Song Liru, Liu Zhongqi, Tong Jianhua, Xiao Langtao, Ma Hao, Zhang Haiqing
State Key Laboratory of Crop Genetics and Germplasm Enhancement, Nanjing Agricultural University, Nanjing, P. R. China.
College of Agronomy, Hunan Agricultural University, Collaborative Innovation Center of Grain and Oil crops in South China, Changsha, P. R. China.
Proteomics. 2015 Jun;15(11):1884-905. doi: 10.1002/pmic.201400103. Epub 2015 Mar 18.
Thermosensitive genic male sterile (TGMS) rice line has made great economical contributions in rice production. However, the fertility of TGMS rice line during hybrid seed production is frequently influenced by low temperature, thus leading to its fertility/sterility alteration and hybrid seed production failure. To understand the mechanism of fertility alternation under low temperature inducement, the extracted proteins from young panicles of two TGMS rice lines at the fertility alternation sensitivity stage were analyzed by 2DE. Eighty-three protein spots were found to be significantly changed in abundance, and identified by MALDI-TOF-TOF MS. The identified proteins were involved in 16 metabolic pathways and cellular processes. The young panicles of TGMS rice line Zhu 1S possessed the lower ROS-scavenging, indole-3-acetic acid level, soluble protein, and sugar contents as well as the faster anther wall disintegration than those of TGMS rice line Zhun S. All these major differences might result in that the former is more stable in fertility than the latter. Based on the majority of the 83 identified proteins, together with microstructural, physiological, and biochemical results, a possible fertile alteration mechanism in the young panicles of TGMS rice line under low temperature inducement was proposed. Such a result will help us in breeding TGMS rice lines and production of hybrid seed.
温敏雄性不育(TGMS)水稻品系在水稻生产中做出了巨大的经济贡献。然而,TGMS水稻品系在杂交制种过程中的育性经常受到低温影响,从而导致其育性/不育性发生改变,杂交制种失败。为了解低温诱导下育性转换的机制,对两个TGMS水稻品系在育性转换敏感阶段幼穗中提取的蛋白质进行了双向电泳分析。发现有83个蛋白质点的丰度发生了显著变化,并通过基质辅助激光解吸电离飞行时间串联质谱(MALDI-TOF-TOF MS)进行了鉴定。鉴定出的蛋白质涉及16条代谢途径和细胞过程。与准S相比,TGMS水稻品系株1S的幼穗具有较低的活性氧清除能力、吲哚-3-乙酸水平、可溶性蛋白和糖含量,花药壁解体速度更快。所有这些主要差异可能导致前者的育性比后者更稳定。基于83个已鉴定蛋白质中的大多数,结合微观结构、生理和生化结果,提出了低温诱导下TGMS水稻品系幼穗可能的育性改变机制。这一结果将有助于我们培育TGMS水稻品系和生产杂交种子。