Twell David
Department of Biology, University of Leicester, University Road, Leicester LE1 7RH, UK.
Sex Plant Reprod. 2011 Jun;24(2):149-60. doi: 10.1007/s00497-010-0157-5. Epub 2010 Nov 20.
During angiosperm male gametophyte development, the male germline is segregated by an asymmetric cell division of the haploid microspore. This review encompasses recent advances in understanding the genetic and molecular mechanisms involved in generating the male germline from this pluripotent germline initial and in specifying the production of the twin sperm cells required for double fertilization. Genetic studies and access to the transcriptome of isolated gametes have enabled remarkable progress in understanding some of the key regulators that control and integrate germ cell cycle progression with germline specification, and an emerging regulatory model is presented. Rapid advances have also been made in understanding epigenetic regulation and small RNA pathways in the male gametophyte and germline that impact on genome integrity and gamete development, traits that are shared with animal germlines. The review concludes with a perspective of the outstanding issues and directions of future research that will further our understanding of germline specification and the gametophytic control of pollen development.
在被子植物雄配子体发育过程中,雄性生殖系通过单倍体小孢子的不对称细胞分裂而分离。本综述涵盖了在理解从这个多能生殖系起始细胞产生雄性生殖系以及确定双受精所需的双精子细胞产生过程中所涉及的遗传和分子机制方面的最新进展。遗传学研究以及对分离配子转录组的研究,使得我们在理解一些控制和整合生殖细胞周期进程与生殖系特化的关键调节因子方面取得了显著进展,并提出了一个新出现的调节模型。在理解雄性配子体和生殖系中影响基因组完整性和配子发育的表观遗传调控和小RNA途径方面也取得了快速进展,这些特征与动物生殖系相同。综述最后展望了一些尚未解决的问题以及未来研究的方向,这些将进一步增进我们对生殖系特化和花粉发育的配子体控制的理解。