Mix Lucas J, Harmer Tara L, Cavanaugh Colleen M
Department of Organismic and Evolutionary Biology, Harvard University, Cambridge, MA 02138, USA.
Curr Microbiol. 2004 Jun;48(6):438-40. doi: 10.1007/s00284-003-4221-3.
Broad variation among anoxygenic reaction centers makes it essential to consider a wide variety when considering the origins of photosynthesis. The photosynthetic core antenna domain in the gene pshA from Heliophilum fasciatum was sequenced doubling the number of core sequences available from heliobacteria. The sequence shares a pattern of hydrophobicity and histidine residues with the core antenna domain of pshA from Heliobacillus mobilis. Sequence identity between the two pshA sequences was 68%, indicating heliobacterial reaction centers show similar diversity to photosystem I throughout cyanobacteria and plastids. Thus, the diversity of anoxygenic phototrophic reaction centers may be greater than previously thought.
无氧反应中心之间存在广泛差异,这使得在考虑光合作用起源时必须考虑多种类型。对来自条纹嗜光菌(Heliophilum fasciatum)的基因pshA中的光合核心天线结构域进行了测序,使来自嗜光细菌的核心序列数量增加了一倍。该序列与运动嗜光杆菌(Heliobacillus mobilis)的pshA核心天线结构域具有疏水性和组氨酸残基模式。两个pshA序列之间的序列同一性为68%,表明嗜光细菌反应中心与整个蓝细菌和质体中的光系统I具有相似的多样性。因此,无氧光合反应中心的多样性可能比以前认为的更大。