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混养甲藻等鞭金藻中猎物、低营养和低光照对吞噬作用的调控。

Regulation of Phagotrophy by Prey, Low Nutrients, and Low Light in the Mixotrophic Haptophyte Isochrysis galbana.

机构信息

Laboratory of Algal and Plant Physiology, Dipartimento di Scienze della Vita e dell'Ambiente, Università Politecnica delle Marche, via Brecce Bianche, 60131, Ancona, Italy.

University Institute of Water research, University of Granada, C/Ramón y Cajal, 4, 18071, Granada, Spain.

出版信息

Microb Ecol. 2021 Nov;82(4):981-993. doi: 10.1007/s00248-021-01723-w. Epub 2021 Mar 4.

Abstract

Mixotrophy combines autotrophy and phagotrophy in the same cell. However, it is not known to what extent the phagotrophy influences metabolism, cell composition, and growth. In this work, we assess, on the one hand (first test), the role of phagotrophy on the elemental and biochemical composition, cell metabolism, and enzymes related to C, N, and S metabolism of Isochrysis galbana Parke, 1949. On the other hand, we study how a predicted increase of phagotrophy under environmental conditions of low nutrients (second test) and low light (third test) can affect its metabolism and growth. Our results for the first test revealed that bacterivory increased the phosphorous and iron content per cell, accelerating cell division and improving the cell fitness; in addition, the stimulation of some C and N enzymatic routes help to maintain, to some degree, compositional homeostasis. Under nutrient or light scarcity, I. galbana grew more slowly despite greater bacterial consumption, and the activities of key enzymes involved in C, N, and S metabolism changed according to a predominantly phototrophic strategy of nutrition in this alga. Contrary to recent studies, the stimulation of phagotrophy under low nutrient and low irradiance did not imply greater and more efficient C flux.

摘要

混养在同一细胞中结合了自养和吞噬作用。然而,吞噬作用对代谢、细胞组成和生长的影响程度尚不清楚。在这项工作中,我们一方面(第一次测试)评估了吞噬作用对元素和生物化学组成、细胞代谢以及与 C、N 和 S 代谢相关的酶的影响,这些影响与 Isochrysis galbana Parke,1949 有关。另一方面,我们研究了在低营养(第二次测试)和低光(第三次测试)环境条件下吞噬作用的预测增加将如何影响其代谢和生长。我们第一次测试的结果表明,细菌吞噬作用增加了每个细胞的磷和铁含量,加速了细胞分裂并提高了细胞适应性;此外,一些 C 和 N 酶途径的刺激有助于在一定程度上维持组成稳态。在营养或光照不足的情况下,尽管细菌消耗增加,I. galbana 的生长速度较慢,并且与 C、N 和 S 代谢相关的关键酶的活性根据藻类中营养的主要光养策略发生了变化。与最近的研究相反,在低营养和低光照下吞噬作用的刺激并不意味着 C 通量更大和更有效。

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