Lee G, Villella A, Taylor B J, Hall J C
Department of Biology, Brandeis University, Waltham, Massachusetts 02454, USA.
J Neurobiol. 2001 May;47(2):121-49. doi: 10.1002/neu.1021.
Several features of male reproductive behavior are under the neural control of fruitless (fru) in Drosophila melanogaster. This gene is known to influence courtship steps prior to mating, due to the absence of attempted copulation in the behavioral repertoire of most types of fru-mutant males. However, certain combinations of fru mutations allow for fertility. By analyzing such matings and their consequences, we uncovered two striking defects: mating times up to four times the normal average duration of copulation; and frequent infertility, regardless of the time of mating by a given transheterozygous fru-mutant male. The lengthened copulation times may be connected with fru-induced defects in the formation of a male-specific abdominal muscle. Production of sperm and certain seminal fluid proteins are normal in these fru mutants. However, analysis of postmating qualities of females that copulated with transheterozygous mutants strongly implied defects in the ability of these males to transfer sperm and seminal fluids. Such abnormalities may be associated with certain serotonergic neurons in the abdominal ganglion in which production of 5HT is regulated by fru. These cells send processes to contractile muscles of the male's internal sex organs; such projection patterns are aberrant in the semifertile fru mutants. Therefore, the reproductive functions regulated by fruitless are expanded in their scope, encompassing not only the earliest stages of courtship behavior along with almost all subsequent steps in the behavioral sequence, but also more than one component of the culminating events.
果蝇雄性生殖行为的几个特征受无果(fru)基因的神经控制。已知该基因会影响交配前的求偶步骤,因为在大多数类型的fru突变雄性果蝇的行为模式中,不存在试图交配的行为。然而,某些fru突变的组合可实现生育能力。通过分析此类交配及其结果,我们发现了两个显著缺陷:交配时间长达正常平均交配持续时间的四倍;频繁出现不育,无论给定的反式杂合fru突变雄性果蝇何时交配。交配时间延长可能与fru诱导的雄性特异性腹肌形成缺陷有关。这些fru突变体中精子和某些精液蛋白的产生是正常的。然而,对与反式杂合突变体交配的雌性果蝇交配后质量的分析强烈表明,这些雄性果蝇在输送精子和精液的能力方面存在缺陷。此类异常可能与腹神经节中的某些5-羟色胺能神经元有关,其中5-羟色胺(5HT)的产生受fru调节。这些细胞发出突起连接到雄性内生殖器的收缩肌;在半可育的fru突变体中,这种投射模式是异常的。因此,由无果基因调节的生殖功能范围得到了扩展,不仅包括求偶行为的最早阶段以及行为序列中几乎所有后续步骤,还包括最终事件的多个组成部分。