Hernández Márquez Sinuhé, Zamudio-Resendiz María Eugenia, Murrieta-Alarcón Montserrat, Núñez Resendiz María Luisa, Dreckmann Kurt M, Sentíes Abel
Doctorado en Ciencias Biológicas y de la Salud Universidad Autónoma Metropolitana Ciudad de Mexico Mexico.
Laboratorio de Fitoplancton Marino y Salobre, Departamento de Hidrobiología Universidad Autónoma Metropolitana Iztapalapa Mexico.
Ecol Evol. 2024 Sep 5;14(9):e70241. doi: 10.1002/ece3.70241. eCollection 2024 Sep.
The genus (Euglenophyceae/Euglenozoa) comprises unicellular organisms known for their photosynthetic capacity and significant role in marine ecosystems. This review highlights the taxonomic, ecological, and biotechnological characteristics of species, emphasizing their morphological and genomic adaptations. species exhibit high phenotypic plasticity, enabling adaptation to various environmental conditions, from nutrient-rich waters to high-salinity conditions. They play a crucial role in primary production and nutrient cycling in marine ecosystems. Genetic and transcriptomic studies have revealed their complex regulatory mechanisms and potential for biofuel and nutraceutical production. blooms significantly impact local ecosystems, influencing nutrient availability and community dynamics. Additionally, interactions with associated bacteria enhance their growth and metabolic capabilities. The genus shows substantial genetic variability, suggesting potential misidentifications or a polyphyletic nature. Further comprehensive studies are needed to clarify their taxonomy and evolutionary relationships. Understanding and managing populations is essential to leverage their biotechnological potential and ensure the health of marine ecosystems.
该属(裸藻纲/眼虫门)由单细胞生物组成,以其光合能力以及在海洋生态系统中的重要作用而闻名。本综述突出了该属物种的分类学、生态学和生物技术特征,强调了它们的形态和基因组适应性。该属物种表现出高度的表型可塑性,能够适应从富营养水域到高盐度条件等各种环境状况。它们在海洋生态系统的初级生产和营养循环中发挥着关键作用。遗传和转录组学研究揭示了它们复杂的调控机制以及生物燃料和营养保健品生产的潜力。该属水华对当地生态系统有重大影响,会影响养分有效性和群落动态。此外,与相关细菌的相互作用增强了它们的生长和代谢能力。该属显示出显著的遗传变异性,这表明可能存在错误鉴定或具有多系性质。需要进一步进行全面研究以阐明它们的分类学和进化关系。了解和管理该属种群对于发挥其生物技术潜力并确保海洋生态系统的健康至关重要。