Goto Chieko, Tamura Kentaro, Nishimaki Satsuki, Maruyama Daisuke, Hara-Nishimura Ikuko
Graduate School of Science, Kyoto University, Kyoto, Japan.
Graduate School of Agricultural and Life Sciences, The University of Tokyo, Tokyo, Japan.
J Exp Bot. 2020 Oct 22;71(20):6273-6281. doi: 10.1093/jxb/eraa367.
A putative component protein of the nuclear lamina, KAKU4, modulates nuclear morphology in Arabidopsis thaliana seedlings, but its physiological significance is unknown. KAKU4 was highly expressed in mature pollen grains, each of which has a vegetative cell and two sperm cells. KAKU4 protein was highly abundant on the envelopes of vegetative nuclei and less abundant on the envelopes of sperm cell nuclei in pollen grains and elongating pollen tubes. Vegetative nuclei are irregularly shaped in wild-type pollen. However, KAKU4 deficiency caused them to become more spherical. After a pollen grain germinates, the vegetative nuclei and sperm cells enter and move along the pollen tube. In the wild type, the vegetative nucleus preceded the sperm cell nuclei in >90% of the pollen tubes, whereas, in kaku4 mutants, the vegetative nucleus preceded the sperm cell nuclei in only about half of the pollen tubes. kaku4 pollen was less competitive for fertilization than wild-type pollen after pollination. These results led us to hypothesize that the nuclear shape in vegetative cells of pollen grains affects the orderly migration of the vegetative nucleus and sperm cells in pollen tubes.
核纤层的一种假定组成蛋白KAKU4可调节拟南芥幼苗的核形态,但其生理意义尚不清楚。KAKU4在成熟花粉粒中高度表达,每个花粉粒都有一个营养细胞和两个精细胞。在花粉粒和伸长的花粉管中,KAKU4蛋白在营养细胞核的包膜上高度丰富,而在精细胞核的包膜上较少。野生型花粉中的营养细胞核形状不规则。然而,KAKU4缺陷导致它们变得更接近球形。花粉粒萌发后,营养细胞核和精细胞进入并沿着花粉管移动。在野生型中,超过90%的花粉管中营养细胞核先于精细胞核,而在kaku4突变体中,只有约一半的花粉管中营养细胞核先于精细胞核。授粉后,kaku4花粉在受精方面的竞争力低于野生型花粉。这些结果使我们推测,花粉粒营养细胞中的核形状会影响花粉管中营养细胞核和精细胞的有序迁移。