Suppr超能文献

大型溞(甲壳纲:枝角亚目)两个种群中形态和多肽表达的环境控制表型可塑性

Environmentally controlled phenotypic plasticity of morphology and polypeptide expression in two populations of Daphnia pulex (Crustacea: cladocera).

作者信息

Lee Lester W

机构信息

Division of Biological Sciences, Natural Science Building and Museum of Zoology, University of Michigan, 48109-1048, Ann Arbor, MI, USA.

出版信息

Oecologia. 1984 Aug;63(2):207-214. doi: 10.1007/BF00379879.

Abstract

Two local Daphnia pulex populations which are subject to different types of seasonally varying predation pressures were studied. Individuals from both populations were raised in laboratory environments which simulated either summer or winter temperatures and photoperiods. When individuals from the same parthenogenetic clone were raised in different seasonal environments, each clone exhibited phenotypic variation specific to each of the seasonal environments. Intraclonal phenotypic plasticity was found in both populations at two different levels: variation in morphological characters, and variation in the expressed polypeptide phenotypes. Summer environmental conditions induced predator-resistant morphological traits, while winter conditions induced predator-susceptible ones. From 65% to 71% of over 200 major polypeptides were specifically expressed in either one seasonal environment or the other. This is evidence for the existence of environmentally induced switching between alternate developmental programs. Clones from the population with the least year to year predictability of seasonal predation pressure showed more interclonal variation in environment specific phenotypic expression than clones from the more predictably fluctuating environment.

摘要

研究了两个受到不同类型季节性变化捕食压力的本地蚤状溞种群。来自这两个种群的个体在模拟夏季或冬季温度和光周期的实验室环境中饲养。当来自同一孤雌生殖克隆的个体在不同的季节环境中饲养时,每个克隆都表现出特定于每个季节环境的表型变异。在两个种群中均在两个不同水平上发现了克隆内表型可塑性:形态特征的变异和表达的多肽表型的变异。夏季环境条件诱导出抗捕食者的形态特征,而冬季条件诱导出易受捕食者攻击的特征。超过200种主要多肽中的65%至71%在一种或另一种季节环境中特异性表达。这证明了在交替发育程序之间存在环境诱导的转换。与来自季节性波动更可预测的环境的克隆相比,来自季节性捕食压力年度可预测性最低的种群的克隆在环境特异性表型表达上表现出更多的克隆间变异。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验