Ethylene-mediated metabolic priming increases photosynthesis and metabolism to enhance plant growth and stress tolerance

被引:10
|
作者
Brenya, Eric [1 ]
Dutta, Esha [2 ]
Herron, Brittani [1 ]
Walden, Lauren H. [1 ]
Roberts, Daniel M. [1 ,2 ]
Binder, Brad M. [1 ,2 ]
机构
[1] Univ Tennessee, Dept Biochem & Cellular & Mol Biol, Knoxville, TN 37996 USA
[2] Univ Tennessee, Genome Sci & Technol Program, Knoxville, TN 37996 USA
来源
PNAS NEXUS | 2023年 / 2卷 / 07期
基金
美国国家科学基金会;
关键词
ethylene; photosynthesis; metabolism; growth; stress tolerance; RESPONSE PATHWAY; ACCELERATING RECOVERY; SOIL COMPACTION; GENE-EXPRESSION; ARABIDOPSIS; LIGHT; SUCROSE; PROTEIN; BIOSYNTHESIS; SEEDLINGS;
D O I
10.1093/pnasnexus/pgad216
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Enhancing crop yields is a major challenge because of an increasing human population, climate change, and reduction in arable land. Here, we demonstrate that long-lasting growth enhancement and increased stress tolerance occur by pretreatment of dark grown Arabidopsis seedlings with ethylene before transitioning into light. Plants treated this way had longer primary roots, more and longer lateral roots, and larger aerial tissue and were more tolerant to high temperature, salt, and recovery from hypoxia stress. We attributed the increase in plant growth and stress tolerance to ethylene-induced photosynthetic-derived sugars because ethylene pretreatment caused a 23% increase in carbon assimilation and increased the levels of glucose (266%), sucrose/trehalose (446%), and starch (87%). Metabolomic and transcriptomic analyses several days posttreatment showed a significant increase in metabolic processes and gene transcripts implicated in cell division, photosynthesis, and carbohydrate metabolism. Because of this large effect on metabolism, we term this "ethylene-mediated metabolic priming." Reducing photosynthesis with inhibitors or mutants prevented the growth enhancement, but this was partially rescued by exogenous sucrose, implicating sugars in this growth phenomenon. Additionally, ethylene pretreatment increased the levels of CINV1 and CINV2 encoding invertases that hydrolyze sucrose, and cinv1; cinv2 mutants did not respond to ethylene pretreatment with increased growth indicating increased sucrose breakdown is critical for this trait. A model is proposed where ethylene-mediated metabolic priming causes long-term increases in photosynthesis and carbohydrate utilization to increase growth. These responses may be part of the natural development of seedlings as they navigate through the soil to emerge into light.
引用
收藏
页数:15
相关论文
共 50 条
  • [21] Application of Biostimulants in Tomato Plants (Solanum lycopersicum) to Enhance Plant Growth and Salt Stress Tolerance
    Gedeon, Stella
    Ioannou, Andreas
    Balestrini, Raffaella
    Fotopoulos, Vasileios
    Antoniou, Chrystalla
    PLANTS-BASEL, 2022, 11 (22):
  • [22] A Recent Update on the Impact of Nano-Selenium on Plant Growth, Metabolism, and Stress Tolerance
    Samynathan, Ramkumar
    Venkidasamy, Baskar
    Ramya, Karthikeyan
    Muthuramalingam, Pandiyan
    Shin, Hyunsuk
    Kumari, Pandy Saravana
    Thangavel, Sivakumar
    Sivanesan, Iyyakkannu
    PLANTS-BASEL, 2023, 12 (04):
  • [23] Maize Physiological Responses to Heat Stress and Hormonal Plant Growth Regulators Related to Ethylene Metabolism
    Cicchino, Mariano A.
    Rattalino Edreira, Juan I.
    Otegui, Maria E.
    CROP SCIENCE, 2013, 53 (05) : 2135 - 2146
  • [24] ACC deaminase producing plant growth promoting rhizobacteria enhance salinity stress tolerance in Pisum sativum
    Anmol Gupta
    Ambreen Bano
    Smita Rai
    Manoj Kumar
    Jasarat Ali
    Swati Sharma
    Neelam Pathak
    3 Biotech, 2021, 11
  • [25] Moringa oleifera leaf Extract as a Potential Plant Growth Stimulant to Enhance Salt Stress Tolerance in Wheat
    Ahmed, Talaat
    Elshiekh, Mustafa
    Khalid, Muhammad Fasih
    IN VITRO CELLULAR & DEVELOPMENTAL BIOLOGY-PLANT, 2022, 58 (04) : 682 - 682
  • [26] ACC deaminase producing plant growth promoting rhizobacteria enhance salinity stress tolerance in Pisum sativum
    Gupta, Anmol
    Bano, Ambreen
    Rai, Smita
    Kumar, Manoj
    Ali, Jasarat
    Sharma, Swati
    Pathak, Neelam
    3 BIOTECH, 2021, 11 (12)
  • [27] Mycorrhizae Enhance Soybean Plant Growth and Aluminum Stress Tolerance by Shaping the Microbiome Assembly in an Acidic Soil
    Wen, Zhongling
    Yang, Minkai
    Han, Hongwei
    Fazal, Aliya
    Liao, Yonghui
    Ren, Ran
    Yin, Tongming
    Qi, Jinliang
    Sun, Shucun
    Lu, Guihua
    Hu, Shuijin
    Yang, Yonghua
    MICROBIOLOGY SPECTRUM, 2023, 11 (02):
  • [28] Trichoderma-mediated rice straw compost promotes plant growth and imparts stress tolerance
    Sarangi, Sarmistha
    Swain, Harekrushna
    Adak, Totan
    Bhattacharyya, Pratap
    Mukherjee, Arup K.
    Kumar, Gaurav
    Mehetre, Sayaji T.
    ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 2021, 28 (32) : 44014 - 44027
  • [29] Plant growth promoting microorganisms mediated abiotic stress tolerance in crop plants: a critical appraisal
    Gul, Nadia
    Wani, Ishfaq Ahmad
    Mir, Rakeeb Ahmad
    Nowshehri, Javaid Ashraf
    Aslam, Shabana
    Gupta, Renu
    Verma, Susheel
    Aslam, Saima
    PLANT GROWTH REGULATION, 2023, 100 (01) : 7 - 24
  • [30] Trichoderma-mediated rice straw compost promotes plant growth and imparts stress tolerance
    Sarmistha Sarangi
    Harekrushna Swain
    Totan Adak
    Pratap Bhattacharyya
    Arup K. Mukherjee
    Gaurav Kumar
    Sayaji T. Mehetre
    Environmental Science and Pollution Research, 2021, 28 : 44014 - 44027