Suppr超能文献

跨代可塑性作为影响克隆植物对气候变化响应的重要机制。

Transgenerational plasticity as an important mechanism affecting response of clonal species to changing climate.

作者信息

Münzbergová Zuzana, Hadincová Věroslava

机构信息

Department of Botany Faculty of Science Charles University Prague Czech Republic.

Institute of Botany Academy of Sciences of the Czech Republic Průhonice Czech Republic.

出版信息

Ecol Evol. 2017 Jun 7;7(14):5236-5247. doi: 10.1002/ece3.3105. eCollection 2017 Jul.

Abstract

In spite of the increasing number of studies on the importance of transgenerational plasticity for species response to novel environments, its effects on species ability to respond to climate change are still largely unexplored. We study the importance of transgenerational plasticity for response of a clonal species . Individuals from four natural populations representing two levels of temperature and two levels of precipitation were cultivated in four growth chambers that simulate the temperature and precipitation of origin of the populations (maternal phase). Each population was represented in each growth chamber. After 6 months, single young ramets of these plants were reshuffled among the growth chambers and let to grow for additional 2 months (offspring phase). The results show that transgenerational effects (i.e., maternal phase conditions) significantly modify species response to novel climates, and the direction and intensity of the response depend on the climate of origin of the plants. For traits related to recourse acquisition, the conditions of maternal phase, either alone or in interaction mainly with climate of origin, had stronger effect than the conditions of cultivation. Overall, the maternal climate interacted more intensively with the climate of origin than with the offspring climate. The direction of the effect of the maternal climate was of different directions and intensities depending on plant origin and trait studied. The data demonstrated strong significant effects of conditions during maternal phase on species response to novel climates. These transgenerational affects were, however, not adaptive. Still, transgenerational plasticity may be an important driver of species response to novel conditions across clonal generations. These effects thus need to be carefully considered in future studies exploring species response to novel climates. This will also have strong effects on species performance under increasingly variable climates expected to occur with the climate change.

摘要

尽管关于跨代可塑性对物种应对新环境的重要性的研究越来越多,但其对物种应对气候变化能力的影响仍 largely unexplored。我们研究了跨代可塑性对一种克隆物种反应的重要性。来自代表两个温度水平和两个降水水平的四个自然种群的个体在四个模拟种群起源地(母本阶段)温度和降水的生长室中培养。每个生长室都有每个种群的代表。6个月后,将这些植物的单个幼嫩分株在生长室之间重新排列,并再生长2个月(子代阶段)。结果表明,跨代效应(即母本阶段条件)显著改变了物种对新气候的反应,反应的方向和强度取决于植物的起源气候。对于与资源获取相关的性状,母本阶段的条件,无论是单独还是主要与起源气候相互作用,都比培养条件有更强的影响。总体而言,母本气候与起源气候的相互作用比与子代气候的相互作用更强烈。母本气候影响的方向因植物起源和所研究的性状而异,具有不同的方向和强度。数据表明母本阶段的条件对物种对新气候的反应有强烈的显著影响。然而,这些跨代影响并非适应性的。尽管如此,跨代可塑性可能是物种跨克隆世代对新条件反应的一个重要驱动因素。因此,在未来探索物种对新气候反应的研究中,需要仔细考虑这些影响。这也将对预计随着气候变化而出现的气候日益多变情况下的物种表现产生强烈影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a4b5/5528211/896c6a7ff8df/ECE3-7-5236-g001.jpg

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