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1)  Yeast-like symbionts
类酵母共生菌
1.
The yeast-like symbionts (YLS) were isolated and purified from the fat body of the brown planthopper, Nilaparvata lugens Stl (BPH) with different virulence reared on various rice resistant varieties.
分离纯化了褐飞虱3种不同致害性种群体内类酵母共生菌(yeast-likesymbionts,YLS),并对其18SrDNA基因序列进行了比较。
2.
The morphology and number of yeast-like symbionts(YLS) in three host-associated populations of Nilaparvata lugens(TN1 population,Mudgo population and ASD7 population) which had been reared on rice varieties TN1(susceptible),Mudgo(harboring resistance gene Bph1) and ASD7(harboring resistance gene bph2) for more than 117 generations,respectively were studied.
对分别在不同水稻品种TN1(感虫品种)、Mudgo(含Bph1抗虫基因)、ASD7(含bph2抗虫基因)上连续饲养了117代以上的3个褐飞虱寄主种群(分别称为TN1种群、Mudgo种群、ASD7种群)体内类酵母共生菌的形态和数量进行了比较。
3.
Effect of diets on abundance of yeast-like symbionts and development of the cigarette beetle,Lasioderma serricorne.;
烟草甲Lasioderma serricorne(Fabricius)消化道内含有一种类酵母共生菌,其在烟草甲的营养需求和对外源物质的解毒过程中有重要作用。
2)  yeast-like endosymbiote
类酵母共生菌
1.
Change in size and abundance of the yeast-like endosymbiote during the interaction between brown planthopper,Nilaparvata lugens(Stl),and resistant-variety rice;
水稻与褐飞虱互作过程中虫体内类酵母共生菌的个体大小及数量变化
2.
The number of yeast-like endosymbiotes in the 3rd instar SBPH reduced by 23.
经1、2和3d处理后,灰飞虱体内类酵母共生菌数量分别减少了23。
3)  yeast-like symbiotes
类酵母共生菌
1.
Relationship between yeast-like symbiotes and amino acid requirements in the rice brown planthopper, Nilaparvata lugens Stl (Homoptera: Delphacidae);
褐飞虱体内类酵母共生菌与氨基酸营养的关系
2.
The relationships between yeast-like symbiotes and ovarian development and reproduction of the small brown planthopper,Laodelphax striatellus
类酵母共生菌与灰飞虱卵巢发育和产卵量的关系
4)  yeast-like endosymbiote
酵母类共生菌
1.
Morphological characteristics of yeast-like endosymbiotes (YLES) in brown planthopper (BPH), Nilaparvata lugens Stl were studied by the cryostat microtome method in combination with the photomicrography.
试验采用冷冻切片技术结合显微摄像系统观察研究了褐飞虱雌成虫体内酵母类共生菌的形态特性和在寄主虫体内的存在状态。
5)  yeast-like endosymbiote
共生酵母菌
1.
Individual size and abundance of the yeast-like endosymbiote in different geographic populations of brown planthopper, Nilaparvata lugens;
不同地理种群褐飞虱体内共生酵母菌的个体大小及数量差异
6)  Saccharomycetes
酵母菌类
补充资料:藻菌共生系统
藻菌共生系统
algal-bacterial symbiotic system
    利用藻类和细菌两类生物之间的生理功能协同作用来净化污水的淡水生态系统。藻类植物通过光合作用利用水中的CO2和NH4+、PO4-3等营养物质,合成自身细胞物质并释放出O2;好氧细菌则利用水中O2对有机污染物进行分解、转化,产生CO2和上述营养物质,以维持藻类的生长繁殖, 如此循环往复,实现污水的生物净化作用。藻菌共生系统处理污水的效率取决于太阳能辐射量、温度、污染程度(负荷与毒性)和停留时间等多种因素。W.J.奥斯瓦德等国外学者对该系统进行了许多基础与应用研究。中国长期利用生活污水养鱼,实际上也是一种利用藻菌系统净化污水并回收渔产品的方法。近10多年,中国在不同气候地区开展的氧化塘污水处理技术的应用研究中,对藻菌共生系统也进行了深入的研究工作结果表明该系统不仅能明显去除N、P、有机物,降低BOD(生化需氧量)、COD(化学需氧量)等,而且在控制和净化大肠杆菌、诱变活性物质和病毒方面也同样具有显著效果。
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