Transcriptome Analysis Reveals Key Genes Involved in the Response of Pyrus betuleafolia to Drought and High-Temperature Stress

被引:3
|
作者
Ma, Panpan [1 ]
Guo, Guoling [1 ]
Xu, Xiaoqian [1 ]
Luo, Tingyue [1 ]
Sun, Yu [1 ]
Tang, Xiaomei [1 ]
Heng, Wei [1 ]
Jia, Bing [1 ]
Liu, Lun [1 ]
Kim, Nam-Soo
机构
[1] Anhui Agr Univ, Coll Hort, Hefei 230036, Peoples R China
来源
PLANTS-BASEL | 2024年 / 13卷 / 02期
关键词
Pyrus betuleafolia; transcriptome analysis; drought; high temperature; resistance; TOLERANCE; ACCUMULATION; ABA;
D O I
10.3390/plants13020309
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Drought and high-temperature stress are the main abiotic stresses that alone or simultaneously affect the yield and quality of pears worldwide. However, studies on the mechanisms of drought or high-temperature resistance in pears remain elusive. Therefore, the molecular responses of Pyrus betuleafolia, the widely used rootstock in pear production, to drought and high temperatures require further study. Here, drought- or high-temperature-resistant seedlings were selected from many Pyrus betuleafolia seedlings. The leaf samples collected before and after drought or high-temperature treatment were used to perform RNA sequencing analysis. For drought treatment, a total of 11,731 differentially expressed genes (DEGs) were identified, including 4444 drought-induced genes and 7287 drought-inhibited genes. Kyoto Encyclopedia of Genes and Genomes (KEGG) analysis revealed that these DEGs were more significantly enriched in plant hormone signal transduction, flavonoid biosynthesis, and glutathione metabolism. For high-temperature treatment, 9639 DEGs were identified, including 5493 significantly upregulated genes and 4146 significantly downregulated genes due to high-temperature stress. KEGG analysis showed that brassinosteroid biosynthesis, arginine metabolism, and proline metabolism were the most enriched pathways for high-temperature response. Meanwhile, the common genes that respond to both drought and high-temperature stress were subsequently identified, with a focus on responsive transcription factors, such as MYB, HSF, bZIP, and WRKY. These results reveal potential genes that function in drought or high-temperature resistance. This study provides a theoretical basis and gene resources for the genetic improvement and molecular breeding of pears.
引用
收藏
页数:15
相关论文
共 50 条
  • [31] Transcriptome analysis reveals key genes involved in the degradation of corn cobs by Auricularia heimuer
    Geng, Nannan
    Mi, Haoyu
    Liu, Zengcai
    Zou, Li
    INDUSTRIAL CROPS AND PRODUCTS, 2025, 224
  • [32] Transcriptome analysis reveals key differentially expressed genes involved in wheat grain development
    Yu, Yonglong
    Zhu, Dong
    Ma, Chaoying
    Cao, Hui
    Wang, Yaping
    Xu, Yanhao
    Zhang, Wenying
    Yan, Yueming
    CROP JOURNAL, 2016, 4 (02): : 92 - 106
  • [33] Transcriptome analysis reveals key differentially expressed genes involved in wheat grain development
    Yonglong Yu
    Dong Zhu
    Chaoying Ma
    Hui Cao
    Yaping Wang
    Yanhao Xu
    Wenying Zhang
    Yueming Yan
    The Crop Journal, 2016, 4 (02) : 92 - 106
  • [34] Comparative Transcriptome Analysis Reveals Key Genes and Pathways Involved in Prickle Development in Eggplant
    Zhang, Lei
    Sun, Haoyun
    Xu, Tao
    Shi, Tianye
    Li, Zongyun
    Hou, Wenqian
    GENES, 2021, 12 (03) : 1 - 16
  • [35] Comparative transcriptome analysis reveals the genes and pathways involved in terminal drought tolerance in pearl millet
    Radha Shivhare
    Mehar H. Asif
    Charu Lata
    Plant Molecular Biology, 2020, 103 : 639 - 652
  • [36] Comparative transcriptome analysis reveals the genes and pathways involved in terminal drought tolerance in pearl millet
    Shivhare, Radha
    Asif, Mehar H.
    Lata, Charu
    PLANT MOLECULAR BIOLOGY, 2020, 103 (06) : 639 - 652
  • [37] Global Transcriptome Analysis Reveals Corresponding Genes and Key Pathways Involved in Oxidative Stress in Mouse Small Intestinal Cells
    He, Y.
    Feng, C. P.
    Li, J. L.
    Du, R.
    MOLECULAR BIOLOGY, 2024, 58 (04) : 790 - 802
  • [38] Physiological and transcriptome analysis reveals the mechanism of Gymnocarpos przewalskii response to drought stress
    Du, Chao
    Ni, Xinyu
    Yan, Mengjiao
    Meng, Qinghan
    He, Junying
    BMC PLANT BIOLOGY, 2025, 25 (01):
  • [39] Effects of High-Temperature Stress on Soybean Isoflavone Concentration and Expression of Key Genes Involved in Isoflavone Synthesis
    Chennupati, Pratyusha
    Seguin, Philippe
    Chamoun, Rony
    Jabaji, Suha
    JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2012, 60 (51) : 12421 - 12427
  • [40] Ambient temperature regulates root circumnutation in rice through the ethylene pathway: transcriptome analysis reveals key genes involved
    Cai, Zeping
    Dai, Yinuo
    Jin, Xia
    Xu, Hui
    Huang, Zhen
    Xie, Zhenyu
    Yu, Xudong
    Luo, Jiajia
    FRONTIERS IN PLANT SCIENCE, 2024, 15