State Key Laboratory of Crop Biology, Shandong Key Laboratory of Crop Biology, College of Life Sciences, Shandong Agricultural University, Taian, 271018, Shandong, China.
Plant Mol Biol. 2011 Oct;77(3):251-60. doi: 10.1007/s11103-011-9806-9. Epub 2011 Jul 16.
Arabidopsis thaliana phosphatidylinositol 3-kinase (AtVPS34) functions in the development and germination of pollen by catalyzing the biosynthesis of phosphatidylinositol 3-phosphate (PI3P). In yeast, Vps15p is required for the membrane targeting and activity of Vps34. The expression of Arabidopsis thaliana VPS15 (AtVPS15), an ortholog of yeast Vps15, is mainly detected in pollen grains and pollen tubes. To determine its role in pollen development and pollen tube growth, we attempted to isolate the T-DNA insertion mutants of AtVPS15; however, homozygous lines of atvps15 were not obtained from the progeny of atvps15/+ heterozygotes. Genetic analysis revealed that the abnormal segregation is due to the failure of transmission of the atvps15 allele through pollen. Most pollen grains from the atvps15/+ genotype are viable, with normal exine structure and nuclei, but some mature pollen grains are characterized with unusual large vacuoles that are not observed in pollen grains from the wild AtVPS15 genotype. The germination ratio of pollen from the atvps15/+ genotype is about half when compared to that from the wild AtVPS15 genotype. When supplied with PI3P, in vitro pollen germination of the atvps15/+ genotype is greatly improved. Presumably, AtVPS15 functions in pollen development and germination by regulating PI3P biosynthesis in Arabidopsis.
拟南芥磷脂酰肌醇 3-激酶(AtVPS34)通过催化磷脂酰肌醇 3-磷酸(PI3P)的生物合成,在花粉的发育和萌发中发挥作用。在酵母中,Vps15p 是 Vps34 膜靶向和活性所必需的。拟南芥 VPS15(AtVPS15)的表达,酵母 Vps15 的同源物,主要在花粉粒和花粉管中检测到。为了确定其在花粉发育和花粉管生长中的作用,我们试图分离 AtVPS15 的 T-DNA 插入突变体;然而,从 atvps15/+杂合子的后代中并没有获得 atvps15 纯合系。遗传分析表明,这种异常分离是由于 atvps15 等位基因通过花粉传递的失败。来自 atvps15/+基因型的大多数花粉粒是有活力的,具有正常的外壁结构和核,但一些成熟的花粉粒具有不寻常的大液泡,而在野生型 AtVPS15 基因型的花粉粒中没有观察到。与野生型 AtVPS15 基因型相比,来自 atvps15/+基因型的花粉的萌发率约为一半。当提供 PI3P 时,atvps15/+基因型的体外花粉萌发得到了极大的改善。推测 AtVPS15 通过调节拟南芥中 PI3P 的生物合成在花粉发育和萌发中发挥作用。