Tetrahymena shanghaiensis 上海四膜虫
tetrahymena macronucleus 四膜虫大核
Tetrahymena thermophila 嗜热四膜虫 ; 四膜虫 ; 对嗜热四膜虫[1]
The first hint of a breakthrough came when Blackburn was studying chromosomes in a simple pond-dwelling organism called tetrahymena.
布莱克本在研究一种简单的池生生物四膜虫的染色体时,获得了一个突破性的发现。
The results show that tricocyst test of Tetrahymena pyriformis is a recommendable, handy, and reliable method for biomonitoring with freshwater species.
四膜虫刺泡发射试验不需加活性酶,是一种值得推荐的快速、简便、可靠的水生生物短期测试方法。
The environmental safety effect of nano-sized iron materials including Fe_3O_4, Fe_3O_4-zeolite composite and iron-doped zeolite was studied using a tetrahymena thermophila model.
采用嗜热四膜虫模型,探讨在水体富营养化治理中三种铁系纳米材料的环境安全效应。[1]