Zhang Min, Song Xiaoxin, Lv Kun, Yao Yang, Gong Zaixin, Zheng Caixia
College of Biological Sciences and Technology, Beijing Forestry University, No. 35 Qing Hua Dong Lu, Beijing, 100083, China.
College of Biological Sciences and Technology, Beijing Forestry University, No. 35 Qing Hua Dong Lu, Beijing, 100083, China.
Plant Sci. 2017 Jul;260:31-49. doi: 10.1016/j.plantsci.2017.03.001. Epub 2017 Mar 24.
Ovule abortion affects the yield and quality of Pinus tabulaeformis Carr. seeds. Research into ovule abortion has importance for improving the seed setting rate and establishing artificial seed production techniques. Fertile line (FL) ovules (FL-E) and sterile line (SL) ovules (SL-E) in the early stage of free nuclear mitosis of megagametophyte (FNMM), FL ovules (FL-L) and SL ovules (SL-L) in the late stage of FNMM of P. tabulaeformis were collected as materials. 4192 proteins were identified by isobaric tags for relative and absolute quantitation (iTRAQ)-based analysis. Bioinformatics analysis implied that in SL ovules, substances and energy might be deficient, perhaps leading to abnormal DNA replication. Because the incomplete antioxidant system and the abnormal expression levels of enzymes involved in cell signal transduction, DNA DSBs probably occurs. Facing the abnormities of DNA replication and damage, the cell cycle was arrested and the DNA damage failed to be repaired, potentially resulting in the occurrence of PCD. Taken together, an inference can be drawn from our study - substance and energy deficiencies, reactive oxygen stress, and the failure of both cell cycle progression and DNA damage repair, which possibly hinder FNMM, leading to ovule abortion in the female-sterile line of P. tabulaeformis.
胚珠败育影响油松种子的产量和质量。对胚珠败育的研究对于提高结实率和建立人工种子生产技术具有重要意义。以油松雌配子体游离核有丝分裂前期的可育系(FL)胚珠(FL-E)和不育系(SL)胚珠(SL-E)、雌配子体游离核有丝分裂后期的FL胚珠(FL-L)和SL胚珠(SL-L)为材料。通过基于等压标签相对和绝对定量(iTRAQ)的分析鉴定出4192种蛋白质。生物信息学分析表明,在SL胚珠中,物质和能量可能不足,这可能导致DNA复制异常。由于抗氧化系统不完整以及参与细胞信号转导的酶表达水平异常,可能会发生DNA双链断裂(DSBs)。面对DNA复制和损伤的异常情况,细胞周期停滞,DNA损伤无法修复,这可能导致程序性细胞死亡(PCD)的发生。综上所述,从我们的研究中可以得出一个推论——物质和能量不足、活性氧应激以及细胞周期进程和DNA损伤修复的失败,可能会阻碍雌配子体游离核有丝分裂,导致油松不育系胚珠败育。