Institut Jean-Pierre Bourgin, Institut National de la Recherche Agronomique (INRA), AgroParisTech, CNRS, Université Paris-Saclay, 78000 Versailles, France.
Mathématiques et Informatique Appliquées du Génome à l'Environnement, INRA, Université Paris-Saclay, 78350 Jouy-en-Josas, France.
Science. 2017 Apr 14;356(6334):186-189. doi: 10.1126/science.aal3016.
Controlling cell division plane orientation is essential for morphogenesis in multicellular organisms. In plant cells, the future cortical division plane is marked before mitotic entry by the preprophase band (PPB). Here, we characterized an (TON1 Recruiting Motif) mutant that impairs PPB formation but does not affect interphase microtubules. Unexpectedly, PPB disruption neither abolished the capacity of root cells to define a cortical division zone nor induced aberrant cell division patterns but rather caused a loss of precision in cell division orientation. Our results advocate for a reassessment of PPB function and division plane determination in plants and show that a main output of this microtubule array is to limit spindle rotations in order to increase the robustness of cell division.
控制细胞分裂平面的方向对于多细胞生物的形态发生至关重要。在植物细胞中,未来的皮层分裂平面在有丝分裂进入之前就被前期带(PPB)标记。在这里,我们描述了一个 (TON1 募集基序)突变体,它破坏了 PPB 的形成,但不影响间期微管。出乎意料的是,PPB 的破坏既没有消除根细胞定义皮层分裂区的能力,也没有诱导异常的细胞分裂模式,而是导致细胞分裂方向的精度丧失。我们的结果主张重新评估植物中 PPB 的功能和分裂平面的确定,并表明这个微管阵列的一个主要输出是限制纺锤体的旋转,以提高细胞分裂的稳健性。