Effect of cold stress on photosynthetic physiological characteristics and molecular mechanism analysis in cold-resistant cotton (ZM36) seedlings

被引:10
|
作者
Li, Youzhong [1 ,2 ]
Zhu, Jincheng [1 ,3 ]
Xu, Jianwei [1 ]
Zhang, Xianliang [4 ]
Xie, Zongming [2 ]
Li, Zhibo [1 ]
机构
[1] Shihezi Univ, Coll Agr, Shihezi, Xinjiang, Peoples R China
[2] Xinjiang Acad Agr & Reclamat Sci, Cotton Res Inst, Xinjiang Prod & Construct Grp, Key Lab Crop Germplasm Enhancement & Gene Resourc, Shihezi, Xinjiang, Peoples R China
[3] Xinjiang Acad Agr & Reclamat Sci, Biotechnol Res Inst, Xinjiang Prod & Construct Grp, Key Lab Crop Germplasm Enhancement & Gene Resourc, Shihezi, Xinjiang, Peoples R China
[4] Chinese Acad Agr Sci CAAS, Western Res Inst, Changji, Peoples R China
来源
基金
中国国家自然科学基金;
关键词
cotton; low-temperature stress; photosynthetic parameters; transcriptomic analysis; DEGs; VIGS; LOW-TEMPERATURE; GENE-EXPRESSION; RNA-SEQ; TOLERANCE; TRANSCRIPTION; ACCLIMATION; REGULATOR; REVEALS; ELEMENT;
D O I
10.3389/fpls.2024.1396666
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Low temperature and cold damage seriously hinder the growth, development, and morphogenesis of cotton seedlings. However, the response mechanism of cotton seedlings under cold stress still lacks research. In this study, transcriptome sequencing, gas exchange parameters, and rapid chlorophyll fluorescence parameters were analyzed in leaves of cold-tolerant upland cotton variety "ZM36" under different temperature stress [25 degrees C (T25, CK), 15 degrees C (T15), 10 degrees C (T10), and 4 degrees C (T4)]. The results showed that the net photosynthetic rate (Pn), stomatal conductance (Gs), transpiration rate (Tr), PSII potential maximum photochemical efficiency (Fv/Fm), and performance index (PIabs) of cotton leaves significantly decreased, and the intercellular CO2 concentration (Ci) and Fo/Fm significantly increased under cold stress. The transcriptome sequencing analysis showed that a total of 13,183 DEGs were involved in the response of cotton seedlings at each temperature point (T25, T15, T10, and T4), mainly involving five metabolic pathways-the phosphatidylinositol signaling system, photosynthesis, photosynthesis antenna protein, carbon fixation in photosynthetic organisms, and carotenoid synthesis. The 1,119 transcription factors were discovered among all the DEGs. These transcription factors involve 59 families, of which 15.8% of genes in the NAC family are upregulated. Through network regulatory analysis, the five candidate genes GhUVR8 (GH_A05G3668), GhPLATZ (GH_A09G2161), GhFAD4-1 (GH_A01G0758), GhNFYA1 (GH_A02G1336), and GhFAD4-2 (GH_D01G0766) were identified in response to cold stress. Furthermore, suppressing the expression level of GhPLATZ by virus-induced gene silencing led to the reduction of low temperature resistance, implying GhPLATZ as a positive regulator of low temperature tolerance. The findings of the study revealed a piece of the complex response mechanism of the cold-tolerant variety "ZM36" to different cold stresses and excavated key candidate genes for low temperature response, which provided support for accelerating the selection and breeding of cotton varieties with low temperature tolerance.
引用
收藏
页数:13
相关论文
共 24 条
  • [1] Physiological Response and Comprehensive Evaluation of Cold-Resistant Peach Varieties to Low-Temperature Stress
    Niu, Ruxuan
    Huang, Juanjuan
    Zhang, Yiwen
    Wang, Falin
    Wang, Chenbing
    AGRONOMY-BASEL, 2025, 15 (01):
  • [2] Integrating physiological and molecular insights in cotton under cold stress conditions
    Abro, Aamir Ali
    Qasim, Muhammad
    Abbas, Mubashir
    Muhammad, Noor
    Ali, Ijaz
    Khalid, Shiguftah
    Ahmed, Junaid
    Waqas, Muhammad
    Ercisli, Sezai
    Iqbal, Rashid
    Liu, Fang
    GENETIC RESOURCES AND CROP EVOLUTION, 2025, 72 (03) : 2561 - 2591
  • [3] Physiological and Molecular Mechanism Involved in Cold Stress Tolerance in Plants
    Ritonga, Faujiah Nurhasanah
    Chen, Su
    PLANTS-BASEL, 2020, 9 (05):
  • [4] Effect of cold stress on water relations, photosynthetic pigments and antioxidant enzymes in olive seedlings
    Tabari, M.
    Tabari, M.
    Sadati, E.
    Javanmard, Z.
    Guidi, L.
    Vicente, O.
    EUROPEAN JOURNAL OF HORTICULTURAL SCIENCE, 2022, 87 (02)
  • [5] Physiological and Molecular Mechanism of Nitric Oxide (NO) Involved in Bermudagrass Response to Cold Stress
    Fan, Jibiao
    Chen, Ke
    Amombo, Erick
    Hu, Zhengrong
    Chen, Liang
    Fu, Jinmin
    PLOS ONE, 2015, 10 (07):
  • [7] Changes in the physiological characteristics of Panax ginseng embryogenic calli and molecular mechanism of ginsenoside biosynthesis under cold stress
    Tao Zhang
    Yan Gao
    Mei Han
    Linmin Yang
    Planta, 2021, 253
  • [8] Changes in the physiological characteristics of Panax ginseng embryogenic calli and molecular mechanism of ginsenoside biosynthesis under cold stress
    Zhang, Tao
    Gao, Yan
    Han, Mei
    Yang, Linmin
    PLANTA, 2021, 253 (04)
  • [9] The regulatory effect of melatonin on physiological, biochemical and molecular parameters in cold-stressed wheat seedlings
    Turk, Hulya
    Erdal, Serkan
    Genisel, Mucip
    Atici, Okkes
    Demir, Yavuz
    Yanmis, Derya
    PLANT GROWTH REGULATION, 2014, 74 (02) : 139 - 152
  • [10] The regulatory effect of melatonin on physiological, biochemical and molecular parameters in cold-stressed wheat seedlings
    Hulya Turk
    Serkan Erdal
    Mucip Genisel
    Okkes Atici
    Yavuz Demir
    Derya Yanmis
    Plant Growth Regulation, 2014, 74 : 139 - 152