State Key Laboratory of Integrated Management of Pest Insects and Rodents, Institute of Zoology, Chinese Academy of Sciences, Beijing, China.
PLoS Genet. 2011 Feb 3;7(2):e1001291. doi: 10.1371/journal.pgen.1001291.
Behavioral plasticity is the most striking trait in locust phase transition. However, the genetic basis for behavioral plasticity in locusts is largely unknown. To unravel the molecular mechanisms underlying the behavioral phase change in the migratory locust Locusta migratoria, the gene expression patterns over the time courses of solitarization and gregarization were compared by oligonucleotide microarray analysis. Data analysis revealed that several gene categories relevant to peripheral olfactory perception are strongly regulated in a total of 1,444 differentially expressed genes during both time courses. Among these candidate genes, several CSP (chemosensory protein) genes and one takeout gene, LmigTO1, showed higher expression in gregarious and solitarious locusts, respectively, and displayed opposite expression trends during solitarization and gregarization. qRT-PCR experiments revealed that most CSP members and LmigTO1 exhibited antenna-rich expressions. RNA interference combined with olfactory behavioral experiments confirmed that the CSP gene family and one takeout gene, LmigTO1, are involved in the shift from repulsion to attraction between individuals during gregarization and in the reverse transition during solitarization. These findings suggest that the response to locust-emitted olfactory cues regulated by CSP and takeout genes is involved in the behavioral phase change in the migratory locust and provide a previously undescribed molecular mechanism linked to the formation of locust aggregations.
行为可塑性是蝗虫阶段转变中最显著的特征。然而,蝗虫行为可塑性的遗传基础在很大程度上仍是未知的。为了揭示迁移性蝗虫 Locusta migratoria 行为阶段变化的分子机制,通过寡核苷酸微阵列分析比较了孤雌生殖和群居化过程中的时间过程中的基因表达模式。数据分析显示,在总共 1444 个差异表达基因中,有几个与外围嗅觉感知相关的基因类别在两个时间过程中受到强烈调控。在这些候选基因中,几个 CSP(化学感觉蛋白)基因和一个取出基因 LmigTO1 在群居和独居蝗虫中分别表现出更高的表达水平,并且在孤雌生殖和群居化过程中表现出相反的表达趋势。qRT-PCR 实验显示,大多数 CSP 成员和 LmigTO1 表现出触角丰富的表达。RNA 干扰结合嗅觉行为实验证实,CSP 基因家族和一个取出基因 LmigTO1 参与了群居化过程中个体之间从排斥到吸引的转变,以及在孤雌生殖过程中的反向转变。这些发现表明,CSP 和取出基因调控的对蝗虫释放的嗅觉线索的反应参与了迁移性蝗虫的行为阶段变化,并提供了一个以前未描述的与蝗虫聚集形成相关的分子机制。