Division of Plant Biosciences, Kyungpook National University, Daegu 702-701, South Korea.
Plant J. 2010 Dec;64(5):839-50. doi: 10.1111/j.1365-313X.2010.04374.x. Epub 2010 Oct 26.
Cellular patterning and differentiation in plants depend on the balance of asymmetric and symmetric divisions. Patterning of the male gametophyte (pollen grains) in flowering plants requires asymmetric division of the microspore followed by a symmetric division of the germ cell to produce three highly differentiated cells: a single vegetative cell and two sperm cells. In Arabidopsis sidecar pollen (scp) mutants a proportion of microspores first divide symmetrically, and then go on to produce 'four-celled' pollen with an extra vegetative cell; however, details of the timing and origin of phenotypic defects in scp and the identity of the SCP gene have remained obscure. Comparative analysis of the original hypomorphic scp-1 allele and a T-DNA-induced null allele, scp-2, revealed that in the absence of SCP, microspores undergo normal nuclear positioning, but show delayed entry into mitosis, increased cell expansion and alterations in the orientation of nuclear division. We identified the SCP gene to encode a male gametophyte-specific LATERAL ORGAN BOUNDARIES DOMAIN/ASYMMETRIC LEAVES 2-like (LBD/ASL) protein that is expressed in microspore nuclei in a tightly regulated phase-specific manner. Therefore, our study demonstrates that the correct patterning of male gametophyte depends on the activity of a nuclear LBD/ASL family protein that is essential for the correct timing and orientation of asymmetric microspore division.
植物中的细胞模式形成和分化依赖于不对称分裂和对称分裂之间的平衡。开花植物的雄性配子体(花粉粒)的模式形成需要小孢子的不对称分裂,然后是生殖细胞的对称分裂,产生三个高度分化的细胞:一个单一的营养细胞和两个精子细胞。在拟南芥侧孢花粉(scp)突变体中,一部分小孢子首先进行对称分裂,然后继续产生具有额外营养细胞的“四细胞”花粉;然而,scp 中的表型缺陷的时间和起源以及 SCP 基因的身份的细节仍然不清楚。对原始的功能减弱的 scp-1 等位基因和 T-DNA 诱导的 null 等位基因 scp-2 的比较分析表明,在没有 SCP 的情况下,小孢子经历正常的核定位,但进入有丝分裂的时间延迟,细胞扩张增加,核分裂的方向发生改变。我们确定 SCP 基因编码一个雄性配子体特异性的侧生器官边界域/不对称叶 2 样(LBD/ASL)蛋白,该蛋白以紧密调控的、特定相位的方式在小孢子核中表达。因此,我们的研究表明,雄性配子体的正确模式形成依赖于核 LBD/ASL 家族蛋白的活性,该蛋白对于不对称小孢子分裂的正确时间和方向是必需的。