POSTECH-University of Zurich Global Research Laboratory, Division of Molecular Life Sciences, POSTECH, Pohang 790-784, Korea.
Plant J. 2011 Jan;65(2):181-93. doi: 10.1111/j.1365-313X.2010.04412.x. Epub 2010 Dec 1.
The exine of the pollen wall shows an intricate pattern, primarily comprising sporopollenin, a polymer of fatty acids and phenolic compounds. A series of enzymes synthesize sporopollenin precursors in tapetal cells, and the precursors are transported from the tapetum to the pollen surface. However, the mechanisms underlying the transport of sporopollenin precursors remain elusive. Here, we provide evidence that strongly suggests that the Arabidopsis ABC transporter ABCG26/WBC27 is involved in the transport of sporopollenin precursors. Two independent mutations at ABCG26 coding region caused drastic decrease in seed production. This defect was complemented by expression of ABCG26 driven by its native promoter. The severely reduced fertility of the abcg26 mutants was caused by a failure to produce mature pollen, observed initially as a defect in pollen-wall development. The reticulate pattern of the exine of wild-type microspores was absent in abcg26 microspores at the vacuolate stage, and the vast majority of the mutant pollen degenerated thereafter. ABCG26 was expressed specifically in tapetal cells at the early vacuolate stage of pollen development. It showed high co-expression with genes encoding enzymes required for sporopollenin precursor synthesis, i.e. CYP704B1, ACOS5, MS2 and CYP703A2. Similar to two other mutants with defects in pollen-wall deposition, abcg26 tapetal cells accumulated numerous vesicles and granules. Taken together, these results suggest that ABCG26 plays a crucial role in the transfer of sporopollenin lipid precursors from tapetal cells to anther locules, facilitating exine formation on the pollen surface.
花粉壁的外壁显示出复杂的图案,主要由孢粉素组成,孢粉素是脂肪酸和酚类化合物的聚合物。一系列酶在绒毡层细胞中合成孢粉素前体,前体从绒毡层运输到花粉表面。然而,孢粉素前体运输的机制仍不清楚。在这里,我们提供的证据强烈表明,拟南芥 ABC 转运蛋白 ABCG26/WBC27 参与了孢粉素前体的运输。ABCG26 编码区的两个独立突变导致种子产量急剧下降。这一缺陷可以通过其天然启动子驱动的 ABCG26 表达来弥补。abcg26 突变体严重的繁殖力下降是由于无法产生成熟花粉,最初观察到花粉壁发育缺陷。野生型小孢子的外壁网状图案在 abcg26 小孢子的液泡期缺失,此后绝大多数突变体花粉退化。ABCG26 在花粉发育早期的液泡期绒毡层细胞中特异性表达。它与编码孢粉素前体合成所需酶的基因(即 CYP704B1、ACOS5、MS2 和 CYP703A2)高度共表达。与另外两个花粉壁沉积缺陷的突变体相似,abcg26 绒毡层细胞积累了大量的囊泡和颗粒。综上所述,这些结果表明 ABCG26 在将孢粉素脂质前体从绒毡层细胞转移到花药腔室中发挥关键作用,促进花粉表面外壁的形成。