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杂交滨藜属植物中的花粉竞争:迟到者如何赢得比赛?

Pollen competition in hybridizing Cakile species: How does a latecomer win the race?

机构信息

School of Biosciences, The University of Melbourne, Parkville, Victoria, 3010, Australia.

School of Biological Sciences, Monash University, Clayton, Victoria, 3800, Australia.

出版信息

Am J Bot. 2022 Aug;109(8):1290-1304. doi: 10.1002/ajb2.16035. Epub 2022 Aug 15.

Abstract

PREMISE

Hybridization between cross-compatible species depends on the extent of competition between alternative mates. Even if stigmatic compatibility allows for hybridization, hybridization requires the heterospecific pollen to be competitive. Here, we determined whether conspecific pollen has an advantage in the race to fertilize ovules and the potential handicap to be overcome by heterospecific pollen in invasive Cakile species.

METHODS

We used fluorescence microscopy to measure pollen tube growth after conspecific and heterospecific hand-pollination treatments. We then determined siring success in the progeny relative to the timing of heterospecific pollen arrival on the stigma using CAPS markers.

RESULTS

In the absence of pollen competition, pollination time and pollen recipient species had a significant effect on the ratio of pollen tube growth. In long-styled C. maritima (outcrosser), pollen tubes grew similarly in both directions. In short-styled C. edentula (selfer), conspecific and heterospecific pollen tubes grew differently. Cakile edentula pollen produced more pollen tubes, revealing the potential for a mating asymmetry whereby C. edentula pollen had an advantage relative to C. maritima. In the presence of pollen competition, siring success was equivalent when pollen deposition was synchronous. However, a moderate 1-h advantage in the timing of conspecific pollination resulted in almost complete assortative mating, while an equivalent delay in conspecific pollination resulted in substantial hybrid formation.

CONCLUSIONS

Hybridization can aid the establishment of invasive species through the transfer of adaptive alleles from cross-compatible species, but also lead to extinction through demographic or genetic swamping. Time of pollen arrival on the stigma substantially affected hybridization rate, pointing to the importance of pollination timing in driving introgression and genetic swamping.

摘要

前提

跨相容物种的杂交取决于替代配偶之间竞争的程度。即使柱头相容性允许杂交,杂交也需要异源花粉具有竞争力。在这里,我们确定了同种花粉在受精竞争中是否具有优势,以及异源花粉在入侵的欧亚滨藜属物种中克服的潜在障碍。

方法

我们使用荧光显微镜测量同种和异交手授粉处理后花粉管的生长。然后,我们使用 CAPS 标记物确定在柱头异源花粉到达时相对于亲缘关系的后代中亲代的成功情况。

结果

在没有花粉竞争的情况下,授粉时间和花粉接受者的物种对花粉管生长的比例有显著影响。在长花柱的欧亚滨藜(异交种)中,花粉管向两个方向生长相似。在短花柱的欧亚滨藜(自交种)中,同种和异交花粉管的生长方式不同。欧亚滨藜花粉产生了更多的花粉管,这表明存在交配不对称性的可能性,即相对于欧亚滨藜,欧亚滨藜花粉具有优势。在存在花粉竞争的情况下,当花粉沉积同步时,亲代的成功情况是相等的。然而,同种花粉授粉时间提前 1 小时,几乎完全是同型交配,而同种花粉授粉延迟 1 小时,则会导致大量杂种形成。

结论

杂交可以通过从跨相容物种转移适应性等位基因来帮助入侵物种的建立,但也会导致通过遗传或种群灭绝而灭绝。花粉到达柱头的时间极大地影响了杂交率,这表明授粉时间在驱动基因渐渗和遗传淹没方面的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0986/9544311/841b7a4340fb/AJB2-109-1290-g001.jpg

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