向日葵对列当寄生的生理响应及关键代谢通路分析
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内蒙古农业大学农学院

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内蒙古农业大学科技成果转化专项资金动植物品种选育(培育)(YZGC2017003); 内蒙古自治区自然科学基金(2019MS03049); 2019年内蒙古“草原英才”工程; 内蒙古自治区作物栽培与遗传改良重点实验室和农村部华北黄土高原地区作物栽培科学观测实验站(25204120


Physiological response and key metabolic pathway analysis of sunflower to broomrape parasitism
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    摘要:

    为揭示向日葵对列当寄生的生理响应及其相关代谢通路,以抗列当向日葵材料(s41)和感列当向日葵材料(s26)为供试材料进行了接种列当处理,对正常生长和列当寄生胁迫条件下的4个样本进行了转录组测序分析,同时对部分关键物质进行了生理验证分析。结果表明,通过对样品间进行差异基因筛选,得到DEGs数量分别为6362、6609、5490、5469个。GO分析表明,s26-s41、s26CK-s41CK、s26-s26CK、s41-s41CK 4个比较组参与生物过程差异基因较多,参与细胞组分的次之,参与分子功能的较少;KEGG分析表明列当寄生对向日葵的植物信号转导、次生代谢物的生物合成、脂质代谢、氨基酸代谢、糖代谢有较大的影响。生理指标测定结果显示,参与苯丙烷类代谢相关酶、抗氧化物质、水杨酸均有上升趋势,表明在列当寄生下,抗逆系统被激活,但感、抗材料相关生理指标变化趋势有所不同,控制相关生理指标的基因表达不同。研究结果为揭示抗列当分子机制奠定了基础。

    Abstract:

    In order to reveal the physiological response of sunflower to broomrape parasitism and its related metabolic pathways, the resistant-broomrape sunflower material (s41) and the sensitive-broomrape sunflower material (s26) were used as the test materials to inoculate the broomrape. Transcriptome sequencing analysis of 4 samples under the condition of parasitic stress in broomrape was carried out, and physiological verification analysis of some key substances was carried out. The results showed that the number of DEGs was 6362, 6609, 5490 and 5469 by screening the differential genes among the samples. GO analysis showed that the s26-s41, s26CK-s41CK, s26-s26CK, and s41-s41CK 4 comparison groups had more differential genes involved in biological processes, followed by cellular components, and less involved in molecular functions; KEGG analysis showed that Infection has a great influence on plant signal transduction, biosynthesis of secondary metabolites, lipid metabolism, amino acid metabolism and sugar metabolism in sunflower. The measurement results of physiological indicators showed that the enzymes involved in phenylpropane metabolism, antioxidant substances, and salicylic acid all showed an upward trend, indicating that under the parasitism of broomrape, the anti-stress system was activated, but the physiological indicators related to sense and anti-materials changed. The difference is that the gene expression that controls the relevant physiological indicators is different. The results laid the foundation for revealing the molecular mechanism of resistance broomrape.

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赵榕,王猛,赵雅杰,等.向日葵对列当寄生的生理响应及关键代谢通路分析[J].西北植物学报,2024,44(1):43-52

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  • 收稿日期:2022-09-27
  • 最后修改日期:2023-11-20
  • 录用日期:2023-04-12
  • 在线发布日期: 2024-01-05
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