首页> 外文期刊>Journal of Experimental Botany >Phagotrophy in the origins of photosynthesis in eukaryotes and as a complementary mode of nutrition in phototrophs: relation to Darwin's insectivorous plants.
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Phagotrophy in the origins of photosynthesis in eukaryotes and as a complementary mode of nutrition in phototrophs: relation to Darwin's insectivorous plants.

机译:真核生物中光合作用起源中的营养失养和光养生物中营养的补充方式:与达尔文的食虫植物有关。

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摘要

Darwin performed innovative observational and experimental work on the apparently paradoxical occurrence of carnivory in photosynthetic flowering plants. The nutritional use of particulate organic material which also supplies other elements is now known to be widespread in free-living algae as well as in organisms with endosymbiotic algae and with kleptoplastids. In addition to this direct nutritional role, phagotrophy, in the broad sense of internalization of photosynthetic organisms by a eukaryote, is essential for the occurrence of present-day endosymbiotic algae and kleptoplastid-containing protists, and was essential for the origin of plastids themselves. The endosymbiotic phenomena involving photosynthetic organisms clearly played a major role in combining genomes providing different metabolic functions, but, in our opinion, this does not demand a re-appraisal of evolution by natural selection. That the balance of physiological optimization for competition for resources and minimization of losses (e.g. through predation) is a fine one, and thus subject to a complex selective process, is illustrated by the diversity of mixotrophic strategies in extant phytoplankton.
机译:达尔文针对光合开花植物中食肉动物的明显矛盾进行了创新的观察和实验工作。现已知道,还提供其他元素的颗粒有机物质的营养用途广泛存在于自由活动藻类以及具有内共生藻类和促幼体激素的生物中。除了这种直接的营养作用外,在真核生物光合作用内在化的广义意义上,吞噬营养对于当今内生共生藻类和内含促幼体的原生生物的发生是必不可少的,对于质体本身的起源也是必不可少的。涉及光合生物的共生共生现象显然在组合提供不同代谢功能的基因组中起了主要作用,但是,在我们看来,这不需要通过自然选择来重新评估进化。现有浮游植物的混合营养策略的多样性说明,为争夺资源和减少损失(例如通过捕食)而进行的生理优化之间的平衡是一个很好的选择,因此要经历一个复杂的选择过程。

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