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1)  RAPD loci
RAPD位点数
2)  RAPD analysis
RAPD
1.
RAPD analysis on apricot fruit black spot pathogen and the similar species of Alternaria;
杏果实黑斑病菌及近似链格孢种的RAPD分析
2.
Application of RAPD analysis in classification andidentification of fungi;
RAPD在真菌分类鉴定上的应用
3.
RAPD analysis of 15 mosses species from Northeast China and its taxonomic implication;
中国东北15种藓类植物RAPD分析及其分类学意义
3)  random amplified polymorphic DNA(RAPD)
RAPD
1.
A comparative study of polymorphism of genomic DNA in 6 species of locusts by means of random amplified polymorphic DNA(RAPD);
六种蝗虫基因组DNA多态性的RAPD标记研究
2.
from different habitats were investigated with the technique of inter-simple sequence repeat(ISSR) and random amplified polymorphic DNA(RAPD),which were 18 of L.
方法用ISSR和RAPD标记分别对不同采集地的37份石蒜属植物(石蒜18份、中国石蒜10份、换锦花5份、忽地笑4份)的基因组DNA的遗传多样性进行检测。
3.
correcta,were studied by using the technique of random amplified polymorphic DNA(RAPD).
采用RAPD技术构建了果实蝇属(Bactrocera)的南瓜实蝇(B。
4)  random amplified polymorphic DNA (RAPD)
RAPD
1.
hupensis from 17 areas of 9 provinces in China were collected and their genomic DNA were amplified by the random amplified polymorphic DNA (RAPD) technique.
 方法 采用随机扩增多态性DNA(RAPD)技术 ,对中国 9省 17地的湖北钉螺进行PCR扩增 ,并根据扩增产物琼脂糖凝胶电泳的带型 ,计算各地域株间的遗传距离 ,根据遗传距离绘制系统进化树。
2.
Rabbit genomic DNAs derived from Japanese White Rabbits (JWR), Chinchilla Rabbits (CR) and New Zealand White Rabbits (NZWR) were analyzed with random amplified polymorphic DNA (RAPD) technique and the genetic variation among 3 rabbit strains were studied.
本文选用新西兰白兔(New Zealand White Rabbit,NZWR)、青紫兰兔(Chinchilla Rabbit,CR)、日本白兔(Japanese White Rabbit,JWR)3个品系的血样提取基因组DNA,并应用随机引物扩增多态性DNA技术(Random Amplified Polymorphic DNA,RAPD)进行遗传分析和比较。
3.
The population structure of Cryphonectria parasitica was analyzed using random amplified polymorphic DNA (RAPD).
采用RAPD方法对来源于栗疫病菌8个不同子囊壳的子囊孢子后代和无性生殖的对照群体各23个菌株进行了群体结构的比较。
5)  random amplified polymorphic DNA
RAPD
1.
Use of Random Amplified Polymorphic DNA(RAPD)Analysis to Detect Jujube Witches Broom Phytoplasmas;
运用RAPD技术分析检测枣疯病植原体基因
2.
The genetic diversity and genetic relationships in Dendrocalamus farinosus from 6 different regions in Sichuan Province were studied using random amplified polymorphic DNA(RAPD) and inter-simple sequence repeat(ISSR) amplification markers.
应用随机扩增多态性DNA(RAPD)和简单重复序列区间(ISSR)对四川省6个不同地区梁山慈竹进行遗传多样性分析。
3.
In this paper,three widely used molecular techniques——isozyme,RAPD(random amplified polymorphic DNA)and SSRs(microsatellites) were summarized,providing reference to further study of pollination biology.
文章就目前运用较多的三种主要的分子技术——同功酶、RAPD(随机扩增多态性DNA)、SSRs(微卫星)作一综述,旨在为传粉生物学的深入研究提供参考。
6)  point to point CNC control
点位数控
补充资料:春天防止君子兰烂根的小点数
    春季是君子兰生长旺盛的季节,但是由于水肥管理不当很容易出现烂根现象,究其原因主要以下几个。
    一是水浇大了
    不论是小苗还是大苗,水都不能浇过量,水一大,温度一高,通风再不良,君子兰肯定要烂根。
    二是土太生
    不论是用腐叶土还是马粪土,草炭土配制营养土都必须是充分发酵的,如果把一些生土上到盆中,在高温条件下,这些生土发酵后就会产生高温,烧烂肉质根。
    三是肥料未发酵好
    给君子兰施豆饼,麻籽、鱼腥水等都必须经过充分发酵才行,如果把一些生肥施到盆土中,也会产生高温烧烂肉质根;
    四是施肥量过大导致烂根
    特别是不能过量施用化肥,因化肥的刺激性太大,虽然在短期内能促使叶片快长,但过量施肥对肉质根损害太大,很容易引起萎缩和烂根。
    五是使用透气性能很差的瓷盆、塑料盆养君子兰
    由于透气性不良,而将根茎捂烂。
    六是温度太高
    特别是育苗期,底温保持22℃即可,但有人把育苗盆、箱长时间放在热炕头上或暖气片上,结果很快把小苗捂烂根。
    根据以上几种情况,如果我们有针对性注意预防,君子兰烂根现象是可以避免的。
    但是万一不镇,发现君子兰已烂根,也不用耽心,只要把植株从盆中磕出,将烂根剪除,切口处涂木炭或烟灰,再重新换土上盆即可。如果肉质根已全部烂掉也不要紧,可将烂根全部掐掉,然后用清水把根茎洗净,再放粗砂中进行催根,叶片要剪掉一部分。
    ——摘自《中国供销商情绿化与花卉》2002.14
    
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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