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花分生组织的异常发育引发了转基因番茄生殖系统的形态发生缺陷。

Abnormal development of floral meristem triggers defective morphogenesis of generative system in transgenic tomatoes.

作者信息

Chaban Inna, Khaliluev Marat, Baranova Ekaterina, Kononenko Neonila, Dolgov Sergey, Smirnova Elena

机构信息

All-Russia Research Institute of Agricultural Biotechnology, Timiryazevskaya 42, Moscow, Russian Federation, 127550.

Russian State Agrarian University-Moscow Timiryazev Agricultural Academy, Timiryazevskaya 49, Moscow, Russian Federation, 127550.

出版信息

Protoplasma. 2018 Nov;255(6):1597-1611. doi: 10.1007/s00709-018-1252-y. Epub 2018 Apr 21.

Abstract

Parthenocarpy and fruit malformations are common among independent transgenic tomato lines, expressing genes encoding different pathogenesis-related (PR) protein and antimicrobal peptides. Abnormal phenotype developed independently of the expression and type of target genes, but distinctive features during flower and fruit development were detected in each transgenic line. We analyzed the morphology, anatomy, and cytoembryology of abnormal flowers and fruits from these transgenic tomato lines and compared them with flowers and fruits of wild tomatoes, line YaLF used for transformation, and transgenic plants with normal phenotype. We confirmed that the main cause of abnormal flower and fruit development was the alterations of determinate growth of generative meristem. These alterations triggered different types of anomalous growth, affecting the number of growing ectopic shoots and formation of new flowers. Investigation of the ovule ontogenesis did not show anomalies in embryo sac development, but fertilization did not occur and embryo sac degenerated. Nevertheless, the ovule continued to differentiate due to proliferation of endothelium cells. The latter substituted embryo sac and formed pseudoembryonic tissue. This process imitated embryogenesis and stimulated ovary growth, leading to the development of parthenocarpic fruit. We demonstrated that failed fertilization occurred due to defective male gametophyte formation, which was manifested in blocked division of the nucleus in the microspore and arrest of vegetative and generative cell formation. Maturing pollen grains were overgrown microspores, not competent for fertilization but capable to induce proliferation of endothelium and development of parthenocarpic ovary. Thus, our study provided new data on the structural transformations of reproductive organs during development of parthenocarpic fruits in transgenic tomato.

摘要

单性结实和果实畸形在独立的转基因番茄品系中很常见,这些品系表达编码不同病程相关(PR)蛋白和抗菌肽的基因。异常表型的出现与靶基因的表达和类型无关,但在每个转基因品系中都检测到了花和果实发育过程中的独特特征。我们分析了这些转基因番茄品系异常花和果实的形态、解剖结构和细胞胚胎学,并将它们与野生番茄、用于转化的YaLF品系以及具有正常表型的转基因植物的花和果实进行了比较。我们证实,花和果实发育异常的主要原因是生殖分生组织的有限生长发生了改变。这些改变引发了不同类型的异常生长,影响了异位芽的生长数量和新花的形成。对胚珠个体发育的研究未显示胚囊发育异常,但未发生受精且胚囊退化。然而,由于内皮层细胞的增殖,胚珠继续分化。后者替代了胚囊并形成假胚组织。这个过程模仿了胚胎发生并刺激子房生长,导致单性结实果实的发育。我们证明受精失败是由于雄配子体形成缺陷,这表现为小孢子细胞核分裂受阻以及营养细胞和生殖细胞形成停滞。成熟的花粉粒是过度生长的小孢子,不具备受精能力,但能够诱导内皮层增殖和单性结实子房的发育。因此,我们的研究为转基因番茄单性结实果实发育过程中生殖器官的结构转变提供了新的数据。

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