Department of Molecular, Cellular and Developmental Biology, University of Michigan, Ann Arbor, MI, USA.
Plant Reprod. 2023 Jun;36(2):173-191. doi: 10.1007/s00497-023-00459-6. Epub 2023 Feb 7.
The pollen grain cell wall is a highly specialized structure composed of distinct layers formed through complex developmental pathways. The production of the innermost intine layer, composed of cellulose, pectin and other polymers, is particularly poorly understood. Here we demonstrate an important and specific role for the hydroxyproline O-arabinosyltransferase (HPAT) FIN4 in tomato intine development. HPATs are plant-specific enzymes which initiate glycosylation of certain cell wall structural proteins and signaling peptides. FIN4 was expressed throughout pollen development in both the developing pollen and surrounding tapetal cells. A fin4 mutant with a partial deletion of the catalytic domain displayed significantly reduced male fertility in vivo and compromised pollen hydration and germination in vitro. However, fin4 pollen that successfully germinated formed morphologically normal pollen tubes with the same growth rate as the wild-type pollen. When we examined mature fin4 pollen, we found they were cytologically normal, and formed morphologically normal exine, but produced significantly thinner intine. During intine deposition at the late stages of pollen development we found fin4 pollen had altered polymer deposition, including reduced cellulose and increased detection of pectin, specifically homogalacturonan with both low and high degrees of methylesterification. Therefore, FIN4 plays an important role in intine formation and, in turn pollen hydration and germination and the process of intine formation involves dynamic changes in the developing pollen cell wall.
花粉粒细胞壁是一种高度特化的结构,由通过复杂发育途径形成的不同层组成。最内层的内纤维素层的形成,由纤维素、果胶和其他聚合物组成,尤其知之甚少。在这里,我们证明了番茄内纤维素发育中羟脯氨酸 O-阿拉伯糖基转移酶 (HPAT) FIN4 的一个重要和特定的作用。HPAT 是植物特异性酶,可启动某些细胞壁结构蛋白和信号肽的糖基化。FIN4 在花粉发育的整个过程中在发育中的花粉和周围的绒毡层细胞中表达。具有催化结构域部分缺失的 fin4 突变体在体内表现出显着降低的雄性育性,并损害体外花粉的水合和萌发。然而,成功萌发的 fin4 花粉形成形态正常的花粉管,其生长速度与野生型花粉相同。当我们检查成熟的 fin4 花粉时,我们发现它们在细胞学上是正常的,并形成形态正常的外壁,但产生的内纤维素明显变薄。在内纤维素在花粉发育的晚期沉积过程中,我们发现 fin4 花粉的聚合物沉积发生了改变,包括纤维素减少和果胶增加,特别是具有低和高甲氧基化程度的同半乳糖醛酸。因此,FIN4 在花粉内纤维素形成中起着重要作用,进而影响花粉水合和萌发,并且内纤维素形成的过程涉及到发育中的花粉细胞壁的动态变化。