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首页> 外文期刊>The American Naturalist: Devoted to the Conceptual Unification of the Biological Sciences >Sex allocation and reproductive success in the andromonoecious perennial Solanum carolinense (Solanaceae). II. Paternity and functional gender
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Sex allocation and reproductive success in the andromonoecious perennial Solanum carolinense (Solanaceae). II. Paternity and functional gender

机译:多年生雄雄同株的茄属茄科(茄科)的性别分配和生殖成功。二。亲子关系和功能性别

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摘要

According to Bateman's principle, male fitness in entomophilous plant species should be limited by mating opportunity, which is influenced by the size or number of flowers. We determined male-specific fitness consequences of floral phenotype in andromonoecious Solanum carolinense, examined the relationship between male and female reproductive success within plants, and evaluated the distribution of functional gender among plants. A maximum likelihood-based paternity analysis, based on multilocus allozyme phenotypes of parents and offspring from four experimental plots, was used to determine male reproductive success and its relationship to floral phenotype. Male success was enhanced by an increase in the proportion of male flowers produced but not by an increase in total flower number, even though all flowers contain male parts. Larger flower size increased male success in only one plot. Male and female reproductive success were negatively correlated, and plants varied in functional gender from completely female to completely male. This gender specialization may occur because hermaphroditic and male flowers differ in their ability to contribute to male and female success. Although sex allocation theory predicts a positive relationship between the size or number of plant parts and reproductive success, this study indicates that aspects of floral morphology that affect gender specialization should also be considered. [References: 74]
机译:根据贝特曼(Bateman)的原理,男性在昆虫食性植物中的适应能力应受到交配机会的限制,而交配机会受到花朵大小或数量的影响。我们确定了雄性单株茄茄中花型的雄性特异性适应性后果,研究了植物内雄性和雌性繁殖成功之间的关系,并评估了植物中功能性别的分布。基于最大似然的亲子关系分析,基于来自四个实验区的父母和后代的多基因座同工酶表型,来确定雄性繁殖成功及其与花型的关系。雄花的成功通过增加雄花的比例而得到提高,但总花序数却没有增加,即使所有花都含有雄花。较大的花朵大小仅在一个情节中增加了雄性成功率。雄性和雌性生殖成功呈负相关,植物的功能性别从完全雌性到完全雄性不等。这种性别专长的出现可能是因为雌雄同体和雄性花在促成雄性和雌性成功方面的能力不同。尽管性别分配理论预测植物部位的大小或数量与生殖成功之间存在正相关关系,但这项研究表明,应考虑影响性别分工的花卉形态方面。 [参考:74]

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