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首页> 外文期刊>Biogeosciences >Photosynthate translocation increases in response to low seawater pH in a coral-dinoflagellate symbiosis
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Photosynthate translocation increases in response to low seawater pH in a coral-dinoflagellate symbiosis

机译:在珊瑚-鞭毛虫共生中,由于海水pH低,光合产物的转运增加

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摘要

This study has examined the effect of low seawater pH values (induced by an increased CO_2 partial pressure) on the rates of photosynthesis, as well as on the carbon budget and carbon translocation in the scleractinian coral species Stylophora pistillata, using a new model based on 13C labelling of the photosynthetic products. Symbiont photosynthesis contributes to a large part of the carbon acquisition in tropical coral species, and it is thus important to know how environmental changes affect this carbon acquisition and allocation. For this purpose, nubbins of S. pistillata were maintained for six months at two pHT s (8.1 and 7.2, by bubbling seawater with CO_2). The lowest pH value was used to tackle how seawater pH impacts the carbon budget of a scleractinian coral. Rates of photosynthesis and respiration of the symbiotic association and of isolated symbionts were assessed at each pH. The fate of ~(13)C photosynthates was then followed in the symbionts and the coral host for 48 h. Nubbins maintained at pHT 7.2 presented a lower areal symbiont concentration, and lower areal rates of gross photosynthesis and carbon incorporation compared to nubbins maintained at pHT 8.1. The total carbon acquisition was thus lower under low pH. However, the total percentage of carbon translocated to the host as well as the amount of carbon translocated per symbiont cell were significantly higher under pHT 7.2 than under pHT 8.1 (70% at pHT 7.2 vs. 60% at pHT 8.1), such that the total amount of photosynthetic carbon received by the coral host was equivalent under both pHs (5.5 to 6.1 μg C cm~(-2) h~(-1)). Although the carbon budget of the host was unchanged, symbionts acquired less carbon for their own needs (0.6 compared to 1.8 μg C cm~(-2) h~(-1)), explaining the overall decrease in symbiont concentration at low pH. In the long term, such decrease in symbiont concentration might severely affect the carbon budget of the symbiotic association.
机译:这项研究使用了一种新的模型,研究了低海水pH值(由CO_2分压增加引起的)对光合作用速率以及对Scleractinian珊瑚物种Stylophora pistillata的碳收支和碳转运的影响。光合产品的13C标签。共生生物的光合作用在热带珊瑚物种的碳吸收中占很大一部分,因此了解环境变化如何影响碳的吸收和分配非常重要。为此,将S. pistillata的核蛋白在两个pHT时(8.1和7.2,通过用CO_2鼓泡海水)保持六个月。使用最低的pH值来解决海水pH值如何影响巩膜珊瑚的碳收支。在每个pH下评估共生缔合体和分离的共生体的光合作用和呼吸速率。然后,在共生体和珊瑚宿主中追踪〜(13)C光合产物的命运48小时。维持在pHT 7.2的核仁比维持在pHT 8.1的核仁呈现出较低的共生菌浓度,以及较低的总光合作用和碳掺入率。因此,在低pH值下总碳捕获量较低。但是,在pHT 7.2下,转运到宿主的碳的总百分比以及每个共生细胞的转运碳的量显着高于pHT 8.1(在pHT 7.2时为70%,而在pHT 8.1时为60%),因此在两个pH值下(5.5至6.1μgC cm〜(-2)h〜(-1)),珊瑚宿主接受的光合碳总量是相等的。尽管宿主的碳收支没有变化,共生体为满足自己的需要而获得的碳较少(0.6比1.8μgC cm〜(-2)h〜(-1)少),这说明了低pH下共生体浓度的总体下降。从长远来看,这种共生体浓度的下降可能会严重影响共生协会的碳收支。

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