Integrative analysis of the metabolome and transcriptome reveal the phosphate deficiency response pathways of alfalfa

被引:24
|
作者
Li, Zhenyi [1 ]
Hu, Jingyun [1 ]
Wu, Yao [1 ]
Wang, Jixiang [1 ]
Song, Hui [1 ]
Chai, Maofeng [1 ]
Cong, Lili [1 ]
Miao, Fuhong [1 ]
Ma, Lichao [1 ]
Tang, Wei [1 ]
Yang, Chao [1 ]
Tao, Qibo [1 ]
Zhong, Shangzhi [1 ]
Zhao, Yiran [1 ]
Liu, Hongqing [1 ]
Yang, Guofeng [1 ]
Wang, Zengyu [1 ]
Sun, Juan [1 ]
机构
[1] Qingdao Agr Univ, Coll Grassland Sci, Grassland Agrihusb Res Ctr, Qingdao, Peoples R China
关键词
Phosphate starvation response; Phospholipid; Phosphate transporter; SPX protein; Flavonoid; qPCR; PHOSPHORUS DEFICIENCY; MEDICAGO-TRUNCATULA; PHASEOLUS-VULGARIS; GENE-EXPRESSION; ARABIDOPSIS; STARVATION; PLANTS; PYROPHOSPHATASES; AVAILABILITY; ACCUMULATION;
D O I
10.1016/j.plaphy.2021.11.039
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Understanding the mechanisms underlying the responses to inorganic phosphate (Pi) deficiency in alfalfa will help enhance Pi acquisition efficiency and the sustainable use of phosphorous resources. Integrated global metabolomic and transcriptomic analyses of mid-vegetative alfalfa seedlings under 12-day Pi deficiency were conducted. Limited seedling growth were found, including 13.24%, 16.85% and 33.36% decreases in height, root length and photosynthesis, and a 24.10% increase in root-to-shoot ratio on day 12. A total of 322 and 448 differentially abundant metabolites and 1199 and 1061 differentially expressed genes were identified in roots and shoots. Increased (>3.68-fold) inorganic phosphate transporter 1;4 and SPX proteins levels in the roots (>2.15 fold) and shoots (>2.50-fold) were related to Pi absorption and translocation. The levels of phospholipids and Pi binding carbohydrates and nucleosides were decreased, while those of phosphatases and pyrophosphatases in whole seedlings were induced under reduced Pi. In addition, nitrogen assimilation was affected by inhibiting high-affinity nitrate transporters (NRT2.1 and NRT3.1), and nitrate reductase. Increased delphinidin-3-glucoside might contribute to the gray-green leaves induced by Pi limitation. Stress-induced MYB, WRKY and ERF transcription factors were identified. The responses of alfalfa to Pi deficiency were summarized as local systemic signaling pathways, including root growth, stress-related responses consisting of enzymatic and nonenzymatic systems, and hormone signaling and systemic signaling pathways including Pi recycling and Pi sensing in the whole plant, as well as Pi recovery, and nitrate and metal absorption in the roots. This study provides important information on the molecular mechanism of the response to Pi deficiency in alfalfa.
引用
收藏
页码:49 / 63
页数:15
相关论文
共 50 条
  • [1] Combined Transcriptome and Metabolome Analysis of Alfalfa Response to Thrips Infection
    Zhang, Zhiqiang
    Chen, Qi
    Tan, Yao
    Shuang, Shuang
    Dai, Rui
    Jiang, Xiaohong
    Temuer, Buhe
    GENES, 2021, 12 (12)
  • [2] Integrated analyses reveal the response of peanut to phosphorus deficiency on phenotype, transcriptome and metabolome
    Wu, Qi
    Yang, Liyu
    Liang, Haiyan
    Yin, Liang
    Chen, Dianxu
    Shen, Pu
    BMC PLANT BIOLOGY, 2022, 22 (01)
  • [3] Integrated analyses reveal the response of peanut to phosphorus deficiency on phenotype, transcriptome and metabolome
    Qi Wu
    Liyu Yang
    Haiyan Liang
    Liang Yin
    Dianxu Chen
    Pu Shen
    BMC Plant Biology, 22
  • [4] Integrative Analysis of Transcriptome and Metabolome Provides Insights into the Saline-Alkali Stress in Alfalfa
    Zi, Y.
    Zhu, L.
    Ma, Y.
    Hong, L.
    Wang, S.
    Zhao, G.
    RUSSIAN JOURNAL OF PLANT PHYSIOLOGY, 2024, 71 (06)
  • [5] Integrative analysis of transcriptome and metabolome reveal molecular mechanism of tolerance to salt stress in rice
    Deng, Rui
    Li, Yao
    Feng, Nai-Jie
    Zheng, Dian-Feng
    Khan, Aaqil
    Du, You-Wei
    Zhang, Jian-Qin
    Sun, Zhi-Yuan
    Wu, Jia-Shuang
    Xue, Ying-Bin
    Huang, Zi-Hui
    BMC PLANT BIOLOGY, 2025, 25 (01):
  • [6] Integrative Analysis Of The Metabolome, Proteome, And Transcriptome In Systemic Inflammatory Response Syndrome
    Langley, R. J.
    Tsalik, E. L.
    Mohney, R. P.
    Harrod, K. S.
    Cairns, C. B.
    Rivers, E.
    Woods, C. W.
    Kingsmore, S. F.
    AMERICAN JOURNAL OF RESPIRATORY AND CRITICAL CARE MEDICINE, 2014, 189
  • [7] Integrative Transcriptome and Metabolome Analysis to Reveal Red Leaf Coloration in Shiya Tea (Adinandra nitida)
    Huang, Runsheng
    Su, Yiting
    Shen, Haoye
    Liu, Wanchuan
    Huang, Jianxiong
    Kuang, Zhilin
    Li, Yongquan
    Hui, Jun'ai
    Zhao, Danyang
    Zhang, Bipei
    FRONTIERS IN BIOSCIENCE-LANDMARK, 2023, 28 (10):
  • [8] Integrative analyses of the transcriptome and metabolome reveal comprehensive mechanisms of monolignol biosynthesis in response to bioclimatic factors in Magnolia officinalis
    Zhong, Mingxin
    Wang, Qian
    Tian, Hui
    Zhang, Bainian
    Xu, Zhuo
    Zhang, Yuanyuan
    Tan, Chengjia
    Hu, Xin
    Wang, Tao
    Feng, Daren
    Xi, Zhenpeng
    BMC PLANT BIOLOGY, 2024, 24 (01):
  • [9] Integrative analysis of the transcriptome and metabolome reveals the response mechanism to tomato spotted wilt virus
    Junheng Lv
    Minghua Deng
    Zuosen Li
    Haishan Zhu
    Ziran Wang
    Yanling Yue
    Zhengan Yang
    Junqiang Xu
    Shurui Jiang
    Wei Zhao
    Jing Li
    Kai Zhao
    HorticulturalPlantJournal, 2023, 9 (05) : 958 - 970
  • [10] Integrative analysis of the transcriptome and metabolome reveals the response mechanism to tomato spotted wilt virus
    Lv, Junheng
    Deng, Minghua
    Li, Zuosen
    Zhu, Haishan
    Wang, Ziran
    Yue, Yanling
    Yang, Zhengan
    Xu, Junqiang
    Jiang, Shurui
    Zhao, Wei
    Li, Jing
    Zhao, Kai
    HORTICULTURAL PLANT JOURNAL, 2023, 9 (05) : 958 - 970