Plant acoustics: in the search of a sound mechanism for sound signaling in plants

被引:77
|
作者
Mishra, Ratnesh Chandra [1 ]
Ghosh, Ritesh [1 ]
Bae, Hanhong [1 ]
机构
[1] Yeungnam Univ, Dept Biotechnol, Gyongsan 38541, Gyeongbook, South Korea
关键词
Acoustics; perception; plants; response; signaling; stimulus; H+-ATPASE ACTIVITY; OXYGEN SPECIES PRODUCTION; ARABIDOPSIS-THALIANA; SEED-GERMINATION; WAVE STIMULATION; GREEN SYMPHONIES; PROTEIN-KINASE; AUDIBLE SOUND; GROWTH; CALLUS;
D O I
10.1093/jxb/erw235
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Sound vibrations form a potential environmental stimulus, which trigger molecular changes typical of a signaling cascade within a cell, and thus have ecological significance.Being sessile, plants continuously deal with their dynamic and complex surroundings, identifying important cues and reacting with appropriate responses. Consequently, the sensitivity of plants has evolved to perceive a myriad of external stimuli, which ultimately ensures their successful survival. Research over past centuries has established that plants respond to environmental factors such as light, temperature, moisture, and mechanical perturbations (e.g. wind, rain, touch, etc.) by suitably modulating their growth and development. However, sound vibrations (SVs) as a stimulus have only started receiving attention relatively recently. SVs have been shown to increase the yields of several crops and strengthen plant immunity against pathogens. These vibrations can also prime the plants so as to make them more tolerant to impending drought. Plants can recognize the chewing sounds of insect larvae and the buzz of a pollinating bee, and respond accordingly. It is thus plausible that SVs may serve as a long-range stimulus that evokes ecologically relevant signaling mechanisms in plants. Studies have suggested that SVs increase the transcription of certain genes, soluble protein content, and support enhanced growth and development in plants. At the cellular level, SVs can change the secondary structure of plasma membrane proteins, affect microfilament rearrangements, produce Ca2+ signatures, cause increases in protein kinases, protective enzymes, peroxidases, antioxidant enzymes, amylase, H+-ATPase / K+ channel activities, and enhance levels of polyamines, soluble sugars and auxin. In this paper, we propose a signaling model to account for the molecular episodes that SVs induce within the cell, and in so doing we uncover a number of interesting questions that need to be addressed by future research in plant acoustics.
引用
收藏
页码:4483 / 4494
页数:12
相关论文
共 50 条
  • [21] ECHO-ACOUSTICS, OR EXPLORATION BY SOUND
    BERKHOUT, AJ
    IMPACT OF SCIENCE ON SOCIETY, 1985, 35 (2-3) : 159 - &
  • [22] Acoustics of the banjo: measurements and sound synthesis
    Woodhouse, Jim
    Politzer, David
    Mansour, Hossein
    ACTA ACUSTICA, 2021, 5 (05):
  • [23] Relationship between sound perception and acoustics of seat-belt warning sound
    Qi, Tong
    Yang, Jinrong
    HUMAN FACTORS AND ERGONOMICS IN MANUFACTURING & SERVICE INDUSTRIES, 2021, 31 (06) : 693 - 705
  • [24] In search of sound science
    不详
    NATURE, 2002, 416 (6878) : 247 - 247
  • [25] In search of sound science
    Nature, 2002, 416 : 247 - 247
  • [26] Is There a Role for Sound in Plants?
    Del Stabile, Filippo
    Marsili, Vittoria
    Forti, Luca
    Arru, Laura
    PLANTS-BASEL, 2022, 11 (18):
  • [27] Sound perception in plants
    Khait, I.
    Obolski, U.
    Yovel, Y.
    Hadany, L.
    SEMINARS IN CELL & DEVELOPMENTAL BIOLOGY, 2019, 92 : 134 - 138
  • [28] VIRTUAL ACOUSTICS PUTS SOUND IN ITS PLACE
    GRAFF, G
    SCIENCE, 1992, 256 (5057) : 616 - 617
  • [30] The sound of silence: Valuing acoustics in heritage conservation
    O'Connor, Penny
    GEOGRAPHICAL RESEARCH, 2008, 46 (03) : 361 - 373