State Key Laboratory of Crop Genetics and Germplasm Enhancement, Centre of Pear Engineering Technology Research, Nanjing Agricultural University, Nanjing 210095, China.
State Key Laboratory of Crop Genetics and Germplasm Enhancement, Centre of Pear Engineering Technology Research, Nanjing Agricultural University, Nanjing 210095, China.
Genomics. 2020 May;112(3):2467-2477. doi: 10.1016/j.ygeno.2020.01.021. Epub 2020 Jan 31.
Pectin methyl-esterases (PMEs) play crucial roles in plant growth. In this study, we identified 81 PbrPMEs in pear. Whole-genome duplication and purifying selection drove the evolution of PbrPME gene family. The expression of 47 PbrPMEs was detected in pear pollen tube, which were assigned to 13 clusters by an expression tendency analysis. One of the 13 clusters presented opposite expression trends towards the changes of methyl-esterified pectins at the apical cell wall. PbrPMEs were localized in the cytoplasm and plasma membrane. Repression of PbrPME11, PbrPME44, and PbrPME59 resulted in the inhibition of pear pollen tube growth and abnormal deposition of methyl-esterified pectins at pollen tube tip. Pharmacological analysis confirmed that reduced PbrPME activities repressed the pollen tube growth. Overall, we have explored the evolutionary characteristics of PbrPME gene family and found the key PbrPME genes that control the growth of pollen tube, which deepened the understanding of pear fertility regulation.
果胶甲酯酶(PMEs)在植物生长中起着至关重要的作用。本研究在梨中鉴定了 81 个 PbrPMEs。全基因组复制和纯化选择驱动了 PbrPME 基因家族的进化。在梨花粉管中检测到 47 个 PbrPME 的表达,通过表达倾向分析将它们分配到 13 个簇中。这 13 个簇之一呈现出与顶端细胞壁中甲酯化果胶变化相反的表达趋势。PbrPMEs 定位于细胞质和质膜中。PbrPME11、PbrPME44 和 PbrPME59 的抑制导致梨花粉管生长抑制和花粉管顶端甲酯化果胶的异常沉积。药理学分析证实,降低 PbrPME 活性抑制花粉管生长。总的来说,我们探索了 PbrPME 基因家族的进化特征,并发现了控制花粉管生长的关键 PbrPME 基因,加深了对梨育性调控的理解。