生物技术通报 ›› 2024, Vol. 40 ›› Issue (9): 92-103.doi: 10.13560/j.cnki.biotech.bull.1985.2024-0528

• 薯类作物生物技术专题(专题主编:徐建飞,尚轶) • 上一篇    下一篇

马铃薯野生种烯酰水合酶超家族基因ScDHNS的克隆与功能分析

乔岩1,3(), 杨芳1,2, 任盼荣1,2, 祁伟亮1,2, 安沛沛1,2, 李茜1,2, 李丹1,2, 肖俊飞4   

  1. 1.陇东学院农业与生物工程学院,庆阳 745000
    2.陇东旱地作物种质改良及产业化协同创新中心,庆阳 745000
    3.甘肃省陇东生物资源保护利用与生态修复重点实验室,庆阳 745000
    4.甘肃农业大学农学院,兰州 730000
  • 收稿日期:2024-05-28 出版日期:2024-09-26 发布日期:2024-10-12
  • 作者简介:乔 岩,男,博士,副教授,研究方向:马铃薯抗逆生理及分子生物学;E-mail: yanqiao@ldxy.edu.cn;乔岩同时为本文通信作者
  • 基金资助:
    国家自然科学基金地区科学基金项目(31960441);甘肃省自然科学基金(18JR3RM236);庆阳市重点研发计划(QY-STK-2023A-077);庆阳市科技人才专项计划(QY-STK-2022A-006)

Cloning and Function Analysis of the ScDHNS Gene of Crotonase/Enoyl-CoA Superfamily from a Wild Potato Species

QIAO Yan1,3(), YANG Fang1,2, REN Pan-rong1,2, QI Wei-liang1,2, AN Pei-pei1,2, LI Qian1,2, LI Dan1,2, XIAO Jun-fei4   

  1. 1. College of Agriculture and Biotechnology, Longdong University, Qingyang 745000
    2. Collaborative Innovation Center for Longdong Dryland Crop Germplasm Improvement & Industrialization, Qingyang 745000
    3. Gansu Key Laboratory of Protection and Utilization for Biological Resources and Ecological Restoration, Qingyang 745000
    4. Agronomy College, Gansu Agricultural University, Lanzhou 730000
  • Received:2024-05-28 Published:2024-09-26 Online:2024-10-12

摘要:

【目的】1,4-二氢氧-2-石脑-CoA合成酶(1,4-dihydroxy-2-naphthoyl-CoA synthase,DHNS)基因是茄科植物糖苷生物碱合成代谢的潜在重要基因,开展马铃薯DHNS基因功能研究与验证,为低糖苷生物碱马铃薯品种(系)的选育提供基因和材料来源。【方法】利用RACE方法克隆得到马铃薯野生种恰柯薯(Solanum chacoenseScDHNS基因,对其进行生物信息学分析和亚细胞定位,通过构建过表达载体pBWA(V)HS-DHNS转化马铃薯栽培种进行功能验证。【结果】ScDHNS cDNA序列开放阅读框1 023 bp,编码340个氨基酸,分子量为37.34 kD,等电点pI为8.592,具有典型的ECH保守结构域,属于烯酰水合酶超家族成员,在二穗短柄草(Brachypodium distachyon)、蒺藜苜蓿(Medicago truncatula)等植物基因组中都有其同源基因,且存在基因扩张和收缩事件。过表达ScDHNS基因后发现转化株ScDHNSSGT1基因表达量显著上调,且表达量显著高于马铃薯WT植株。且对应转化植株的总糖苷生物碱含量显著高于马铃薯WT植株,最高可达到364.3 mg/kg,是对照的2.4倍。亚细胞定位结果显示ScDHNS定位于过氧化物酶体。【结论】马铃薯ScDHNS基因可能参与调控糖苷生物碱合成关键基因SGT1的表达,通过β-氧化途径和甲羟戊酸通路协同影响糖苷生物碱的合成,该基因与糖苷生物碱在亚细胞水平上的区室化有重要关系,对于培育低糖苷生物碱的马铃薯品种(系)具有重要的应用价值。

关键词: 马铃薯野生种, 恰柯薯, ScDHNS, 基因克隆, 亚细胞定位

Abstract:

【Objective】 The DHNS(1,4-dihydroxy-2-naphthoyl-CoA synthase)gene in potatoes is a potentially important in the biosynthesis of glycoalkaloid metabolism in Solanaceae plants. Researching and verifying of the function of the potato DHNS gene can provide a source of genes and materials for the selection of low-glycoalkaloid potato varieties(lines). 【Method】 The full-length sequence of ScDHNS cDNA was cloned from the wild potato species Solanum chacoense using the RACE technique. This sequence was analyzed for bioinformatics and subcellular localization, and its function was verified by constructing an overexpression vector pBWA(V)HS-DHNS to transform cultivated potato. 【Result】 The read open frame of ScDHNS cDNA sequence is 1 023 bp, encodes 340 amino acids, has a molecular weight of 37.34 kD and an isoelectric point of 8.592, and contains a typical ECH domain. It belongs to the enoyl hydratase/acetyl-CoA superfamily and is present in the genomes of plants such as Brachypodium distachyon and Medicago truncatula with homologous genes, showing gene expansion and contraction events. After the overexpression of the ScDHNS gene, it was found that the expressions of the transformed plants ScDHNS and SGT1 were significantly upregulated, and the expressions were notably higher than those in wild-type(WT)potato plants. Additionally, the total glycoalkaloid content in the corresponding transformed plants was significantly higher than that in WT potato plants, reaching a maximum of 364.3 mg/kg, which is 2.4 times that of the control. Subcellular localization results indicates that ScDHNS is localized in the peroxisome. 【Conclusion】 The ScDHNS gene in potato may regulate the expression of the key gene SGT1, which is involved in glycoalkaloid synthesis. It influences glycoalkaloid synthesis through the β-oxidation and mevalonate pathways. This gene is significantly associated with the subcellular compartmentalization of glycoalkaloids and has considerable application value in the cultivation of potato varieties with reduced glycoalkaloid content.

Key words: wild potato, Solanum chacoense, ScDHNS, gene cloning, subcellular localization