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2025年8月5日 星期二
农业生物技术学报  2023, Vol. 31 Issue (7): 1405-1418    DOI: 10.3969/j.issn.1674-7968.2023.07.007
  研究论文与报告 本期目录 | 过刊浏览 | 高级检索 |
转录组分析揭示PpCYP703A2Pp4CLPpABCG26参与调控桃花粉育性
叶茂1,2, 刘春生1,2, 刘亚婷1,2, 张曼1,2, 苏凯1,2, 张晨光1,2, 李晓颖1,2, 王海静1,2, 肖啸1,2, 张立彬1,2, 杨清3,4, 武军凯1,2*
1 河北科技师范学院 园艺科技学院,秦皇岛 066000;
2 河北省园艺种质资源发掘与创新利用重点实验室,秦皇岛 066000;
3 北京林业大学 林学院/森林培育与保护教育部重点实验室,北京 100083;
4 北京林业大学 树木发育与基因编辑研究院,北京 100083
Transcriptomic Analysis Reveals the Involvement of PpCYP703A2, Pp4CL, and PpABCG26 in Regulating Peach (Prunus persica) Pollen Fertility
YE Mao1,2, LIU Chun-Sheng1,2, LIU Ya-Ting1,2, ZHANG Man1,2, SU Kai1,2, ZHANG Chen-Guang1,2, LI Xiao-Ying1,2, WANG Hai-Jing1,2, XIAO Xiao1,2, ZHANG Li-Bin1,2, YANG Qing3,4, WU Jun-Kai1,2*
1 Horticultural Science and Technology College, Hebei Normal University of Science and Technology, Qinhuangdao 066000, China;
2 Hebei Key Laboratory of Horticultural Germplasm Excavation and Innovative Utilization, Qinhuangdao 066000, China;
3 The Key Laboratory for Silviculture and Conservation of Ministry of Education, College of Forestry, Beijing Forestry University, Beijing 100083, China;
4 Institute of Tree Development and Gene Editing, Beijing Forestry University, Beijing 100083, China
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摘要 桃(Prunus persica)多数品种可以自花结实,花粉正常发育对产量至关重要,花粉发育异常影响自花授粉受精和坐果。因此,研究桃的花粉育性具有重要的产业和理论意义。本研究以不育品种'久硕' ('JiuShuo', JS)与可育品种'久脆' ('JiuCui', JC)及其杂交后代为实验材料对花粉育性基因进行研究。花药 解剖观察结果表明,JS 花粉不育发生在单核小孢子期,绒毡层细胞质不能正常浓缩、退化。RNA 测序 (RNA sequencing, RNA-seq)分析结果表明,与绒毡层细胞程序性死亡和花粉外壁形成相关的途径-糖代谢、苯丙氨酸代谢、脂肪酸的生物合成和氧化还原反应在四分体和单核小孢子时期被显著富集。qRT- PCR检测可育品种 JC、不育品种 JS以及 JS×JC 后代中相关基因表达模式发现,细胞色素 P450703A2 (cytochrome P450 703A2, PpCYP703A2) (GenBank No. XM_007220109)、4-香豆酸 -CoA连接酶 -1 (4- coumarate-CoA ligase-like 1, Pp4CL)(GenBank No. XM_007225695)和 ABC 转运蛋白 G 家族成员 26 (ABC transporter G family member 26, PpABCG26)(GenBank No. XM_020565361)参与了花粉育性的调控。本研究为桃的花粉育性研究挖掘到新的基因,也为进一步揭示桃花粉育性的分子机制提供了新的理论依据。
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关键词 花粉不育绒毡层细胞RNA测序(RNA-seq)差异表达基因    
Abstract:Many varieties of peach (Prunus persica) are self-fertile, where normal pollen development is essential for yield, and abnormal pollen development affects self-pollination fertilisation and fruit set. Hence, the study of peach pollen fertility is of great industrial and theoretical importance. The sterile variety 'JiuShuo' (JS) and the fertile variety 'JiuCui' (JC) and their hybrid progeny as test material were used to study pollen fertility genes. Cytological observations indicate that pollen sterility occurred at the mononuclear microspore stage, where the cytoplasm of the tapetum could not be concentrated and degenerated. RNA-seq analysis showed that the pathways associated with the formation of programmed cell death and the outer wall of the pollen layer - sugar metabolism, phenylalanine metabolism, fatty acid biosynthesis and oxidation-reduction were significantly enriched during the tetrad and mononuclear microspore periods. The expression patterns of cytochrome P450 703A2 (PpCYP703A2) (GenBank No. XM_007220109), 4-coumarate-CoA ligase-like 1 (Pp4CL) (GenBank No. XM_007225695), and ABC transporter G family member 26 (PpABCG26) (GenBank No. XM_020565361) were examined in the fertile variety JC, the sterile variety JS, and the JS×JC progeny , using qRT-PCR to detect the expression of related genes, suggest that these three genes were involved in the regulation of pollen fertility. A new genetic resource is provided for further study of peach pollen fertility and a new theoretical basis is developed for further understanding peach pollen sterility.
Key wordsPeach    Pollen sterility    Tapetum cell    RNA sequencing (RNA-seq)    Differentially expressed gene
收稿日期: 2022-09-14     
基金资助:河北省自然科学基金(C2021407044); 河北省高等学校科学技术研究项目(QN2022011)
通讯作者: *mans5@163.com   
引用本文:   
叶茂, 刘春生, 刘亚婷, 张曼, 苏凯, 张晨光, 李晓颖, 王海静, 肖啸, 张立彬, 杨清, 武军凯. 转录组分析揭示PpCYP703A2Pp4CLPpABCG26参与调控桃花粉育性[J]. 农业生物技术学报, 2023, 31(7): 1405-1418.
YE Mao,LIU Chun-Sheng,LIU Ya-Ting,ZHANG Man,SU Kai,ZHANG Chen-Guang,LI Xiao-Ying,WANG Hai-Jing,XIAO Xiao,ZHANG Li-Bin,YANG Qing,WU Jun-Kai, . Transcriptomic Analysis Reveals the Involvement of PpCYP703A2, Pp4CL, and PpABCG26 in Regulating Peach (Prunus persica) Pollen Fertility. 农业生物技术学报, 2023, 31(7): 1405-1418.
链接本文:  
http://journal05.magtech.org.cn/Jwk_ny/CN/10.3969/j.issn.1674-7968.2023.07.007     或     http://journal05.magtech.org.cn/Jwk_ny/CN/Y2023/V31/I7/1405
 
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