首页> 外文期刊>Journal of phycology >Arrested development of giant kelp (Macrocystis pyrifera, Phaeophyceae) embryonic sporophytes: A mechanism for delayed recruitment in perennial kelps?
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Arrested development of giant kelp (Macrocystis pyrifera, Phaeophyceae) embryonic sporophytes: A mechanism for delayed recruitment in perennial kelps?

机译:巨型海带(Macrocystis pyrifera,Phaeophyceae)胚胎孢子体的发育受阻:一种延缓多年生海带募集的机制吗?

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Delayed recruitment of microscopic stages in response to cyclical cues is critical to the population dynamics of many annual and seasonally reproducing perennial seaweeds. Microscopic stages may play a similar role in continuously reproducing perennials in which adult sporophytes are subject to episodic mortality, if they can respond directly to the unpredictable onset and relaxation of unfavorable conditions. We experimentally evaluated the potential for temporary reduction in limiting resources (light, nutrients) to directly delay recruitment of giant kelp (Macrocystis pyrifera (L.) C.A. Agardh) gametophytes and embryonic sporophytes. Laboratory cultures were subjected to limiting conditions of light and nutrients for 1 month and then exposed to nonlimiting conditions for 10 days. Gametophytes in all treatments failed to recruit to sporophytes after 2 weeks, suggesting they are not a source of delayed recruitment in giant kelp. Sporophytes in light-limited treatments, however, survived and grew significantly slower than non-light-limited controls. When stimulated with light, light-limited sporophytes grew from 2 to>10 times faster than unstimulated controls depending on nutrient availability. These results suggest that limiting resources can delay recruitment of embryonic giant kelp sporophytes for at least 1 month. Flexible timing of recruitment from embryonic sporophytes may enhance persistence of continuously reproducing perennial species when mac- roscopic adults are subject to episodic large-scale removals. [References: 61]
机译:对周期性线索的响应,微观阶段的延迟募集对于许多一年生和季节性繁殖的多年生海藻的种群动态至关重要。微观阶段在连续繁殖多年生多年生植物的过程中可能发挥类似的作用,其中成年孢子体会遭受偶发性死亡,如果它们能够直接对不利条件的不可预测的发作和放松做出反应。我们通过实验评估了暂时减少限制资源(光,营养素)以直接延迟巨型海带(Macrocystis pyrifera(L.)C.A. Agardh)配子体和胚胎孢子体的募集的潜力。将实验室培养物置于光和营养的限制条件下1个月,然后暴露于非限制条件下10天。所有处理中的配子体在两周后都未能吸收到孢子体,这表明它们不是巨海藻延迟吸收的来源。但是,受光限制的处理中的孢子体比未受光限制的对照存活并生长得慢得多。当受光刺激时,取决于养分的可获得性,受光限制的孢子比未受刺激的对照的生长速度快2到10倍。这些结果表明,有限的资源可将胚胎巨型海带孢子体的募集至少延迟1个月。当宏观的成年动物遭受大规模大规模清除时,灵活地从胚胎孢子体募集的时间可能会增强持续繁殖多年生物种的持久性。 [参考:61]

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