课题基金 / 基金详情

Collaborative Research: Dimensions: Desiccation and Diversity in Dryland Mosses

Collaborative Research: Dimensions: Desiccation and Diversity in Dryland Mosses
合作研究:维度:旱地苔藓的干燥和多样性
批准号:
1638966
负责人:
Matthew Bowker
金额:
$29.08万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2017
资助国家:
美国
项目状态:
已结题
起止时间:
2017-01-01 至 2021-12-31

项目摘要

项目成果

相似基金

相关文献

中文摘要
翻译
苔藓是陆地植物的第二大多样性类群,它们在陆地生态系统中发挥着重要的生态作用。自从大约4.5亿年前与其他陆地植物的早期分化以来,苔藓走了一条与维管植物不同的道路,以解决陆地环境对生存和繁殖构成的挑战。在苔藓中发育良好的一个重要特征是干燥而不死亡的能力,即干燥耐受性(DT)。这一关键特征使许多苔藓即使在旱地也能生存和繁殖,这可能是它们在当前快速气候变化面前生存的关键。合毛苔藓是一种大而多样的苔藓属,广泛分布于世界各地,通常生活在旱地生境中。尽管它们在某些群落中占主导地位,如生物土壤结壳,但令人惊讶的是,人们对这一分支生物多样性的驱动因素知之甚少。这个跨学科项目整合了基因组、有机体、种群和社区组织层面的研究,以建立对Syntrichia生物多样性过去和现在维度的强有力的理解。总体目标是了解在这些不同的组织水平上产生和维持功能多样性的进化和生态机制,并通过以下方式促进培训、教学和学习:(1)通过实地和实验室研究进行正规教育;(2)非正规教育,包括课堂模块、以苔藓和生物壳从干燥休眠状态转变为特征的短片系列、公民科学节目《地壳公民》和一系列免费的公共工作坊。该研究将通过研究在不同程度的水分胁迫环境中驱动多样性、繁殖、栖息地选择和生理特征进化的潜在特征(包括表型可塑性)的机制,来研究无性繁殖和有性繁殖之间的权衡,以及表型可塑性和转化为专门的遗传型之间的权衡。将采用的具体方法包括:(1)对犬链球菌和田鼠的全基因组进行测序;(2)利用下一代测序(NGS)开发用于种群水平遗传变异研究的基因标记、用于表型分析(与生态生理和生态系统研究相关)的特征转录组工具以及用于系统发育分析的多个单拷贝基因;(3)转录组学实验,比较这两个物种的不同发育阶段和性别对干燥胁迫和生殖状态的响应;(3)多个群体的生态生理实验,以评估DT关键性状的表型可塑性;(5)不同环境中的犬链霉属和乡村链霉的群体遗传学研究;(6)建立新毛属的系统发育树,并利用它来了解所研究的性状之间的进化趋势和相互关系,并产生一个精细的分类;(7)在田间和温室实验中,研究遗传、功能和系统发育多样性在以合毛(与苔藓、地衣和蓝藻共生)为主的生物群落对气候变化的适应能力中的作用。
英文摘要
Mosses are the second most diverse group of land plants and they play important ecological roles in terrestrial ecosystems. Since an early divergence from other land plants some 450 million years ago, mosses took a different path than vascular plants to solving the challenges to survival and reproduction posed by terrestrial environments. One important trait that is well developed in mosses is the capability of drying without dying, known as desiccation tolerance (DT). This critical trait allows many mosses to survive and reproduce even in drylands, and may be the key to their survival in the face of current, rapid climate change. Syntrichia is a large and diverse genus of mosses occurring worldwide and generally in dryland habitats. Despite their dominance in certain communities such as biological soil crusts, surprisingly little is known about the drivers of biodiversity in this clade. This interdisciplinary project integrates research from genomic, organismal, population, and community levels of organization in order to build a robust understanding of past and present dimensions of biodiversity in Syntrichia. The overall goals are to understand the evolutionary and ecological mechanisms that have produced and maintained functional diversity at these different levels of organization, and promote training, teaching, and learning via: (1) formal education through field and laboratory research; (2) informal education involving a classroom module, short-film series featuring mosses and biocrusts transitioning from desiccation dormancy, a citizen science program "Citizens of the Crust," and a series of free public workshops.The research will examine tradeoffs between asexual and sexual reproduction, and between phenotypic plasticity and canalization into specialized genotypes, by examining the mechanisms underlying traits (including phenotypic plasticity) that drive diversification, reproduction, habitat selection, and physiological trait evolution in environments with varying degrees of water stress. Specific methods to be employed include: (1) sequencing the full genomes of S. caninervis and S. ruralis; (2) using next generation sequencing (NGS) to develop genotypic markers for population-level genetic variation studies, signature transcriptome tools for phenotypic analyses (related to ecophysiological and ecosystem investigations), and multiple single-copy genes for phylogenetic analysis; (3) transcriptomics experiments comparing different development stages and sexes of both species in response to desiccation stress and reproductive state; (3) ecophysiological experiments on multiple populations of S. caninervis and S. ruralis, and all 15 species of N. American Syntrichia, to assess phenotypic plasticity in the key trait of DT; (5) population genetic studies of S. caninervis and S. ruralis in different environments; (6) building a robust phylogeny for Syntrichia and using it to understand evolutionary trends and correlations among the traits under study, as well as to produce a refined classification; (7) examining the role of genetic, functional, and phylogenetic diversity in the resilience to climate change of biocrust communities that are dominated by Syntrichia (with co-occurring mosses, lichens, and cyanobacteria) in field and greenhouse experiments.
期刊论文(12)
专著(0)
科研奖励(0)
会议论文
DOI: 10.1111/rec.12965
发表时间: 2019-07-19
期刊: RESTORATION ECOLOGY
影响因子: 3.2
作者: [Bowker, Matthew A., Antoninka, Anita J., Chuckran, Peter F.]
通讯作者: Chuckran, Peter F.
DOI: 10.1016/j.jhydrol.2021.126050
发表时间: 2021-04
期刊: Journal of Hydrology
影响因子: 6.4
作者: [Sheng-long Li;M. Bowker;B. Xiao]
通讯作者: Sheng-long Li;M. Bowker;B. Xiao
DOI: 10.1016/j.ecoleng.2020.106019
发表时间: 2020-12-01
期刊: ECOLOGICAL ENGINEERING
影响因子: 3.8
作者: [Doherty, Kyle D., Grover, Henry S., Ramsey, Philip W.]
通讯作者: Ramsey, Philip W.
Moss-biocrusts strongly decrease soil surface albedo, altering land-surface energy balance in a dryland ecosystem
苔藓生物结皮强烈降低土壤表面反照率,改变旱地生态系统的地表能量平衡
DOI: 10.1016/j.scitotenv.2020.140425
发表时间: 2020
期刊: Science of the Total Environment
影响因子: 9.8
作者: [Bo Xiao, Matthew A. Bowker]
通讯作者: Matthew A. Bowker
共 7 条
    国内基金
    海外基金
    Research on Quantum Field Theory without a Lagrangian Description
    • 批准号:
      24ZR1403900
    • 项目类别:
      省市级项目
    • 资助金额:
      --
    • 批准年份:
      2024
    • 负责人:
      SATOSHI NAWATA
    • 依托单位:
    Cell Research
    Cell Research
    Cell Research (细胞研究)