Chaban Inna A, Kononenko Neonila V, Gulevich Alexander A, Bogoutdinova Liliya R, Khaliluev Marat R, Baranova Ekaterina N
All-Russia Research Institute of Agricultural Biotechnology, Timiryazevskaya 42, 127550 Moscow, Russia.
Moscow Timiryazev Agricultural Academy, Agronomy and Biotechnology Faculty, Russian State Agrarian University, Timiryazevskaya 49, 127550 Moscow, Russia.
Biology (Basel). 2020 Feb 17;9(2):32. doi: 10.3390/biology9020032.
The study was devoted to morphological and cytoembryological analysis of disorders in the anther and pollen development of transgenic tomato plants with a normal and abnormal phenotype, which is characterized by the impaired development of generative organs. Various abnormalities in the structural organization of anthers and microspores were revealed. Such abnormalities in microspores lead to the blocking of asymmetric cell division and, accordingly, the male gametophyte formation. Some of the non-degenerated microspores accumulate a large number of storage inclusions, forming sterile mononuclear pseudo-pollen, which is similar in size and appearance to fertile pollen grain (looks like pollen grain). It was discussed that the growth of tapetal cells in abnormal anthers by increasing the size and ploidy level of nuclei contributes to this process. It has been shown that in transgenic plants with a normal phenotype, individual disturbances are also observed in the development of both male and female gametophytes. The reason for the developmental arrest of some ovules was the death of endosperm at different stages of the globular embryo. At the same time, noticeable hypertrophy of endothelial cells performing a secretory function was observed. In the ovules of transgenic plants with abnormalities, the endothelium forms a pseudo-embryo instead of the embryo sac, stimulating the development of parthenocarpic fruits. The data obtained in this study can be useful for a better understanding of the genetic and molecular mechanisms of cytoplasmic male sterility and parthenocarpic fruit development in tomatoes.
该研究致力于对具有正常和异常表型的转基因番茄植株花药和花粉发育障碍进行形态学和细胞胚胎学分析,其特征为生殖器官发育受损。揭示了花药和小孢子结构组织中的各种异常。小孢子中的此类异常导致不对称细胞分裂受阻,进而导致雄配子体形成受阻。一些未退化的小孢子积累了大量贮藏内含物,形成不育的单核假花粉,其大小和外观与可育花粉粒相似(看起来像花粉粒)。讨论了异常花药中绒毡层细胞通过增加细胞核大小和倍性水平的生长有助于这一过程。结果表明,在具有正常表型的转基因植株中,雄配子体和雌配子体发育过程中也观察到个别干扰。一些胚珠发育停滞的原因是球形胚不同阶段胚乳的死亡。同时,观察到具有分泌功能的内皮层细胞明显肥大。在具有异常的转基因植株的胚珠中,内皮层形成假胚而不是胚囊,刺激了单性结实果实的发育。本研究获得的数据有助于更好地理解番茄细胞质雄性不育和单性结实果实发育的遗传和分子机制。