Chromosome segregation in plant meiosis

被引:49
|
作者
Zamariola, Linda [1 ]
Tiang, Choon Lin [2 ]
De Storme, Nico [1 ]
Pawlowski, Wojtek [2 ]
Geelen, Danny [1 ]
机构
[1] Univ Ghent, Fac Biosci Engn, Dept Plant Prod, B-9000 Ghent, Belgium
[2] Cornell Univ, Dept Genet & Plant Breeding, Ithaca, NY USA
来源
FRONTIERS IN PLANT SCIENCE | 2014年 / 5卷
基金
美国国家科学基金会;
关键词
chromosome segregation; cohesion; kinetochore; meiosis; plant; recombination; spindle; synapsis; SISTER-CHROMATID COHESION; SPINDLE ASSEMBLY CHECKPOINT; SYNAPTONEMAL COMPLEX-FORMATION; MEIOTIC PROPHASE-I; ARABIDOPSIS-THALIANA; CENTROMERIC COHESION; GAMMA-TUBULIN; MICROTUBULE ORGANIZATION; MONOPOLAR ORIENTATION; INNER CENTROMERE;
D O I
10.3389/fpls.2014.00279
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Faithful chromosome segregation in meiosis is essential for ploidy stability over sexual life cycles. In plants, defective chromosome segregation caused by gene mutations or other factors leads to the formation of unbalanced or unreduced gametes creating aneuploid or polyploid progeny, respectively. Accurate segregation requires the coordinated execution of conserved processes occurring throughout the two meiotic cell divisions. Synapsis and recombination ensure the establishment of chiasmata that hold homologous chromosomes together allowing their correct segregation in the first meiotic division, which is also tightly regulated by cell-cycle dependent release of cohesin and monopolar attachment of sister kinetochores to microtubules. In meiosis II, bi-orientation of sister kinetochores and proper spindle orientation correctly segregate chromosomes in four haploid cells. Checkpoint mechanisms acting at kinetochores control the accuracy of kinetochore-microtubule attachment, thus ensuring the completion of segregation. Here we review the current knowledge on the processes taking place during chromosome segregation in plant meiosis, focusing on the characterization of the molecular factors involved.
引用
收藏
页数:19
相关论文
共 50 条
  • [1] The spindle checkpoint and chromosome segregation in meiosis
    Gorbsky, Gary J.
    FEBS JOURNAL, 2015, 282 (13) : 2458 - 2474
  • [2] Exploring Plant Meiosis: Insights from the Kinetochore Perspective
    Zhou, Kang-Di
    Zhang, Cai-Xia
    Niu, Fu-Rong
    Bai, Hao-Chen
    Wu, Dan-Dan
    Deng, Jia-Cheng
    Qian, Hong-Yuan
    Jiang, Yun-Lei
    Ma, Wei
    CURRENT ISSUES IN MOLECULAR BIOLOGY, 2023, 45 (10) : 7974 - 7995
  • [3] Inverted meiosis: an alternative way of chromosome segregation for reproduction
    Li, Wenzhu
    He, Xiangwei
    ACTA BIOCHIMICA ET BIOPHYSICA SINICA, 2020, 52 (07) : 702 - 707
  • [4] The Consequences of Chromosome Segregation Errors in Mitosis and Meiosis
    Potapova, Tamara
    Gorbsky, Gary J.
    BIOLOGY-BASEL, 2017, 6 (01):
  • [5] Meiosis I Kinase Regulators: Conserved Orchestrators of Reductional Chromosome Segregation
    Galander, Stefan
    Marston, Adele L.
    BIOESSAYS, 2020, 42 (10)
  • [6] Female Meiosis: Synapsis, Recombination, and Segregation in Drosophila melanogaster
    Hughes, Stacie E.
    Miller, Danny E.
    Miller, Angela L.
    Hawley, R. Scott
    GENETICS, 2018, 208 (03) : 875 - 908
  • [7] Homologous chromosome pairing: The linchpin of accurate segregation in meiosis
    Tian, Yuqi
    Liu, Libo
    Gao, Jinmin
    Wang, Ruoxi
    JOURNAL OF CELLULAR PHYSIOLOGY, 2024, 239 (01) : 3 - 19
  • [8] Reductional Meiosis I Chromosome Segregation Is Established by Coordination of Key Meiotic Kinases
    Galander, Stefan
    Barton, Rachael E.
    Borek, Weronika E.
    Spanos, Christos
    Kelly, David A.
    Robertson, Daniel
    Rappsilber, Jun
    Marston, Adele L.
    DEVELOPMENTAL CELL, 2019, 49 (04) : 526 - +
  • [9] Special issue on "recent advances in meiosis from DNA replication to chromosome segregation"
    Cole, Francesca
    Borde, Valerie
    CHROMOSOMA, 2019, 128 (03) : 177 - 180
  • [10] The multiple roles of Bub1 in chromosome segregation during mitosis and meiosis
    Marchetti, Francesco
    Venkatachalam, Sundaresan
    CELL CYCLE, 2010, 9 (01) : 58 - 63