Certel Sarah J, Savella Mary Grace, Schlegel Dana C F, Kravitz Edward A
Department of Neurobiology, Harvard Medical School, 220 Longwood Avenue, Boston, MA 02115, USA.
Proc Natl Acad Sci U S A. 2007 Mar 13;104(11):4706-11. doi: 10.1073/pnas.0700328104. Epub 2007 Mar 5.
The reproductive and defensive behaviors that are initiated in response to specific sensory cues can provide insight into how choices are made between different social behaviors. We manipulated both the activity and sex of a subset of neurons and found significant changes in male social behavior. Results from aggression assays indicate that the neuromodulator octopamine (OCT) is necessary for Drosophila males to coordinate sensory cue information presented by a second male and respond with the appropriate behavior: aggression rather than courtship. In competitive male courtship assays, males with no OCT or with low OCT levels do not adapt to changing sensory cues and court both males and females. We identified a small subset of neurons in the suboesophageal ganglion region of the adult male brain that coexpress OCT and male forms of the neural sex determination factor, Fruitless (Fru(M)). A single Fru(M)-positive OCT neuron sends extensive bilateral arborizations to the suboesophageal ganglion, the lateral accessory lobe, and possibly the posterior antennal lobe, suggesting a mechanism for integrating multiple sensory modalities. Furthermore, eliminating the expression of Fru(M) by transformer expression in OCT/tyramine neurons changes the aggression versus courtship response behavior. These results provide insight into how complex social behaviors are coordinated in the nervous system and suggest a role for neuromodulators in the functioning of male-specific circuitry relating to behavioral choice.
针对特定感官线索引发的生殖和防御行为,能够为探究在不同社会行为之间如何做出选择提供线索。我们对一部分神经元的活性和性别进行了操控,发现雄性社会行为出现了显著变化。攻击试验的结果表明,神经调质章鱼胺(OCT)对于果蝇雄性协调由另一只雄性呈现的感官线索信息并以适当行为做出反应(即攻击而非求偶)而言是必需的。在竞争性雄性求偶试验中,没有章鱼胺或章鱼胺水平较低的雄性无法适应不断变化的感官线索,会对雄性和雌性都进行求偶。我们在成年雄性果蝇大脑的咽下神经节区域中鉴定出一小部分共同表达章鱼胺和神经性别决定因子雄性形式无果(Fru(M))的神经元。单个Fru(M)阳性章鱼胺神经元向咽下神经节、外侧副叶以及可能向后触角叶发出广泛的双侧分支,这提示了一种整合多种感觉模态的机制。此外,通过在OCT/酪胺能神经元中表达transformer来消除Fru(M)的表达,会改变攻击与求偶反应行为。这些结果为复杂社会行为在神经系统中如何协调提供了见解,并表明神经调质在与行为选择相关的雄性特异性神经回路功能中发挥作用。