Advance Search
Li Yeguang, Hu Hongjun. STUDIES ON THE RHYTHM OF FLAGELLAR STRETCH AND WITHDRAWAL OF HYMENOMONAS CARTERAE[J]. Plant Science Journal, 1994, 12(4): 355-359.
Citation: Li Yeguang, Hu Hongjun. STUDIES ON THE RHYTHM OF FLAGELLAR STRETCH AND WITHDRAWAL OF HYMENOMONAS CARTERAE[J]. Plant Science Journal, 1994, 12(4): 355-359.

STUDIES ON THE RHYTHM OF FLAGELLAR STRETCH AND WITHDRAWAL OF HYMENOMONAS CARTERAE

More Information
  • Received Date: February 16, 1992
  • Revised Date: April 21, 1994
  • Published Date: December 23, 1994
  • Hymenomonas carterae is an unicellular marine alga,which is spheroid and is covered with one layer of coccoliths;two flagella are slightly different in length and attach to the front end of the cell.The length of the flagella is about 1.5 times as the cell diameter.When the cells are cultured in MES Ⅲ medium,under temperature 25±1℃,light intersity 2000 lx,light dark period 14:10(L:D)hours,it was found that the cells swim actively with their flagella in nomal length in the light and sink to the bottom with their flagella withdrawn into cells in the dark period.Further experiments reveal:1.Light stimulates the flagella to stretch and dark stimulates the flagella to withdraw.2.Flagellar stretch and withdrawal correspond strictly with the light-dark cycle.Flagella stretch out 20 minutes after the beginning of light period and withdraw after the beginning of dark period.3.The phenomenon of cyclically flagellar stretch and withdrawal disappears under continuous light,Obviously,the cyclically flagellar stretch and withdrawal of Hymenomonas cartearis is a kind of exogenous rhythm which is regulated by the light-dark cycle,the rhythm of algal flagellar stretch and withdrawal is reported for the first time.
  • Related Articles

    [1]Wei Li, Liu Jian-Li. Overview of research on protein subcellular localization in plants[J]. Plant Science Journal, 2021, 39(1): 93-101. DOI: 10.11913/PSJ.2095-0837.2021.10093
    [2]YANG Li-Xiang, WANG Zheng-Xun, KE De-Sen, WU Jin-Xiong. Subcellular Localization of Arabidopsis Hemoglobin 3[J]. Plant Science Journal, 2010, 28(4): 516-520.
    [3]QIN Ling, LIU Wen-Zhe. Accumulation and Histological Localizations of Furanocoumarins in Psoralea corylifolia[J]. Plant Science Journal, 2007, 25(4): 360-365.
    [4]GUO Xiao-Fang, YAN Hai-Yan, HE Ji, LI Li-Jia, TAO Yong, CAO Jin-Jing. Localization Analysis of ABI3 Homologous Gene in Peanut[J]. Plant Science Journal, 2006, 24(1): 22-26.
    [5]YANG Wan-Nian, LIANG Shu-Ping, LÜYing-Tang. Immunohistochemical Localization of Calmodulin Kinase in Maize[J]. Plant Science Journal, 2004, 22(1): 33-38.
    [6]HAN Yong-Hua, JIN Wei-Wei, WANG Xiao-Lan, SONG Yun-Chun. Chromosomal Localization of Programmed Cell Death Suppressor OsDad-1 Gene in Coix lacryma-jobi L.[J]. Plant Science Journal, 2003, 21(6): 471-474.
    [7]XIE Guo-Sheng, ZHANG Duan-Pin, XIE Yue-Feng. Chromosomal Localization of Photoperiod Sensitive Genic Male Sterile Genes Using Rice Primary Trisomics[J]. Plant Science Journal, 2001, 19(3): 255-258.
    [8]LIU Yong, LI Xue-Bao, CHEN Guang-Rong. Localization of CryIA(c) Transgene on Chromosomes in Transgenic Oilseed Progeny by in situ Hybridization[J]. Plant Science Journal, 2001, 19(1): 67-72.
    [9]Yan Ling, Ding Yi, Chen Xinping, Song Yunchun, Fang Chengxiang. CHROMOSOMAL LOCALIZATION OF 5S rRNA GENES IN WILD RELATIVES OF BARLEY FROM QING-ZANG PLATEAU BY IN SITU HYBRIDIZATION[J]. Plant Science Journal, 2000, 18(6): 443-448.
    [10]Zhong Yang, Chen Zuoliang, Ke Shanqiang, Allen Moore. A FUZZY MATHEMATICAL MODEL FOR CULTIVABLE REGIONS FOR OLIVE[J]. Plant Science Journal, 1988, 6(3): 275-284.

Catalog

    Article views (1778) PDF downloads (1297) Cited by()

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return