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Insights on the genetic repertoire of the coral Mussismilia braziliensis endosymbiont Symbiodinium

机译:关于珊瑚Mussisticilia Braziliensis indosymbiont symbiodinium的遗传曲目的见解

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摘要

Reef-building corals form a symbiotic association with photosynthetic dinoflagellates of the family Symbiodiniaceae. This symbiosis is crucial for the maintenance of coral reefs. In this work, we evaluate the effect of light conditions on the transcriptomic response of Symbiodinium CCMR0100 (ITS2 type A4), isolated from the Southwestern Atlantic Ocean endemic Mussismilia braziliensis. We obtained a total of 36,224 transcripts (N50 = 1007 bases, mean GC = 55.7%; similar to 25 Gb of assembled bases). We observed ecologically relevant transcripts encoding i. the complete antioxidant enzymatic system, ii. the recently described algal dimethylsulfoniopropionate (DMSP) lyase, and iii. The Mycosporine-like aminoacids (MAA) biosynthesis pathway. Cultures maintained in dark and light conditions yielded different transcriptomic profiles, and 48 transcripts were differentially expressed between these treatments. Expression of cytochrome P450 was inhibited by light, suggesting that endoplasmic reticulum monooxygenase activity might play a role in light-independent coral bleaching. Light conditions also triggered the induction of transcripts associated to chromatin condensation and mitosis, consistent with the light dependent progression of Symbiodiniaceae cell cycle. The repression of transcripts associated to the phosphatidylinositol (PI) signaling pathwaysuggests this pathway shall be related to light-induced morphological changes in Symbiodiniaceae cell.
机译:Reef-Building珊瑚形成了与家庭Symbiodiniaceae的光合丁胺酸盐的共生关联。这种共生对于维持珊瑚礁至关重要。在这项工作中,我们评估了光条件对Symbiodinium CCMR0100(ITS2型A4)的转录组响应的影响,从西南大西洋特有莫塞利亚巴西人分离。我们获得了总共36,224个转录物(N50 = 1007个碱基,平均GC = 55.7%;类似于25 GB的组装碱)。我们观察到了编码I的生态相关转录物。完全抗氧化酶系统,II。最近描述的藻类二甲基磺基丙酸(DMSP)裂解酶和III。肌孢子素样氨基酸(MAA)生物合成途径。保持在黑暗和光线条件下的培养物产生了不同的转录组曲线,并且在这些处理之间差异表达了48个转录物。通过光抑制细胞色素P450的表达,表明内质网单氧化酶活性可能在轻微的珊瑚漂白中发挥作用。光照条件也引发了与染色质缩合和有丝分裂相关的转录物的诱导,与Symbiodiniaceae细胞周期的光依赖性进展一致。抑制与磷脂酰肌醇(PI)信号传导的转录物抑制该途径的转录物应与Symbiodiniaceae细胞的光诱导的形态变化有关。

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  • 来源
    《Symbiosis》 |2020年第2期|共11页
  • 作者单位

    Univ Fed Rio de Janeiro Inst Biol Microbiol Lab CCS Ave Carlos Chagas Filho 373 Sala A3-202 BR-21941599 Rio De Janeiro Brazil;

    Univ Fed Rio de Janeiro Inst Biol Microbiol Lab CCS Ave Carlos Chagas Filho 373 Sala A3-202 BR-21941599 Rio De Janeiro Brazil;

    Univ Fed Rio de Janeiro Inst Biol Microbiol Lab CCS Ave Carlos Chagas Filho 373 Sala A3-202 BR-21941599 Rio De Janeiro Brazil;

    Univ Fed Rio de Janeiro Inst Biol Microbiol Lab CCS Ave Carlos Chagas Filho 373 Sala A3-202 BR-21941599 Rio De Janeiro Brazil;

    Singapore MIT Alliance Res &

    Technol Ctr Environm Sensing &

    Modeling Singapore Singapore;

    Penn State Univ Mueller Lab 324 University Pk PA 16802 USA;

    Univ Fed Rio de Janeiro Inst Biol Microbiol Lab CCS Ave Carlos Chagas Filho 373 Sala A3-202 BR-21941599 Rio De Janeiro Brazil;

    Univ Fed Rio de Janeiro Inst Biol Microbiol Lab CCS Ave Carlos Chagas Filho 373 Sala A3-202 BR-21941599 Rio De Janeiro Brazil;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 Q143.2;
  • 关键词

    Symbiodiniaceae; Symbiodinium; Transcriptome; Mycosporine-like aminoacids (MAA); Differential expression;

    机译:symbidiniaceae;symbiodinium;转录组;肌孢子样氨基酸(Maa);差异表达;

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