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Female sterility associated with increased clonal propagation suggests a unique combination of androdioecy and asexual reproduction in populations of Cardamine amara (Brassicaceae).

机译:与不育繁殖增加相关的女性不育表明,在Cardamine amara(十字花科)种群中雄雄生殖和无性繁殖的独特结合。

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摘要

BACKGROUND AND AIMS: The coexistence of hermaphrodites and female-sterile individuals, or androdioecy, has been documented in only a handful of plants and animals. This study reports its existence in the plant species Cardamine amara (Brassicaceae), in which female-sterile individuals have shorter pistils than seed-producing hermaphrodites.METHODS: Morphological analysis, in situ manual pollination, microsatellite genotyping and differential gene expression analysis using Arabidopsis microarrays were used to delimit variation between female-sterile individuals and hermaphrodites.KEY RESULTS: Female sterility in C. amara appears to be caused by disrupted ovule development. It was associated with a 2.4- to 2.9-fold increase in clonal propagation. This made the pollen number of female-sterile genets more than double that of hermaphrodite genets, which fulfils a condition of co-existence predicted by simple androdioecy theories. When female-sterile individuals were observed in wild androdioecious populations, their ramet frequencies ranged from 5 to 54 %; however, their genet frequencies ranged from 11 to 29 %, which is consistent with the theoretically predicted upper limit of 50 %.CONCLUSIONS: The results suggest that a combination of sexual reproduction and increased asexual proliferation by female-sterile individuals probably explains the invasion and maintenance of female sterility in otherwise hermaphroditic populations. To our knowledge, this is the first report of the coexistence of female sterility and hermaphrodites in the Brassicaceae.
机译:背景与目的:仅在少数动植物中记录了雌雄同体和女性不育个体并存的现象。这项研究报告了其存在于植物物种Cardamine amara(十字花科)中,其中不育女性的雌蕊短于产生种子的雌雄同体。主要结果:C。amara中的女性不育似乎是由胚珠发育中断引起的。它与克隆繁殖的2.4到2.9倍增加相关。这使得雌性不育系的花粉数量超过雌雄同体的花粉数量的两倍,这满足了由简单雄激素学理论预测的共存条件。当在野生雄雄雄性种群中观察到女性不育个体时,其分枝率从5%到54%不等;然而,它们的遗传频率范围为11%到29%,与理论上预测的上限50%一致。结论:结果表明,女性不育个体的有性生殖和无性繁殖的结合可能解释了入侵和在其他两性人群中维持女性不育。据我们所知,这是十字花科中女性不育与雌雄同体并存的首次报道。

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