National Key Laboratory for Germplasm Innovation & Utilization of Horticultural Crops, Huazhong Agricultural University, Wuhan, 430070, China.
Institute of Plant Protection & Soil Science, Hubei Academy of Agricultural Sciences, Wuhan, 430070, China.
New Phytol. 2024 Dec;244(5):2036-2048. doi: 10.1111/nph.20060. Epub 2024 Aug 28.
Recent studies show that nocturnal pollinators may be more important to ecosystem function and food production than is currently appreciated. Here, we describe an agricultural field study of pyrethrum (Tanacetum cinerariifolium) flower pollination. Pyrethrum is genetically self-incompatible and thus is reliant on pollinators for seed set. Our pollinator exclusion experiment showed that nocturnal insects, particularly moths, significantly contribute to seed set and quality. We discovered that the most abundant floral volatile, the sesquiterpene (-)-germacrene D (GD), is key in attracting the noctuid moths Peridroma saucia and Helicoverpa armigera. Germacrene D synthase (GDS) gene expression regulates the specific GD production and accumulation in flowers, which, in contrast to related species, lose the habit of closing at night. We did observe that female moths also oviposited on pyrethrum leaves and flower peduncles, but found that only a small fraction of those eggs hatched. Larvae were severely stunted in development, most likely due to the presence of pyrethrin defense compounds. This example of exploitative mutualism, which blocks the reproductive success of the moth pollinator and depends on nocturnal interactions, is placed into an ecological context to explain why it may have developed.
最近的研究表明,夜间传粉者对生态系统功能和粮食生产的重要性可能比目前人们所认识到的更为重要。在这里,我们描述了一项对除虫菊(Tanacetum cinerariifolium)花传粉的农业田间研究。除虫菊是遗传上自交不亲和的,因此依赖传粉者来结实。我们的传粉者排除实验表明,夜间昆虫,特别是飞蛾,对结实和质量有重要贡献。我们发现,最丰富的花挥发性物质,倍半萜烯(-)-大根香叶烯 D(GD),是吸引夜蛾 Peridroma saucia 和 Helicoverpa armigera 的关键。大根香叶烯合酶(GDS)基因表达调节花中 GD 的特定产生和积累,与相关物种不同,它失去了夜间关闭的习惯。我们确实观察到雌性飞蛾也在除虫菊的叶子和花梗上产卵,但发现只有一小部分卵孵化。幼虫的发育严重受阻,很可能是由于除虫菊素防御化合物的存在。这种剥削性互惠关系的例子,阻止了飞蛾传粉者的繁殖成功,并依赖于夜间的相互作用,将其置于生态背景下解释为什么它可能已经发展起来。