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性欺骗传粉——这需要化学物质才能发挥作用。

Pollination by sexual deception-it takes chemistry to work.

机构信息

Research School of Chemistry, The Australian National University, Acton, ACT 2601, Australia; Research School of Biology, The Australian National University, Acton, ACT 2601, Australia; School of Chemistry and Biochemistry, The University of Western Australia, Crawley, WA 6009, Australia.

School of Chemistry and Biochemistry, The University of Western Australia, Crawley, WA 6009, Australia.

出版信息

Curr Opin Plant Biol. 2016 Aug;32:37-46. doi: 10.1016/j.pbi.2016.06.004. Epub 2016 Jun 29.

Abstract

Semiochemicals are of paramount importance in sexually deceptive plants. These plants sexually lure specific male insects as pollinators by chemical and physical mimicry of the female of the pollinator. The strategy has evolved repeatedly in orchids, with a wide diversity of insect groups exploited. Chemical communication systems confirmed by field bioassays include: alkenes and alkanes in bee pollinated Ophrys species, keto-acid and hydroxy-acids in scoliid wasp pollinated O. speculum, and cyclohexanediones and pyrazines in thynnine wasp pollinated Chiloglottis and Drakaea orchids, respectively. In Ophrys, stearoyl-acyl carrier protein desaturase (SAD) enzymes have been confirmed to control species level variation in alkene double bond position. The production of cyclohexanediones in Chiloglottis unexpectedly depends on UVB light, a phenomenon unknown for other plant specialised metabolites. Potential biosynthetic pathways for other systems are explored, and alternative approaches to further accelerate chemical discovery in sexually deceptive plants are proposed.

摘要

化学生态学物质在有性欺骗的植物中至关重要。这些植物通过对传粉者雌性的化学和物理模拟,来吸引特定的雄性昆虫作为传粉者。这种策略在兰花中反复进化,涉及到广泛的昆虫类群的利用。通过野外生物测定证实的化学通讯系统包括:蜜蜂传粉的 Ophrys 物种中的烯烃和烷烃、鞘翅目黄蜂传粉的 O. speculum 中的酮酸和羟基酸,以及 thynnine 黄蜂传粉的 Chiloglottis 和 Drakaea 兰花中的环己二酮和吡嗪。在 Ophrys 中,已经证实硬脂酰-酰基载体蛋白去饱和酶 (SAD) 酶控制烯烃双键位置的种间变异。令人惊讶的是,Chiloglottis 中环己二酮的产生依赖于 UVB 光,这是其他植物特殊代谢物中未知的现象。探讨了其他系统的潜在生物合成途径,并提出了加速有性欺骗植物中化学发现的替代方法。

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