Collaborative Research: Convergent evolution and diversification of the crab body plan over 200 million years
Collaborative Research: Convergent evolution and diversification of the crab body plan over 200 million years
批准号:
1856667
负责人:
Heather Bracken-Grissom
金额:
$47.31万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2019
资助国家:
美国
项目状态:
已结题
起止时间:
2019-09-01 至 2024-08-31
中文摘要
这个项目解决了生命研究中的一个基本问题:我们能根据动物的形态来预测它们的进化成功吗?螃蟹是最具标志性的无脊椎动物群体之一,在水族馆贸易、渔业和水产养殖中发挥着不可或缺的作用,世界各地的文化都通过节日和游行来庆祝。这项研究旨在为所有已知的现存和化石螃蟹家族建造生命之树,以调查这些动物在2亿年的历史中发生了怎样的变化。螃蟹的典型体型是从龙虾类祖先几次分别进化而来的,也曾多次在不同的螃蟹群中消失。新的螃蟹生命树将揭示螃蟹形状的独立得失是否预示着该群体的巨大生物多样性和生态多样性。螃蟹形式和功能的鼓舞人心的多样性将通过博物馆活动吸引高中生,并让本科生参与初级研究和课堂模块,以激励批判性思维。将在巴拿马进行实地考察,在那里,热带螃蟹分类学的培训课程将使美国和拉丁美洲的科学家沉浸在用来扩大和调查螃蟹生命树的技术中。在十足目甲壳类动物中,获得类似螃蟹的身体形态进化了四到五倍,并被认为是短尾蟹(7000种真蟹)和Anomura(2500种,包括瓷蟹、寄居蟹和帝王蟹)巨大多样性和生态成功的一个贡献因素。该项目的目标是:(1)利用基因组(现存的)和形态(现存的和化石的)数据,构建一个有良好支撑的假蟹和真蟹的骨干系统发育。(2)以化石作为年龄标度,建立演化年表,为推断蟹体平面演化的模式和地质年代奠定基础。(3)检验类蟹种群相对于其姊妹种群的多样性比率是否有所增加,而当类蟹躯体二次丧失时,多样性比率是否也有所下降。研究人员假设,至少有一些特征构成了可能的关键创新。这些目标将通过使用目标丰富方法对500种螃蟹物种进行测序,对活的和化石的分类群(包括所有蟹科的代表)进行形态编码和成像,以及部署用于分歧时间分析和系统发育比较方法的尖端策略来实现。该奖项反映了NSF的法定使命,并通过使用基金会的智力优势和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
This project addresses a fundamental question in the study of life: can we predict the evolutionary success of animals based on their forms? Crabs are one of the most iconic groups of invertebrates, playing an integral role in aquarium trade, fisheries, and aquaculture, and are celebrated in cultures around the world through festivals and parades. This research aims to build the tree of life for all known living and fossil crab families, to investigate how these animals have changed over 200 million years of history. The typical body form that characterizes crabs has evolved separately several times from lobster-like ancestors, and also has been lost several times in different groups of crabs. The new crab tree of life will reveal whether the independent gains and losses of the crab shape predict the immense biodiversity and ecological versatility of the group. The inspiring diversity of crab form and function will engage high school students through museum activities, and undergraduate students in primary research and classroom modules incentivizing critical thinking. Fieldwork will be conducted in Panama, where a training course in tropical crab taxonomy will immerse US and Latin American scientists in the techniques used to expand and investigate the crab tree of life.The acquisition of a crab-like body form has evolved four to five times among decapod crustaceans, and has been proposed as a contributing factor to the immense diversification and ecological success within the infraorders Brachyura (7000 species of true crabs), and Anomura (2500 species including porcelain crabs, hermit crabs, and king crabs). The objectives of this project are: (1) To construct a well-supported backbone phylogeny for false and true crabs using genomic (extant) and morphological (extant and fossil) data. (2) To employ fossils as age calibrations to construct an evolutionary timeline; this will serve as the foundation for inferring the pattern and geological timing of crab body plan evolution. (3) To test if the rate of diversification has increased in crab-like lineages relative to their sister groups, and likewise has decreased when the crab-like body was secondarily lost. The researchers hypothesize that at least some traits comprise a possible key innovation. These objectives will be achieved by sequencing 500 crab species using target enrichment methods, morphological coding and imaging of living and fossil taxa (including representatives of all crab families), and the deployment of cutting-edge strategies for divergence time analysis and phylogenetic comparative methods.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
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