Institute of Life Sciences, College of Life and Environmental Science, Wenzhou University, Wenzhou, 325000, China.
Laboratory of Cell & Molecular Biology, Institute of Vegetable Science, Zhejiang University, Hangzhou, 310058, China.
BMC Plant Biol. 2021 Jun 3;21(1):254. doi: 10.1186/s12870-021-03038-x.
As an important subfamily of arabinogalactan proteins (AGPs), fasciclin-like AGPs (FLAs) contribute to various aspects of growth, development and adaptation, yet their function remains largely elusive. Despite the diversity of FLAs, only two members, Arabidopsis FLA3 and rice MTR1, are reported to be involved in sexual reproduction. In this study, another Arabidopsis FLA-encoding gene, FLA14, was identified, and its role was investigated.
Arabidopsis FLA14 was found to be a pollen grain-specific gene. Expression results from fusion with green fluorescent protein showed that FLA14 was localized along the cell membrane and in Hechtian strands. A loss-of-function mutant of FLA14 showed no discernible defects during male gametogenesis, but precocious pollen germination occurred inside the mature anthers under high moisture conditions. Overexpression of FLA14 caused 39.2% abnormal pollen grains with a shrunken and withered appearance, leading to largely reduced fertility with short mature siliques and lower seed set. Cytological and ultramicroscopic observation showed that ectopic expression of FLA14 caused disruption at the uninucleate stage, resulting in either collapsed pollen with absent intine or pollen of normal appearance but with a thickened intine.
Taken together, our data suggest a role for FLA14 in pollen development and preventing premature pollen germination inside the anthers under high relative humidity in Arabidopsis.
作为阿拉伯半乳聚糖蛋白(AGPs)的一个重要亚家族,类伸展蛋白(FLAs)在生长、发育和适应的各个方面都有贡献,但它们的功能仍然很大程度上难以捉摸。尽管 FLAs 种类繁多,但仅有两个成员,拟南芥 FLA3 和水稻 MTR1,被报道参与有性生殖。在这项研究中,鉴定了另一个拟南芥 FLA 编码基因 FLA14,并对其功能进行了研究。
发现拟南芥 FLA14 是花粉粒特异性基因。与绿色荧光蛋白融合的表达结果表明,FLA14 定位于细胞膜和 Hechtian 链上。fla14 功能丧失突变体在雄性配子发生过程中没有明显缺陷,但在高湿度条件下成熟花药内提前发生花粉萌发。FLA14 的过表达导致 39.2%的花粉粒异常,表现为皱缩干瘪,导致结实率大大降低,成熟的蒴果变短,种子数减少。细胞学和超微观察表明,FLA14 的异位表达导致单核期破裂,花粉粒要么是无内稃的塌陷花粉,要么是外观正常但内稃增厚的花粉。
综上所述,我们的数据表明 FLA14 在拟南芥花粉发育中起作用,并防止高相对湿度下花粉在花药内过早萌发。