雌雄异株三角榕复合体传粉者特异性分解的化学介质

IF 1.2 3区 农林科学 Q3 ENTOMOLOGY Arthropod-Plant Interactions Pub Date : 2025-01-02 DOI:10.1007/s11829-024-10113-1
Nur ‘Aliyaa Nizam, Nur Badrina Mohammad Naser, Indah Nilam Sari Yahaya, Reena Abd Rashid, Noraini Kasim, Nur Fatihah Hasan Nudin, Siti Khairiyah Mohd Hatta
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引用次数: 0

摘要

无花果(Ficus)与其传粉者榕小蜂(Agaonidae)的特异性相互作用是通过嗅觉信号与形态共适应相结合来维持的。三角榕(Ficus deltoidea complex)是一种雌雄异株无花果树,定期由无花果黄蜂Blastophaga spp授粉。该综合体包括13个品种,其中7个原产于马来西亚半岛。分类完全依赖于叶片特征,而不考虑跨同域分类群的基因流动。此外,不同品种是否支持不同的榕蜂传粉媒介,或者这些品种的受感期无花果发出的花香在多大程度上不同,仍未得到探索。在UniSZA种质资源中,通过将trengganuensis变种的供体雄树置于其他变种的周围,研究了该变种的Blastophaga sp.的寄主特异性。为了了解无花果黄蜂进入的品种与接收无花果释放的挥发性气味化合物(VOC)之间的相关性,采用顶空固相微萃取和气相色谱-质谱分析。当来自trengganuensis变种的Blastophaga sp.进入另一个品种(变种kunstleri)时,无花果和无花果黄蜂共生关系中的一对一特异性被打破。在5个同域分布的三角无花果品种中检测到单萜类、倍半萜类和脂肪族化合物。使用PLS的多变量数据分析显示,基于VOC含量的差异存在三个不同的组。将kunstleri变种和trengganuensis变种的雌蜂聚集在一起,鉴定出12种化合物与进入的无花果黄蜂数量可能相关。我们的研究结果表明,无花果的传粉者特异性可能是由无花果气味中的化学信号介导的,其中两个品种之间化合物的重叠导致一个品种的传粉者到达其非寄主植物。两个品种间传粉者的共享揭示了川甘奴变种传粉者特异性的断裂,表明基因流动发生在外观不同的亲缘关系密切的乔木中。
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Chemical mediators of pollinator specificity breakdown in dioecious Ficus deltoidea complex

The specific interaction of fig (Ficus) and its fig wasp pollinator (Agaonidae) is sustained by the olfactory signal in combination with morphological co-adaptations. Ficus deltoidea complex is a dioecious fig tree that is regularly pollinated by the fig wasp Blastophaga spp. This complex includes 13 varieties, seven of which are native to Peninsular Malaysia. The classification relies exclusively on leaf characterisation, without considering gene flow across sympatric taxa. Additionally, it remains unexplored whether different varieties support distinct fig wasp pollinators, or to what extent the floral scents emitted by receptive phase figs of these varieties differ. An experiment was conducted to determine the host specificity of Blastophaga sp. from var. trengganuensis in the germplasm of UniSZA by placing a donor male tree from var. trengganuensis surrounded by other varieties. To see the correlation between the varieties entered by the fig wasps and the volatile odour compound (VOC) releases from the receptive figs, a headspace solid-phase microextraction and gas chromatography–mass spectrometry analysis were used. The breakdown of one-to-one specificity in fig and fig wasp mutualism occurs when Blastophaga sp. from var. trengganuensis enters another variety (var. kunstleri) apart from its own variety. Monoterpenes, sesquiterpenes, and aliphatic compounds were detected in the odours of five sympatric fig varieties of F. deltoidea with varying compositions. Multivariate data analysis using PLS revealed the existence of three distinct groups based on differences in VOC content. Females of both var. kunstleri and var. trengganuensis were clustered together, with 12 compounds identified as potentially correlated with the number of fig wasps that entered. Our findings imply that pollinator specificity in figs was potentially mediated by chemical signals in the fig odour where the overlapping of compounds between two varieties caused the pollinators from one variety to reach their non-host plants. Pollinator sharing between two varieties revealed the breakdown of pollinator specificity in var. trengganuensis, showing gene flow is happening in the closely related trees that differ in appearance.

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来源期刊
Arthropod-Plant Interactions
Arthropod-Plant Interactions 生物-昆虫学
CiteScore
3.00
自引率
6.20%
发文量
58
审稿时长
6 months
期刊介绍: Arthropod-Plant Interactions is dedicated to publishing high quality original papers and reviews with a broad fundamental or applied focus on ecological, biological, and evolutionary aspects of the interactions between insects and other arthropods with plants. Coverage extends to all aspects of such interactions including chemical, biochemical, genetic, and molecular analysis, as well reporting on multitrophic studies, ecophysiology, and mutualism. Arthropod-Plant Interactions encourages the submission of forum papers that challenge prevailing hypotheses. The journal encourages a diversity of opinion by presenting both invited and unsolicited review papers.
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