Singh Shailendra P, Montgomery Beronda L
Department of Energy-Plant Research Laboratory; Michigan State University; East Lansing, MI USA.
Commun Integr Biol. 2011 Sep;4(5):503-10. doi: 10.4161/cib.4.5.16788. Epub 2011 Sep 1.
A temporal study was conducted to evaluate the dynamic complementary chromatic adaptation (CCA) response of two Fremyella diplosiphon strains-wild-type pigmentation strain SF33 and an RcaE-deficient (ΔrcaE) strain, which lacks the photosensor that regulates CCA. SF33 and ΔrcaE cultures were monitored for 15 days after transition of green-light (GL) acclimated cultures to red light (RL) and vice versa. SF33 showed similar growth irrespective of the external light quality; however, a ΔrcaE strain grew slower than SF33 under both RL and GL. Chlorophyll a (chla) content increased in both strains over time and was not much different under RL and GL indicating that chla biosynthesis is not affected significantly by light quality or RcaE function. Phycoerythrin is the sole pigment to absorb GL, whereas several pigments, i.e., allophycocyanin, phycocyanin and chla, function under RL to drive photosynthesis. SF33 compensates for this by synthesizing a higher percentage of PE under GL. The final pigment distribution in the ΔrcaE mutant was found to be more different from SF33 under GL than under RL indicating that RcaE is needed for a transitional response to RL and RL-dependent repression of PE accumulation, yet RcaE is virtually critical for both transitioning to and a full adaptation to GL.
进行了一项时间研究,以评估两种双色 Fremyella diplosiphon 菌株——野生型色素沉着菌株 SF33 和 RcaE 缺陷型(ΔrcaE)菌株的动态互补色适应(CCA)反应,后者缺乏调节 CCA 的光传感器。在绿光(GL)适应的培养物转换为红光(RL)以及反之亦然后,对 SF33 和 ΔrcaE 培养物进行了 15 天的监测。无论外部光质如何,SF33 都表现出相似的生长;然而,ΔrcaE 菌株在 RL 和 GL 条件下的生长都比 SF33 慢。随着时间的推移,两种菌株中的叶绿素 a(chla)含量均增加,并且在 RL 和 GL 条件下差异不大,这表明 chla 的生物合成不受光质或 RcaE 功能的显著影响。藻红蛋白是唯一吸收 GL 的色素,而几种色素,即别藻蓝蛋白、藻蓝蛋白和 chla,在 RL 条件下起作用以驱动光合作用。SF33 通过在 GL 条件下合成更高百分比的 PE 来对此进行补偿。发现在 GL 条件下,ΔrcaE 突变体中的最终色素分布与 SF33 的差异比在 RL 条件下更大,这表明 RcaE 对于对 RL 的过渡反应和 RL 依赖性的 PE 积累抑制是必需的,然而 RcaE 对于向 GL 的转变和对 GL 的完全适应实际上都是至关重要的。