Suppr超能文献

由雌蕊外共同柱头介导的同种花粉优势及其抵抗两个物种间种间生殖干扰的潜力。

Conspecific pollen advantage mediated by the extragynoecial compitum and its potential to resist interspecific reproductive interference between two species.

作者信息

Fei Cai-Hong, Tang Sha-Sha, Shang Shu-He, Dai Jie, Wang Xin-Yi, Wang Shuai, Liu Wei-Qi, Wang Xiao-Fan

机构信息

College of Life Sciences, Wuhan University, Wuhan, China.

College of Life Science, Hengyang Normal University, Hengyang, China.

出版信息

Front Plant Sci. 2022 Jul 22;13:956193. doi: 10.3389/fpls.2022.956193. eCollection 2022.

Abstract

The extragynoecial compitum formed by the incomplete fusion of carpel margins, while allowing intercarpellary growth of pollen tubes in apocarpous angiosperms, may also increase the risk of reproductive interference caused by heterospecific pollen (HP) deposition. In , congeneric HP tubes grow via different paths and enter the ovules later than conspecific pollen (CP) tubes. However, it is unclear how the growth advantage of the CP tube helps ensure reproductive success when HP is deposited on the stigmas. We performed molecular characterization of interspecies-pollinated seeds to examine the consequences of interspecific pollen deposition between and . We also conducted CP-HP (1:1) mixed pollination and delayed CP pollination treatments to explore the seed-siring abilities of CP and HP. Our results showed that although HP could trigger the development of fruits, the interspecies-pollinated seeds contained partially developed embryos and could not germinate. More than 70% of the embryos in these seeds were molecularly identified as hybrids of both species, suggesting that HP tubes could enter the ovules and fertilize the egg cells. Moreover, CP could sire more offspring (≥70%) after the CP-HP (1:1) mixed pollination treatment, even when HP reached the stigma 0.5-1 h earlier than CP (≥50%). Following adequate CP vs. HP (1:1) pollination on carpels on two sides of the apocarpous gynoecium, both species produced > 70% conspecific seeds, indicating that the CP tubes could occupy ovules that should be occupied by HP via the extragynoecial compitum. Our results reveal that in , pollen deposition from co-existing congeneric heterospecies leads to interspecific seed discounting. However, the CP advantage mediated by the extragynoecial compitum is an effective strategy to mitigate the effects of interspecific pollen deposition. This study improves our understanding of how apocarpous angiosperms with an extragynoecial compitum can maintain species stability and mitigate the negative reproductive interference effect from sympatrically distributed related species.

摘要

心皮边缘不完全融合形成的雌蕊外受精区,在允许离生心皮被子植物的心皮间花粉管生长的同时,也可能增加异源花粉(HP)沉积导致生殖干扰的风险。在[具体植物名称]中,同属的HP花粉管通过不同路径生长,比同种花粉(CP)管更晚进入胚珠。然而,尚不清楚当HP沉积在柱头上时,CP管的生长优势如何有助于确保生殖成功。我们对种间授粉种子进行了分子特征分析,以研究[两种植物名称]之间种间花粉沉积的后果。我们还进行了CP-HP(1:1)混合授粉和延迟CP授粉处理,以探究CP和HP的种子授精能力。我们的结果表明,尽管HP可以触发果实发育,但种间授粉的种子含有部分发育的胚,无法萌发。这些种子中超过70%的胚在分子水平上被鉴定为两个物种的杂种,这表明HP花粉管可以进入胚珠并使卵细胞受精。此外,在CP-HP(1:1)混合授粉处理后,即使HP比CP早0.5 - 1小时到达柱头(≥50%),CP仍能产生更多后代(≥70%)。在离生雌蕊两侧的心皮上进行适当的CP与HP(1:1)授粉后,两个物种产生的同种种子均超过70%,这表明CP花粉管可以通过雌蕊外受精区占据本应由HP占据的胚珠。我们的结果表明,在[具体植物名称]中,共存的同属异种的花粉沉积会导致种间种子减产。然而,由雌蕊外受精区介导的CP优势是减轻种间花粉沉积影响的有效策略。这项研究增进了我们对具有雌蕊外受精区的离生心皮被子植物如何维持物种稳定性以及减轻来自同域分布的近缘物种的负面生殖干扰效应的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf4d/9354020/5fbdc5ba9684/fpls-13-956193-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验