Beijing Key Laboratory of Gene Resource and Molecular Development/College of Life Sciences, Beijing Normal University, Beijing, 100875, China.
The National Engineering Laboratory of Crop Molecular Breeding/Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing, 100081, China.
J Plant Physiol. 2021 Aug;263:153417. doi: 10.1016/j.jplph.2021.153417. Epub 2021 Apr 15.
Pollen fertility is an important factor affecting the seed setting rate and seed yield of plants. The Arabidopsis thaliana enolase gene ENO2 (AtENO2) can affect the pollen morphology, germination, and pollen tube growth. AtENO2 encodes two proteins AtENO2 and AtMBP-1. To examine the effect of AtENO2 protein on pollen development, the 2nd ATG of the AtENO2 coding sequence for AtMBP-1 was mutated by site-directed mutagenesis, and transgenic plants expressing only AtENO2 but not AtMBP-1 were obtained. Phenotypic analysis indicated that AtENO2 was essential in the pollen development. The mechanisms of AtENO2 on pollen development were analyzed. AtENO2 can affect development of the pollen intine, and the mechanism may be that AtENO2 regulated the methyl esterification of pectin in pollen intine through ARF3 and AtPMEI-pi. The -734 ∼ -573 sequence of AtENO2 promoter is the main transcriptional regulatory region of AtENO2 affecting pollen development. The functional cis-acting element may be GTGANTG10(GTGA), and the trans-acting factors may be KAN, AS2 and ARF3/ETT. Moreover, the deletion of AtENO2 can cause significant difference in the expression of multiple genes related to pollen exine development. These results are useful for further studying the function of AtENO2 and exploring the mechanism of plant pollen development.
花粉活力是影响植物结实率和种子产量的重要因素。拟南芥烯醇酶基因 ENO2(AtENO2)可以影响花粉形态、萌发和花粉管生长。AtENO2 编码两种蛋白质 AtENO2 和 AtMBP-1。为了研究 AtENO2 蛋白对花粉发育的影响,通过定点突变破坏了 AtENO2 编码序列中第 2 个 ATG 用于 AtMBP-1 的翻译,获得了只表达 AtENO2 而不表达 AtMBP-1 的转基因植物。表型分析表明 AtENO2 对花粉发育是必需的。分析了 AtENO2 对花粉发育的作用机制。AtENO2 可以影响花粉内的发育,其机制可能是 AtENO2 通过 ARF3 和 AtPMEI-pi 调节花粉内的果胶甲酯化。AtENO2 启动子的-734 ∼ -573 序列是影响花粉发育的 AtENO2 的主要转录调控区。功能顺式作用元件可能是 GTGANTG10(GTGA),转录因子可能是 KAN、AS2 和 ARF3/ETT。此外,AtENO2 的缺失会导致与花粉外壁发育相关的多个基因表达显著差异。这些结果有助于进一步研究 AtENO2 的功能,并探索植物花粉发育的机制。