2) Bisexual Artemia strains from China
中国两性生殖卤虫品系
3) bisexual Artemia
两性生殖卤虫
1.
Studies on the Taxonomy and Biological Features of Bisexual Artemia from Plateau Salt Lakes of China;
中国高原盐湖两性生殖卤虫分类及生物学特性的研究
2.
Molecular Systematics of Bisexual Artemia Populations;
两性生殖卤虫的分子系统学研究
3.
We studied cysts and nauplii of 15 bisexual Artemia strains from Shanxi, Inner Mongonia and Qinghai-Xizang Plateau of China by using the method of numeric taxonomy.
本文用数值分类的方法对来自我国山西、内蒙古以及青藏高原的共15个两性生殖卤虫品系的卵、无节幼体进行了研究。
4) Chinese Artemia Parthenogenetica
中国孤雌生殖卤虫
1.
A Study on the Related Genes of Early Embryonic Development of Chinese Artemia Parthenogenetica;
中国孤雌生殖卤虫胚胎发育相关基因的研究
5) Artemia sinica
中国卤虫
1.
A STUDY ON THE RELATED GENES OF EARLYE MBRYONIC DEVELOPMENT OF ARTEMIA SINICA——Establishment of Whole-mount Fluorescent in situ Hybridization to Artemia sinica Nauplius Trachealess Gene;
中国卤虫早期胚胎发育相关基因的研究——卤虫幼体trh基因的整体荧光原位杂交技术的建立
2.
Establishment and Improvement of Real-time Fluorescence Quantitative PCR for actin Gene of Artemia sinica;
中国卤虫actin基因的实时荧光定量PCR方法的建立和优化
3.
A study on the related genes of early embryonic development of Artemia sinica——Degenerate PCR primer design and improvement for Artemia sinica Orthodenticle clone
中国卤虫早期胚胎发育相关基因的研究——Orthodenticle基因克隆中简并引物的设计和优化
6) Artemia parthenogenetica
孤雌生殖卤虫
1.
The gene expression of nine isozymes (lactate dehydrogenase, glutamic dehydrogenase, 6 phoshogluconate dehydrogenase, peroxidase, esterase, acid phoshatase, alkaline phosphatase, malate dehydrogenase, α amylase)and population genetic structure of 26 clones of Artemia parthenogenetica polyploids from China were studied with polyacrylamide gel electrophoresis.
采用聚丙烯酰胺凝胶垂直板电泳法 ,对中国孤雌生殖卤虫 1 0个品系的 2 6个多倍体单个体克隆的 9种同工酶的基因表达情况、种群遗传结构以及进化关系进行了研究。
2.
The gene expressions of α-AMY isozymes (α-amylase) of 26 clones of Artemia parthenogenetica polyploids from China were studied by means of polyacrylamide gel electrophoresis.
采用聚丙烯酰胺凝胶垂直板电泳法 ,对中国孤雌生殖卤虫 10个品系的 2 6个多倍体单个体克隆的α AMY同工酶的基因表达情况进行了研究 。
补充资料:草履虫的接合生殖
草履虫的接合生殖
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[图]
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条