyma.18G091600(GmERF7)毛状根的过表达证实了GmERF7在大豆异黄酮含量表型可塑性中的调控作用。表型可塑性是生物体因环境波动而发生表型变化的特征。这种现象在进化过程和新性状的出现中至关重要。异黄酮是大豆中发现的重要次生代谢产物,因其对人体健康有益的生理作用而备受关注。不同大豆品种间异黄酮含量的差异受多种环境因素影响,进而影响高异黄酮品种和低异黄酮品种的评价。在本研究中,我们在两年内的三种不同环境下测量了重组自交系合丰25和L-28中异黄酮含量的表型可塑性。利用dQTG.seq模型,鉴定出100个具有统计学意义的标记,并筛选出101个潜在基因,其中包括27个转录因子。通过qRT-PCR分析,在大豆植株的各个部位均观察到Glyma.18G091600、Glyma.09G196200和Glyma.05G229500的表达水平升高。在低温、干旱或盐胁迫条件下,与野生型对照相比,Glyma.18G091600(GmERF7)过表达毛状根中异黄酮合成途径相关的酶显著上调,导致DZ、GC、GT和TI的表型可塑性值更高。这些结果表明,GmERF7影响大豆异黄酮含量的表型可塑性,增强对逆境的适应性,同时还促进大豆异黄酮的合成和积累。

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