Advance Search
Li Xuebao. EFFECTS OF EMS ON THE GERMINATING SEEDS OF RICE[J]. Plant Science Journal, 1991, 9(3): 263-267.
Citation: Li Xuebao. EFFECTS OF EMS ON THE GERMINATING SEEDS OF RICE[J]. Plant Science Journal, 1991, 9(3): 263-267.

EFFECTS OF EMS ON THE GERMINATING SEEDS OF RICE

More Information
  • Received Date: November 08, 1988
  • Revised Date: December 31, 1899
  • Published Date: September 22, 1991
  • Physiological process of germinating rice seeds is markedly influenced by the treatment of various concentrations of EMS ( ethyl methane sulphonate) after presoaking the seeds in water for 16—18 hours. The lower concentration of EMS stimulates the respiration and the activities of cytochrome oxidase and amylase, which associats with the higher rate of seed germination and seedling growth On the contrary, the inhibited effect is found by using the higher concentration of EMS (0.3—1.2%). The results show that the effects of EMS on the respiration and the activities of some enzymes of germinating seeds may be the important physiological cause of the chan es in germination, growth and root vigor of rice.
  • Related Articles

    [1]Wang Yuqing, Zhou Shouhang, Ma Fulong, Wang Haizhen, Han Lu. Response of osmoregulatory substances and antioxidant enzyme activities in heteromorphic leaves of Populus euphratica Oliv. to groundwater depth[J]. Plant Science Journal, 2024, 42(2): 221-231. DOI: 10.11913/PSJ.2095-0837.23204
    [2]CHEN Tao, WANG Gui-Mei, SHEN Wei-Wei, LI Xiao-Zhen, QI Jian-Min, XU Jian-Tang, TAO Ai-Fen, LIU Xiao-Qian. Effect of Salt Stress on the Growth and Antioxidant Enzyme Activity of Kenaf Seedlings[J]. Plant Science Journal, 2011, 1(4): 493-501.
    [3]QIU Zong-Bo, ZHU Feng-Rong, LI Jin-Ting, GUO Jun-Li. Effects of CO_2 Laser Pretreatment on Activities of Antioxidative Enzymes in Root of Wheat Seedlings under Water Stress[J]. Plant Science Journal, 2010, 28(1): 63-66.
    [4]HU Xiao-Hui, GUO Shi-Rong, LI Jing, WANG Su-Ping, JIA Yong-Xia. Effects of Hypoxia Stress on Anaerobic Respiratory Enzyme and Antioxidant Enzyme Activities in Roots of Cucumber Seedlings[J]. Plant Science Journal, 2005, 23(4): 337-341.
    [5]QIU Chang-En, SHAO Jin-Zhen, CHEN Shao-Ying, YAO Fa-Xin. The Effect of 6-Benzyl Aminopurine on the Activities of Four Extracellular Enzymes in Plurotus ostreatus and Lentinula edodes Mycelium[J]. Plant Science Journal, 2002, 20(3): 233-235.
    [6]SUN Gu-Chou, LIN Zhi-Fang, LIN Gui-Zhu. The Carboxylation Rate of Rubisco and Activity of Carbonic Anhydrase in Plants from a Subtropical Forest Grown at Different Light Intensity[J]. Plant Science Journal, 2001, 19(4): 304-310.
    [7]Jiang Yueming, Giora Zauberman, Yoram Fuchs, Fu Jiarui. ANALYSIS OF LYCHEE POLYPHENOL OXIDASE ACTIVITY UNDER DIFFERENT CONDITIONS[J]. Plant Science Journal, 1998, 16(3): 207-212.
    [8]Zhao Jie, Cheng Jingchen. EFFECTS OF LIGHT FACTORS ON SOLUBLE PROTEINS AND ENZYMES ACTIVITIES DURING GALLUS GROWTH OF ASPARGUS OFFICINALIS L.[J]. Plant Science Journal, 1994, 12(3): 251-257.
    [9]Sun Guorong, Zhu Peng, Liu Wenfang, Xiao Yihua. RELATIONSHIP BETWEEN NITRATE REDUCTASE ACTIVITY AND YIELD CHARACTER OF HYBRID RICE DURING GROWTH AND DEVELOPMENT[J]. Plant Science Journal, 1992, 10(2): 185-190.
    [10]Bai Shunong, Liu Wenfang, Xiao Yihua. STUDIES ON THE CHARACTERISTICS OF RESPIRATORY METABOLISM IN SEEDLING ROOT OF HYBRID RICE SHANYOU 36[J]. Plant Science Journal, 1990, 8(2): 165-170.

Catalog

    Article views (2501) PDF downloads (1917) Cited by()

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return