Genetic and phenotypic intra-species diversity of alga Tisochrysis lutea reveals original genetic structure and domestication potential

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-09-29 DOI:10.1080/09670262.2023.2249073
Grégory Carrier, Jérémy Berthelier, Agathe Maupetit, Elodie Nicolau, Martial Marbouty, Nathalie Schreiber, Aurélie Charrier, Clémence Carcopino, Laura Leroi, Bruno Saint-Jean
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引用次数: 1

Abstract

Oceanic phytoplankton species are generally composed of many strains, with intra-species diversity consisting of genetic and phenotypic variability. Despite its importance in ecological and biotechnological contexts, this intra-species diversity and variation among strains has been little studied. We investigated the intra-species diversity of the microalga Tisochrysis lutea, a haptophyte of the Isochrysidales order. Inter-strain diversity of T. lutea was studied because of the economic importance of the species as a feed in aquaculture and for antioxidant metabolite production, particularly fucoxanthin and other carotenoids, which have health benefits. We analysed Tara Ocean datasets which revealed that T. lutea was present in the Pacific, Atlantic and Indian Oceans but not in the Arctic or Austral Oceans. We next made phenotypic and genotypic comparisons of 11 strains of T. lutea from worldwide algal collections. All strains were cultivated in the same controlled conditions for one week, and several phenotypic traits were measured, notably antioxidant content. In parallel, the genomes of each strain were sequenced, and genetic variants identified. At the genetic and phenotypic levels, the strains were distinct from each other and our analysis revealed natural trait variations of interest in relation to further exploitation in domestication programmes. A large number of genetic variations were identified among the strains, but no major differences in genome size were observed. Moreover, limited genetic structure was observed among these strains, which could be a consequence of the complex life history of species within the Isochrysidales. Our study provides new knowledge on the intra-species diversity that should be considered in future environmental studies and breeding programmes.
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黄藻的遗传和表型多样性揭示了黄藻原有的遗传结构和驯化潜力
海洋浮游植物物种通常由许多品系组成,种内多样性由遗传和表型变异组成。尽管它在生态和生物技术背景下的重要性,这种种内多样性和菌株之间的变异很少被研究。我们研究了微藻(isochrysis lutea)的种内多样性,这是一种等chrysidales目的触媒植物。由于该物种作为水产养殖饲料和生产抗氧化代谢物,特别是对健康有益的藻黄质和其他类胡萝卜素具有重要的经济意义,因此研究了黄豆的品系间多样性。我们分析了Tara Ocean数据集,发现T. lutea存在于太平洋、大西洋和印度洋,但不存在于北极或南大洋。接下来,我们从世界各地收集的藻类中对11株黄叶霉进行了表型和基因型比较。所有菌株在相同的控制条件下培养一周,并测定了几种表型性状,特别是抗氧化含量。同时,对每个菌株的基因组进行了测序,并确定了遗传变异。在遗传和表型水平上,这些品系彼此不同,我们的分析揭示了与驯化计划的进一步开发有关的自然性状变异。在菌株之间发现了大量的遗传变异,但没有观察到基因组大小的主要差异。此外,在这些菌株中观察到有限的遗传结构,这可能是等chrysidales内物种复杂生活史的结果。我们的研究提供了关于种内多样性的新知识,这应该在未来的环境研究和育种计划中加以考虑。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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