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On reproduction in red algae: further research needed at the molecular level

机译:关于红藻的繁殖:需要在分子水平上做进一步的研究

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Multicellular red algae (Rhodophyta) have some of the most complex life cycles known in living organisms. Economically valuable seaweeds, such as phycocolloid producers, have a triphasic (gametophyte, carposporophyte, and tetrasporophyte) life cycle, not to mention the intricate alternation of generations in the edible “sushi-alga” nori. It is a well-known fact that reproductive processes are controlled by one or more abiotic factor(s), including day length, light quality, temperature, and nutrients. Likewise, endogenous chemical factors such as plant growth regulators have been reported to affect reproductive events in some red seaweeds. Still, in the genomic era and given the high throughput techniques at our disposal, our knowledge about the endogenous molecular machinery lags far behind that of higher plants. Any potential effective control of the reproductive process will entail revisiting most of these results and facts to answer basic biological questions as yet unresolved. Recent results have shed light on the involvement of several genes in red alga reproductive events. In addition, a working species characterized by a simple filamentous architecture, easy cultivation, and accessible genomes may also facilitate our task.
机译:多细胞红藻(Rhodophyta)具有生命有机体中某些最复杂的生命周期。具有经济价值的海藻,例如类藻胶体生产者,具有三生(配子体,Carposporophyte和tetrasporophyte)的生命周期,更不用说可食用“ sushi-alga”紫菜中世代的错综复杂了。众所周知的事实是,生殖过程受一种或多种非生物因素(包括日长,光照质量,温度和营养素)控制。同样,据报道内源性化学因素(例如植物生长调节剂)会影响某些红海藻的繁殖事件。尽管如此,在基因组时代,鉴于我们掌握的高通量技术,我们对内源性分子机制的了解远远落后于高等植物。任何对生殖过程的潜在有效控制都将需要重新审视大多数这些结果和事实,以回答尚未解决的基本生物学问题。最近的结果揭示了一些基因参与红藻繁殖事件。此外,以简单的丝状结构,易于培养和可访问的基因组为特征的工作物种也可能有助于我们的工作。

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