Advance Search
YAO Cheng-Yi, ZHAO Jie. Effects of Calcium and Boron on Pollen Germination and Pollen Tube Growth of Torenia fournieri[J]. Plant Science Journal, 2004, 22(1): 1-7.
Citation: YAO Cheng-Yi, ZHAO Jie. Effects of Calcium and Boron on Pollen Germination and Pollen Tube Growth of Torenia fournieri[J]. Plant Science Journal, 2004, 22(1): 1-7.

Effects of Calcium and Boron on Pollen Germination and Pollen Tube Growth of Torenia fournieri

More Information
  • Received Date: May 21, 2003
  • Revised Date: June 25, 2003
  • Published Date: February 25, 2004
  • The effects of calcium (Ca2+) and boron (H3BO3) on pollen germination and pollen tube growth of Torenia fournieri Lind.were investigated in this paper.The main results were following:(1) Ca2+ affected the speed of pollen germination and growth dramatically,but had no influence on the frequency of pollen germination.When the concentration of Ca2+ was very low or high,the pollen tubes grew poorly.When the concentration of Ca2+ was higher than proper concentration,the growth of pollen tubes was inhibited,and the pollen tubes became snaky in their early stages of growth.(2) Boron affected the frequency of pollen germination and the morphology of the pollen tube greatly,but different concentration of boron had no obvious effect on the growth speed of pollen tubes.When the concentration of boron was adjusted to higher than the proper concentration,the growth of pollen tubes became snaky for a long time.(3) Using cooled-CCD,serial photography further proves that it is the concentration of Ca2+ not that of H3BO3 that plays an important role for the growth speed of pollen tubes.
  • Related Articles

    [1]Zhang Jie-Yu, Zhang Zi-Qi, Zhou Wei, Sun Wen-Guang, Li Zhi-Min. Karyotype of five Astragalus species from the alpine subnival belt in the Hengduan Mountains[J]. Plant Science Journal, 2023, 41(1): 63-69. DOI: 10.11913/PSJ.2095-0837.22097
    [2]Yang Li-Ping, Fu Yong-Yao, Fan Jun-Hao, Huang Yu. Morphological characteristics and karyotype analysis of three local varieties of Lilium brownii var. viridulum[J]. Plant Science Journal, 2019, 37(5): 559-568. DOI: 10.11913/PSJ.2095-0837.2019.50559
    [3]GAO He-Qiong, ZHUANG Nan-Sheng, WANG Ying, QIU Hai-Yan. Karyotype Analysis of Two Varieties in Hevea brasiliensis[J]. Plant Science Journal, 2009, 27(5): 537-540.
    [4]ZHANG Lan, ZHANG Bin-Bin, WANG Hong-Guo. The Karyotype Analysis of Fraxinus velutina[J]. Plant Science Journal, 2007, 25(5): 513-514.
    [5]ZHANG Bin-Bin, ZHANG Lan. The Karyotype Analysis of Albizzia julibrissin[J]. Plant Science Journal, 2007, 25(2): 203-204.
    [6]DUAN Yong-Hong, LI Su-Qing, NIU Xi-Wu, SUN Yi. Karyotype Analysis of Four Species in Caragana Fabr.[J]. Plant Science Journal, 2006, 24(5): 413-417.
    [7]Chen Chengbin, Li Xiulan, Sun Chengren, Song Wenqin, Chen Ruiyang. STUDIES ON THE KARYOTYPE OF 9 SPECIES OF 5 GENERA OF LAURACEAE IN CHINA[J]. Plant Science Journal, 1998, 16(3): 219-222.
    [8]Cheng Lin, Zhang Yiaojia. CHROMOSOME NUMBER AND KARYOTYPE OF EREMURUS CHINENSIS FEDTSCH.[J]. Plant Science Journal, 1993, 11(3): 281-282.
    [9]Li Sifeng, Yu Zhaoying, Zhou Junyan. KARYOTYPE ANALYSIS OF PAEONIA DELAVAYI VAR. LUTEA[J]. Plant Science Journal, 1989, 7(2): 107-111.
    [10]Chen Ruiyang, Song Wenqin, An Zhuping. THE KARYOTYPE ANALYSIS AND ORIGIN OF CHROMOSOME 4A AND GENOMES B AND G OF WHEAT GENERA[J]. Plant Science Journal, 1985, 3(4): 303-312.

Catalog

    Article views (5595) PDF downloads (3060) Cited by()

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return