Morpho-physiological and transcriptome profiling reveal novel zinc deficiency-responsive genes in rice

被引:30
|
作者
Bandyopadhyay, Tirthankar [1 ]
Mehra, Poonam [1 ]
Hairat, Suboot [1 ]
Giri, Jitender [1 ]
机构
[1] Natl Inst Plant Genome Res, Aruna Asaf Ali Marg, New Delhi, India
关键词
HMA; Reactive oxygen species; Root; Transcriptome; Zinc deficiency; ORYZA-SATIVA; TOLERANCE; GENOME; RESISTANCE; DATABASE; STRESS; BARLEY; LEAVES; PLANTS; WHEAT;
D O I
10.1007/s10142-017-0556-x
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Intensive farming has depleted the soil zinc (Zn) availability resulting in decreased crop productivity. Here, we attempt to understand the Zn deficiency response in rice through temporal transcriptome analysis. For this, rice seedlings were raised under Zn-deficient conditions up to 4 weeks followed by Zn re-supply for 3 days. Zn-deficient plants developed characteristic deficiency symptoms such as leaf bronzing, decrease in biomass, total chlorophyll, PSII efficiency, decreased carbonic anhydrase activity and increased ROS production. Interestingly, severe alterations in root system architecture were also observed. Comprehensive transcriptome analyses of rice seedlings were carried out after 2 (DEF2W) and 4 weeks (DEF4W) of Zn deficiency with respect to transcriptome profiles of corresponding Zn sufficient conditions (SUF2W, SUF4W). Additionally, to detect the potential Zn-responsive genes, transcriptome profile of Zn-recovered seedlings was compared with DEF4W. All differentially expressed Zn-responsive genes were categorized into early and late Zn deficiency response, and a set of 77 genes, induced and repressed on Zn deficiency and re-supply, respectively, was identified. These genes could be used as low Zn-responsive marker genes. Further, genes involved in membrane transport, phytosiderophore activity and organic acid biosynthesis showed high differential expression. Additionally, the present study unravelled several genes putatively associated with alterations in root system architecture under Zn deficiency and provides novel insights into the interpretation of morpho-physiological, biochemical and molecular regulation of zinc deficiency responses in rice.
引用
收藏
页码:565 / 581
页数:17
相关论文
共 44 条
  • [21] Biochemical, physiological and molecular responses of rice to terminal drought stress: transcriptome profiling of leaf and root reveals the key stress-responsive genes
    Tyagi, Aruna
    Kumar, Suresh
    Mohapatra, Trilochan
    JOURNAL OF PLANT BIOCHEMISTRY AND BIOTECHNOLOGY, 2023,
  • [22] Patterns of stress response and tolerance based on transcriptome profiling of rice crown tissue under zinc deficiency
    Nanda, Amrit K.
    Pujol, Vincent
    Wissuwa, Matthias
    JOURNAL OF EXPERIMENTAL BOTANY, 2017, 68 (07) : 1715 - 1729
  • [23] The Impact of Heat Stress on Morpho-Physiological Response and Expression of Specific Genes in the Heat Stress-Responsive Transcriptional Regulatory Network in Brassica oleracea
    Moradpour, Mahdi
    Abdullah, Siti Nor Akmar
    Namasivayam, Parameswari
    PLANTS-BASEL, 2021, 10 (06):
  • [24] WGCNA Analysis of Salt-Responsive Core Transcriptome Identifies Novel Hub Genes in Rice
    Zhu, Mingdong
    Xie, Hongjun
    Wei, Xiangjin
    Dossa, Komivi
    Yu, Yaying
    Hui, Suozhen
    Tang, Guohua
    Zeng, Xiaoshan
    Yu, Yinghong
    Hu, Peisong
    Wang, Jianlong
    GENES, 2019, 10 (09)
  • [25] Transcriptome Profiling and Physiological Studies Reveal a Major Role for Aromatic Amino Acids in Mercury Stress Tolerance in Rice Seedlings
    Chen, Yun-An
    Chi, Wen-Chang
    Ngoc Nam Trinh
    Huang, Li-Yao
    Chen, Ying-Chih
    Cheng, Kai-Teng
    Huang, Tsai-Lien
    Lin, Chung-Yi
    Huang, Hao-Jen
    PLOS ONE, 2014, 9 (05):
  • [26] Comparative transcriptome combined with morpho-physiological analyses revealed candidate genes potentially for differential cold tolerance in two contrasting apricot (Prunus armeniacaL.) cultivars
    Yu, Dan
    Liu, Xiaojuan
    Cui, Yifan
    Bi, Quanxin
    Zhao, Yang
    Li, Dongxing
    Yu, Haiyan
    Wang, Libing
    TREES-STRUCTURE AND FUNCTION, 2020, 34 (05): : 1205 - 1217
  • [27] A novel NAC transcription factor, IDEF2, that recognizes the iron deficiency-responsive element 2 regulates the genes involved in iron homeostasis in plants
    Ogo, Yuko
    Kobayashi, Takanori
    Itai, Reiko Nakanishi
    Nakanishi, Hiromi
    Kakei, Yusuke
    Takahashi, Michiko
    Toki, Seiichi
    Mori, Satoshi
    Nishizawa, Naoko K.
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2008, 283 (19) : 13407 - 13417
  • [28] Comparative transcriptome combined with morpho-physiological analyses revealed candidate genes potentially for differential cold tolerance in two contrasting apricot (Prunus armeniaca L.) cultivars
    Dan Yu
    Xiaojuan Liu
    Yifan Cui
    Quanxin Bi
    Yang Zhao
    Dongxing Li
    Haiyan Yu
    Libing Wang
    Trees, 2020, 34 : 1205 - 1217
  • [29] Enhancing stress resilience in rice (Oryza sativa L.) through profiling early-stage morpho-physiological and molecular responses to multiple abiotic stress tolerance
    Kumar, Kathiresan Pravin
    Pushpam, Ramamoorthy
    Manonmani, Swaminathan
    Raveendran, Muthurajan
    Santhiya, Subramanian
    Senthil, Alagarsamy
    FRONTIERS IN PLANT SCIENCE, 2024, 15
  • [30] Comparative morpho-physiological traits, antioxidant defense and nutritional profiling under Cd stress of japonica-indica elite rice (Oryza sativa L.) cultivars
    Hayat A.
    Anas M.
    Shaheen Z.
    Falak A.
    Quraishi U.M.
    Journal of Crop Science and Biotechnology, 2024, 27 (2) : 175 - 186