玉米愈伤组织形成的转录组分析
作者:
作者单位:

1.甘肃农业大学农学院 / 省部共建干旱生境作物学国家重点实验室 / 甘肃省作物遗传改良与种质创新重点实验室,兰州 730070;2.中国农业科学院作物科学研究所,北京 100081

作者简介:

研究方向为作物遗传育种,E-mail : jiasinian1@163.com

通讯作者:

刘允军,研究方向为玉米基因工程,E-mail: liuyunjun@caas.cn

中图分类号:

基金项目:

中国农业科学院农业科技创新工程


Transcriptome Analysis of Maize Embryonic Calli
Author:
Affiliation:

1.College of Agronomy, Gansu Agricultural University/State Key Laboratory of Aridland Crop Science/Gansu Key Laboratory of Crop Improvement and Germplasm Enhancement, Lanzhou 730070;2.Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing 100081

Fund Project:

Foundation project: The Agricultural Science and Technology Innovation Program of Chinese Academy of Agricultural Sciences

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    摘要:

    玉米遗传转化受体主要是未成熟幼胚,经过组织培养形成胚性愈伤组织,进而分化成苗。目前,对玉米胚性愈伤组织形成的分子机理的了解还不深入。为了挖掘调控玉米胚性愈伤组织形成的基因,本研究选取玉米自交系CAL28×郑58的F3群体中不同表型的愈伤组织进行RNA-seq分析。与愈伤发生差的II型愈伤相比,愈伤发生好的I型愈伤中共检测到4419个差异表达基因,其中1571个基因上调,2848个基因下调。GO富集分析结果表明,差异表达基因主要富集在细胞过程、催化活性、细胞组分等通路中。KEGG富集分析表明,差异表达基因主要富集在苯丙烷生物合成途径和植物激素信号转导途径。在生长素早期响应基因中,8个AUX/IAA家族基因,如IAA23IAA33IAA41,和4个GH3家族基因在I型愈伤中上调表达。差异显著基因中共有隶属56个转录因子家族的2968个转录因子,其中与愈伤形成相关的AP2、WOX和LBD转录因子家族基因中的ZmEREB53ZmEREB206ZmEREB184ZmLBD10ZmLBD24ZmLBD31ZmLBD32、ZmWOX5b、ZmWOX9b等在Ⅰ型愈伤中的表达量显著上调,对这些靶标基因进行遗传操作有可能促进玉米愈伤组织形成。本研究发现的靶标基因具有较大的应用潜力,研究结果也为解析玉米愈伤组织形成的分子机理提供了理论参考。

    Abstract:

    The immature embryos of maize are able to form embryogenic calli through tissue culture, and are usually used as explants in genetic transformation. The molecular mechanism in the process of maize embryonic callus formation remains fully illustrated. To reveal the candidate genes that are involved in the callus formation of maize, two types of calli (type I, well growth; type II, poor growth) from F3 embryos of maize inbred line CAL28 × Zheng58 were harvested for the RNA-seq analysis. 4419 differentially expressed genes (DEGs) were revealed between two types, including 1571 up regulated genes and 2848 down regulated genes. GO enrichment analysis showed that DEGs were mainly enriched in the pathways such as cellular process, catalytic activity, and cell component. KEGG enrichment analysis showed that the enrichment of DEGs were mainly involved in phenylpropanoid biosynthesis and the plant hormone signal transduction pathway. Among the early auxin responses genes, eight AUX/IAA genes including IAA23IAA33IAA41, and four GH3 genes were upregulated in type I callus. A total of 2968 transcription factors belonging to 56 transcription factor families in DEGs were significantly enriched. The expression levels of ZmEREB53ZmEREB206ZmEREB184ZmLBD10ZmLBD24ZmLBD31ZmLBD32ZmWOX5b and ZmWOX9b, which are from AP2, WOX and LBD transcription factor families, were significantly up-regulated in type I callus. Genetic manipulation of these target genes may possibly promote the formation of maize callus. Collectively, this study identified candidate DEGs with great application potential, which provide theoretical reference for deciphering the molecular mechanism of maize callus formation.

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引用本文

贾思年,魏倩涵,苗蓉,等.玉米愈伤组织形成的转录组分析[J].植物遗传资源学报,2023,24(4):1151-1160.

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  • 收稿日期:2022-12-17
  • 最后修改日期:2023-02-22
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  • 在线发布日期: 2023-06-14
  • 出版日期: 2023-06-14
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