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DMSP biosynthesis by an animal and its role in coral thermal stress response

机译:DMSP由动物生物合成及其在珊瑚热应激反应中的作用

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摘要

Globally, reef-building corals are the most prolific producers of dimethylsulphoniopropionate (DMSP)1, 2, a central molecule in the marine sulphur cycle and precursor of the climate-active gas dimethylsulphide3, 4. At present, DMSP production by corals is attributed entirely to their algal endosymbiont, Symbiodinium2. Combining chemical, genomic and molecular approaches, we show that coral juveniles produce DMSP in the absence of algal symbionts. DMSP levels increased up to 54% over time in newly settled coral juveniles lacking algal endosymbionts, and further increases, up to 76%, were recorded when juveniles were subjected to thermal stress. We uncovered coral orthologues of two algal genes recently identified in DMSP biosynthesis, strongly indicating that corals possess the enzymatic machinery necessary for DMSP production. Our results overturn the paradigm that photosynthetic organisms are the sole biological source of DMSP, and highlight the double jeopardy represented by worldwide declining coral cover, as the potential to alleviate thermal stress through coral-produced DMSP declines correspondingly.
机译:在全球范围内,造礁珊瑚是最多的二甲基磺酸丙酸二甲酯(DMSP)1、2(海洋硫循环的中心分子)和气候活性气体二甲基硫化物3、4的前体生产者。目前,珊瑚的DMSP生产完全归因于藻类共生菌Symbiodinium2。结合化学,基因组学和分子学方法,我们表明,在没有藻类共生体的情况下,珊瑚类幼鱼会产生DMSP。在没有藻类内共生子的新近定居的珊瑚中,DMSP水平随时间增加高达54%,当青少年受到热应激时,DMSP的水平进一步上升,高达76%。我们发现了最近在DMSP生物合成中发现的两个藻类基因的珊瑚直向同源物,强烈表明珊瑚具有生产DMSP所必需的酶机制。我们的结果推翻了光合生物是DMSP唯一生物来源的范式,并强调了全球珊瑚覆盖率下降所代表的双重危险,因为通过珊瑚生产的DMSP减轻热应力的潜力相应下降。

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