日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Evidence for a convergent slowdown in primate molecular rates and its implications for the timing of early primate evolution

灵长类分子速率趋同减缓的证据及其对早期灵长类进化时间的影响

Steiper, Michael E; Seiffert, Erik R

The SLC4A1 gene is under differential selective pressure in primates infected by Plasmodium falciparum and related parasites

在感染恶性疟原虫及相关寄生虫的灵长类动物中,SLC4A1基因受到不同的选择压力。

Steiper, Michael E; Walsh, Fiona; Zichello, Julia M

Dating primate divergences through an integrated analysis of palaeontological and molecular data

通过对古生物学和分子数据的综合分析来确定灵长类动物的分化时间

Wilkinson, Richard D; Steiper, Michael E; Soligo, Christophe; Martin, Robert D; Yang, Ziheng; Tavaré, Simon

Unresolved molecular phylogenies of gibbons and siamangs (Family: Hylobatidae) based on mitochondrial, Y-linked, and X-linked loci indicate a rapid Miocene radiation or sudden vicariance event

基于线粒体、Y染色体和X染色体基因座的长臂猿和合趾猿(长臂猿科)未解析的分子系统发育表明,它们可能经历了中新世的快速辐射演化或突发的物种形成事件。

Israfil, H; Zehr, S M; Mootnick, A R; Ruvolo, M; Steiper, M E

Age at first reproduction explains rate variation in the strepsirrhine molecular clock

首次繁殖年龄可以解释链鼻猴分子钟的速率变异。

Tsantes, C; Steiper, M E

Mitochondrial COII Introgression into the Nuclear Genome of Gorilla gorilla

大猩猩线粒体COII基因渗入核基因组

Chung, Wai Kwan; Steiper, Michael E

Genomic data support the hominoid slowdown and an Early Oligocene estimate for the hominoid-cercopithecoid divergence

基因组数据支持人科动物进化速度减缓的趋势,并支持人科动物与猴科动物分化发生在早渐新世的估计。

Steiper, Michael E; Young, Nathan M; Sukarna, Tika Y