Key Laboratory of Resource Biology and Biotechnology in Western China (Ministry of Education), Provincial Key Laboratory of Biotechnology, College of Life Sciences, Northwest University, Xi'an, Shaanxi 710069, People's Republic of China.
Key Laboratory of Resource Biology and Biotechnology in Western China (Ministry of Education), Provincial Key Laboratory of Biotechnology, College of Life Sciences, Northwest University, Xi'an, Shaanxi 710069, People's Republic of China.
Plant Physiol Biochem. 2017 Dec;121:140-152. doi: 10.1016/j.plaphy.2017.10.014. Epub 2017 Nov 6.
The coding sequence of IiFUL in Isatis indigotica was isolated and was used in transformation of Arabidopsis. IiFUL overexpressing Arabidopsis plants exhibited early flowering phenotype, accompanied with the reduction of flower number and the production of terminal flower on the top of the main stems. In development process, the flowers located on the top of the main stems generated a lot of variations in phenotype, including abnormal swelling of pistil, withering and numerical change of stamens and petals, appearance of stigmatoid tissues and naked ovules at the margin or inside of sepals. Besides, secondary flower could be formed within the flowers on the top of the main stems. These observations illustrated that IiFUL mainly affected the development of inflorescence meristems and pistils, but its ectopic expression could also disturb the normal growth of other floral organs. Moreover, the fertile siliques produced by the lateral inflorescences of IiFUL overexpressing Arabidopsis plants showed indehiscent phenotype, and the shape of the cauline leaves was changed significantly. The results of quantitative real-time PCR revealed that higher transcriptional levels of IiFUL could be detected in flowers and silicles of I. indigotica. In comprehensive consideration of the previous reports about the dehiscence phenotype of Arabidopsis siliques and the fact that the siliques of IiFUL overexpressing Arabidopsis plants were indehiscent in the present work, it can be speculated that high expression of IiFUL in pericarp is likely the reason why the silicles of I. indigotica possess an indehiscent phenotype.
菘蓝 IiFUL 的编码序列被分离出来,并被用于拟南芥的转化。IiFUL 过表达拟南芥植株表现出早花表型,伴随着花数的减少和主茎顶端的顶生花的产生。在发育过程中,主茎顶端的花在表型上产生了许多变化,包括雌蕊异常肿胀、枯萎和雄蕊、花瓣数量的变化、柱头状组织的出现以及萼片内部或边缘的裸露胚珠。此外,主茎顶端的花内可以形成次生花。这些观察结果表明,IiFUL 主要影响花序分生组织和雌蕊的发育,但它的异位表达也会干扰其他花器官的正常生长。此外,IiFUL 过表达拟南芥侧生花序产生的可育蒴果表现出不开裂的表型,茎生叶的形状也发生了显著变化。定量实时 PCR 的结果显示,在菘蓝的花和蒴果中可以检测到更高的 IiFUL 转录水平。综合考虑以前关于拟南芥蒴果开裂表型的报道以及本研究中 IiFUL 过表达拟南芥植物的蒴果不开裂的事实,可以推测 IiFUL 在果皮中的高表达可能是菘蓝蒴果具有不开裂表型的原因。