Department of Biology, Emory University, O Wayne Rollins Research Center, 1510 E, Clifton Road NE, Atlanta, GA 30322, USA.
Genome Biol. 2010;11(2):R21. doi: 10.1186/gb-2010-11-2-r21. Epub 2010 Feb 23.
Recent genomic analyses of arthropod defense mechanisms suggest conservation of key elements underlying responses to pathogens, parasites and stresses. At the center of pathogen-induced immune responses are signaling pathways triggered by the recognition of fungal, bacterial and viral signatures. These pathways result in the production of response molecules, such as antimicrobial peptides and lysozymes, which degrade or destroy invaders. Using the recently sequenced genome of the pea aphid (Acyrthosiphon pisum), we conducted the first extensive annotation of the immune and stress gene repertoire of a hemipterous insect, which is phylogenetically distantly related to previously characterized insects models.
Strikingly, pea aphids appear to be missing genes present in insect genomes characterized to date and thought critical for recognition, signaling and killing of microbes. In line with results of gene annotation, experimental analyses designed to characterize immune response through the isolation of RNA transcripts and proteins from immune-challenged pea aphids uncovered few immune-related products. Gene expression studies, however, indicated some expression of immune and stress-related genes.
The absence of genes suspected to be essential for the insect immune response suggests that the traditional view of insect immunity may not be as broadly applicable as once thought. The limitations of the aphid immune system may be representative of a broad range of insects, or may be aphid specific. We suggest that several aspects of the aphid life style, such as their association with microbial symbionts, could facilitate survival without strong immune protection.
最近对节肢动物防御机制的基因组分析表明,对病原体、寄生虫和压力的反应所涉及的关键要素是保守的。病原体诱导的免疫反应的中心是由识别真菌、细菌和病毒特征引发的信号通路。这些途径导致产生反应分子,如抗菌肽和溶菌酶,它们降解或破坏入侵者。利用最近测序的豌豆蚜(Acyrthosiphon pisum)基因组,我们对半翅目昆虫的免疫和应激基因库进行了首次广泛注释,该昆虫与以前表征的昆虫模型在系统发育上有很远的关系。
引人注目的是,豌豆蚜似乎缺失了目前在昆虫基因组中发现的、被认为对识别、信号传递和杀死微生物至关重要的基因。与基因注释的结果一致,通过从免疫挑战的豌豆蚜中分离 RNA 转录物和蛋白质来表征免疫反应的实验分析发现很少有与免疫相关的产物。然而,基因表达研究表明一些免疫和应激相关基因的表达。
怀疑对昆虫免疫反应至关重要的基因的缺失表明,昆虫免疫的传统观点可能不如以前认为的那样广泛适用。蚜虫免疫系统的局限性可能代表了广泛的昆虫,也可能是蚜虫特有的。我们认为,蚜虫生活方式的几个方面,如它们与微生物共生体的联系,可能有助于在没有强大免疫保护的情况下生存。