Qiu Yilan, Liao Lijuan, Jin Xiaorui, Mao Dandan, Liu Rushi
Hunan Province Key Laboratory of Crop Sterile Germplasm Resource Innovation and Application, School of Life Science, Hunan Normal University, Changsha 410081, China.
School of Medicine, Hunan Normal University, Changsha 410013, China.
Gene. 2018 Jan 30;641:8-17. doi: 10.1016/j.gene.2017.10.022. Epub 2017 Oct 12.
CMS, which refers to the inability to generate functional pollen grains while still producing a normal gynoecium, has been widely used for pepper hybrid seed production. Pepper line 8214A is an excellent CMS line exhibiting 100% male sterility and superior economic characteristics. A TUNEL assay revealed the nuclear DNA is damaged in 8214A PMCs during meiosis. TEM images indicated that the 8214A PMCs exhibited asynchronous meiosis after prophase I, and some PMCs degraded prematurely with morphological features typical of PCD. Additionally, at the end of meiosis, the 8214A PMCs formed abnormal non-tetrahedral tetrads that degraded in situ. To identify the genes involved in the pollen abortion of line 8214A, the transcriptional profiles of the 8214A and the 8214B anthers (i.e., from the fertile maintainer line) during meiosis were analyzed using an RNA-seq approach. A total of 1355 genes were determined to be differentially expressed, including 424 and 931 up- and down- regulated genes, respectively, in the 8214A anthers during meiosis relative to the expression levels in the 8214B. The expression levels of ubiquitin ligase and cell cycle-related genes were apparently down-regulated, while the expression of methyltransferase genes was up-regulated in the 8214A anthers during meiosis, which likely contributed to the PCD of these PMCs during meiosis. Thus, our results may be useful for revealing the molecular mechanism regulating the pollen abortion of CMS pepper.
细胞质雄性不育(CMS)是指在仍能产生正常雌蕊的情况下无法产生有功能的花粉粒,已被广泛用于辣椒杂交种子生产。辣椒品系8214A是一个优良的CMS品系,表现出100%的雄性不育和优良的经济特性。TUNEL分析显示,8214A花粉母细胞在减数分裂过程中核DNA受损。透射电镜图像表明,8214A花粉母细胞在减数第一次分裂前期后表现出减数分裂不同步,一些花粉母细胞过早退化,具有典型的程序性细胞死亡形态特征。此外,在减数分裂末期,8214A花粉母细胞形成异常的非四面体四分体并原位降解。为了鉴定参与8214A品系花粉败育的基因,采用RNA测序方法分析了8214A和8214B(即来自可育保持系)花药在减数分裂过程中的转录谱。共确定1355个基因差异表达,其中8214A花药在减数分裂过程中相对于8214B的表达水平,分别有424个上调基因和931个下调基因。泛素连接酶和细胞周期相关基因的表达水平明显下调,而甲基转移酶基因在8214A花药减数分裂过程中表达上调,这可能导致了这些花粉母细胞在减数分裂过程中的程序性细胞死亡。因此,我们的结果可能有助于揭示调控CMS辣椒花粉败育的分子机制。