Huihua Wang
38 Papers
73 Citations
Huihua Wang is an academic researcher. The author has contributed to research in topics: Biology & Population. The author has an hindex of 14, co-authored 32 publications.
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Papers
Genome-wide analysis reveals population structure and selection in Chinese indigenous sheep breeds
Caihong Wei,Huihua Wang,Gang Liu,Mingming Wu,Jiaxve Cao,Zhen Liu,Ruizao Liu,Fuping Zhao,Li Zhang,Jian Lu,Chousheng Liu,Lixin Du +11 more
TL;DR: It is proposed that Chinese native sheep can be divided into two genetic groups: the thin type (Tibetan group), and the fat type (Mongolian and Kazakh group).
Genome-wide analysis reveals adaptation to high altitudes in Tibetan sheep
Caihong Wei,Huihua Wang,Gang Liu,Fuping Zhao,James Kijas,Youji Ma,Jian Lu,Li Zhang,Jiaxue Cao,Mingming Wu,Guangkai Wang,Ruizao Liu,Zhen Liu,Shuzhen Zhang,Chousheng Liu,Lixin Du +15 more
TL;DR: Analysis of the relationship between blood-related phenotypes and EPAS1 genotypes in additional highland sheep revealed that a homozygous mutation at a relatively conserved site in theEPAS1 3′ untranslated region was associated with increasedmean corpuscular haemoglobin concentration and mean corpuscular volume.
Genomic analyses reveal demographic history and temperate adaptation of the newly discovered honey bee subspecies Apis mellifera sinisxinyuan n. ssp.
Chao Chen,Liu Zhiguang,Qi Pan,Chen Xiao,Huihua Wang,Guo Haikun,Shidong Liu,Hongfeng Lu,Shilin Tian,Li Ruiqiang,Shi Wei +10 more
TL;DR: Analysis of population history show that long-term global temperature has strongly influenced the demographic history of A. m.
Selection signature analysis reveals genes associated with tail type in Chinese indigenous sheep.
TL;DR: Gene annotation showed that HOXA11, BMP2, PPP1CC, SP3, SP9, WDR92, PROKR1 and ETAA1 may play important roles in fat tail formation, providing insight into tail fat development and a guide for molecular breeding and conservation.
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Population Genomics Provide Insights into the Evolution and Adaptation of the Eastern Honey Bee (Apis cerana).
TL;DR: A substantial influence of the Earth’s climate on the effective population size of A. cerana was revealed, as increased population sizes were observed during warmer periods and candidate genes under natural selection that are potentially related to honey bee cognition, temperature adaptation, and olfactory were identified.