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Combined Effects of CO2 and Light on the N2-Fixing Cyanobacterium Trichodesmium IMS101: Physiological Responses

机译:二氧化碳和光对N2固定型蓝藻IMS101的综合影响:生理反应

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摘要

Recent studies on the diazotrophic cyanobacterium Trichodesmium erythraeum (IMS101) showed that increasing CO2 partial pressure (pCO2) enhances N2 fixation and growth. Significant uncertainties remain as to the degree of the sensitivity to pCO2, its modification by other environmental factors, and underlying processes causing these responses. To address these questions, we examined the responses of Trichodesmium IMS101 grown under a matrix of low and high levels of pCO2 (150 and 900 μatm) and irradiance (50 and 200 μmol photons m−2 s−1). Growth rates as well as cellular carbon and nitrogen contents increased with increasing pCO2 and light levels in the cultures. The pCO2-dependent stimulation in organic carbon and nitrogen production was highest under low light. High pCO2 stimulated rates of N2 fixation and prolonged the duration, while high light affected maximum rates only. Gross photosynthesis increased with light but did not change with pCO2. HCO3 was identified as the predominant carbon source taken up in all treatments. Inorganic carbon uptake increased with light, but only gross CO2 uptake was enhanced under high pCO2. A comparison between carbon fluxes in vivo and those derived from 13C fractionation indicates high internal carbon cycling, especially in the low-pCO2 treatment under high light. Light-dependent oxygen uptake was only detected under low pCO2 combined with high light or when low-light-acclimated cells were exposed to high light, indicating that the Mehler reaction functions also as a photoprotective mechanism in Trichodesmium. Our data confirm the pronounced pCO2 effect on N2 fixation and growth in Trichodesmium and further show a strong modulation of these effects by light intensity. We attribute these responses to changes in the allocation of photosynthetic energy between carbon acquisition and the assimilation of carbon and nitrogen under elevated pCO2. These findings are supported by a complementary study looking at photosynthetic fluorescence parameters of photosystem II, photosynthetic unit stoichiometry (photosystem I:photosystem II), and pool sizes of key proteins in carbon and nitrogen acquisition.
机译:最近对重氮营养性蓝细菌Trichodesmium erythraeum(IMS101)的研究表明,增加CO2分压(pCO2)会增强N2的固定和生长。关于对pCO2的敏感性程度,其受其他环境因素的影响以及引起这些反应的潜在过程,仍存在重大不确定性。为了解决这些问题,我们研究了在低水平和高水平pCO2(150和900μatm)和辐照度(50和200μmol光子m −2 s −1 )。随着培养物中pCO2和光照水平的提高,生长速率以及细胞碳和氮含量也随之增加。在弱光条件下,有机碳和氮产生中pCO2依赖性刺激最高。高pCO2刺激N2固定速率并延长持续时间,而高光照仅影响最大速率。总体光合作用随光增加,但不随pCO2改变。 HCO3 -被确定为所有处理中所吸收的主要碳源。光照增加了无机碳的吸收,但是在高pCO2下仅增加了总的CO2吸收。体内的碳通量与 13 C分馏的碳通量之间的比较表明,内部碳循环较高,尤其是在高光下进行低pCO2处理时。仅在低pCO2结合强光下或当适应弱光的细胞暴露于强光下才能检测到光依赖性氧气的吸收,这表明Mehler反应在Trichodesmium中也起着光保护机制的作用。我们的数据证实了pCO2对Trichodesmium中N 2 固定和生长的显着影响,并进一步显示了光强度对这些影响的强烈调节。我们将这些响应归因于在pCO 2 升高下碳获取与碳氮吸收之间光合作用能量分配的变化。这些发现得到了补充研究的支持,这些研究研究了光系统II的光合荧光参数,光合单位化学计量(光系统I:光系统II)以及碳和氮获取中关键蛋白质的库大小。

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