5.9
CiteScore
5.9
Impact Factor
Volume 35 Issue 3
Mar.  2008
Turn off MathJax
Article Contents

Characterization and mapping of a new male sterility mutant of anther advanced dehiscence (t) in rice

doi: 10.1016/S1673-8527(08)60024-7
More Information
  • Corresponding author: E-mail address: zy03392002@yahoo.com.cn (Yi Zhang)
  • Received Date: 2007-06-23
  • Accepted Date: 2007-08-30
  • Rev Recd Date: 2007-08-30
  • Available Online: 2008-03-18
  • Publish Date: 2008-03-20
  • Anther dehiscence is very important for pollen maturation and release. The mutants of anther dehiscence in rice (Oryza sativa L.) are few, and related research remains poor. A male sterility mutant of anther dehiscence in advance, add(t), has been found in Minghui 63 and its sterility is not sensitive to thermo-photo. To learn the character of sterilization and the function of the add(t) gene, the morphological and cytological studies on the anther and pollen, the ability of the pistil being fertilized, inheritance of the mutant, and mapping of add(t) gene have been conducted. The anther size is normal but the color is white in the mutant against the natural yellow in the wild-type. The pollen is malformed, unstained, and small in the KI-I2 solution. The anther dehiscence is in advance at the bicellular pollen stage. A crossing test indicated that the grain setting ratio of the add(t) is significantly lower than that of the CMS line 2085A. The ability of the pistil being fertilized is most probably decreased by the add(t) gene. The male sterility is controlled by a single recessive gene of add(t). This gene is mapped between the markers of R02004 (InDel) and RM300 (SSR) on chromosome 2, and the genetic distance from the add(t) gene to these markers is 0.78 cM and 4.66 cM, respectively.
  • loading
  • [1]
    Dawson, J., Sozen, E., Vizir, I. et al. New Phytoltgist, 144 (1999),pp. 213-222
    [2]
    Ishiguro, S., Kawai-Oda, A., Ueda, J. et al. Plant Cell, 13 (2001),pp. 2191-2209
    [3]
    Jakobsen, M.K., Poulsen, L.R., Schulz, A. et al. Genes Dev., 19 (2005),pp. 2757-2769
    [4]
    Jiang, H., Yang, Z.N., Gao, J.F. J. Shanghai Normal University (natural science), 35 (2006),pp. 71-75
    [5]
    Jung, K.H., Han, M.J., Lee, D.Y. et al. Plant Cell, 18 (2006),pp. 3015-3032
    [6]
    Lee, D.S., Chen, L.J., Suh, H.S. Theor. Appl. Genet., 111 (2005),pp. 1271-1277
    [7]
    Li, G.Q.
    [8]
    Li, N., Zhang, D.S., Liu, H.S. et al. The rice tapetum degeneration retardation gene is required for tapetum degradation and anther development Plant Cell, 18 (2006),pp. 2999-3014
    [9]
    Li, R.B., Pandey, M.P., Sharma, P. Current Sci., 88 (2005),pp. 1809-1815
    [10]
    Liu, H.S., Chu, H.W., Li, H. et al. Chinese Sci. Bull., 50 (2005),pp. 122-125
    [11]
    Liu, X., Wang, S.W., Li, C.Y. et al. J. Tianjin Agri. College, 12 (2005),pp. 6-9
    [12]
    Lu, Q., Li, X.H., Guo, D. et al. Mol. Gen. Genomics, 273 (2005),pp. 507-511
    [13]
    Ma, H. Molecular genetic analyses of microsporogenesis and microgametogenesis in flowering plants Annu. Rev. Plant Biol., 56 (2005),pp. 393-434
    [14]
    McConn, M., Browse, J. Plant Cell, 8 (1996),pp. 403-416
    [15]
    Mei, M.H., Dai, X.K., Xu, C.G. et al. Crop Sci, 39 (1999),pp. 1711-1715
    [16]
    Moritoh, S., Miki, D., Akiyama, M. et al. Plant Cell Physiol., 46 (2005),pp. 699-715
    [17]
    Nonomura, K.I., Miyoshi, K., Eiguchi, M. et al. Plant Cell, 15 (2003),pp. 1728-1739
    [18]
    Sanders, P.M., Bui, A.Q., Weterings, K. et al. Sex. Plant Reprod., 11 (1999),pp. 297-322
    [19]
    Sanders, P.M., Lee, P.Y., Biesgen, C. et al. Plant Cell, 12 (2000),pp. 1041-1061
    [20]
    Shen, Y.J., Jiang, H., Jin, J.P. et al. Development of genome-wide DNA polymorphism database for map-based cloning of rice genes Plant Physiol., 135 (2004),pp. 1198-1205
    [21]
    Steiner-Lange, S., Unte, U.S, Eckstein, L., Yang, C. et al. Plant J., 34 (2003),pp. 519-528
    [22]
    Stintzi, A., Browse, J. Proc. Natl. Acad. Sci. USA, 97 (2000),pp. 10625-10630
    [23]
    Wang, X.F., Yang, J.B., Xiang, T.H. A new method for PCR reaction from alkali-treated rice leaf tissues Chinese J. Rice Sci., 16 (2002),pp. 67-70
    [24]
    Wang, Y., Wang, Y.F., Zhang, D.B. J. Plant Physiol. Mol. Biol., 32 (2006),pp. 527-534
    [25]
    Zhang, L.G., Tao, J.Y., Wang, S.X. et al. The rice OsRad21-4, an orthologue of yeast Rec8 protein, is required for efficient meiosis Plant Mol. Biol., 60 (2006),pp. 533-554
    [26]
    Zhao, G.R., Xiao, X.G., Liu, P.Y. (2000). Proceeding of genetically engineering plant male sterility. In: International Symposium on Biotechnology Application in Horticultural Crops.
    [27]
    Zhu, Q.H., Ramm, K., Ramm, K. et al. Plant Physiol, 135 (2004),pp. 1514-1525
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Article Metrics

    Article views (99) PDF downloads (0) Cited by ()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return