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植物性别和丛枝菌根共生的跨代效应。

Transgenerational effects of plant sex and arbuscular mycorrhizal symbiosis.

机构信息

Department of Biological and Environmental Science, University of Jyväskylä, Jyväskylä, Finland.

出版信息

New Phytol. 2013 Aug;199(3):812-21. doi: 10.1111/nph.12305. Epub 2013 May 9.

Abstract

In gynodioecious plants, females are predicted to produce more and/or better offspring than hermaphrodites in order to be maintained in the same population. In the field, the roots of both sexes are usually colonized by arbuscular mycorrhizal (AM) fungi. Transgenerational effects of mycorrhizal symbiosis are largely unknown, although theoretically expected. We examined the maternal and paternal effects of AM fungal symbiosis and host sex on seed production and posterior seedling performance in Geranium sylvaticum, a gynodioecious plant. We hand-pollinated cloned females and hermaphrodites in symbiosis with AM fungi or in nonmycorrhizal conditions and measured seed number and mass, and seedling survival and growth in a glasshouse experiment. Females produced more seeds than hermaphrodites, but the seeds did not germinate, survive or grow better. Mycorrhizal plants were larger, but did not produce more seeds than nonmycorrhizal plants. Transgenerational parental effects of AM fungi were verified in seedling performance. This is the first study to show transgenerational mycorrhiza-mediated parental effects in a gynodioecious species. Mycorrhizal symbiosis affects plant fitness mainly through female functions with enduring effects on the next generation.

摘要

在雌雄异株植物中,雌性通常比雌雄同体产生更多和/或更好的后代,以在同一群体中得以维持。在野外,两性的根通常都被丛枝菌根(AM)真菌所定殖。尽管理论上可以预期,但 AM 真菌共生的跨代效应在很大程度上仍未知。我们研究了 AM 真菌共生以及宿主性别对胎生植物 Geranium sylvaticum 种子生产和后代幼苗表现的母本和父本效应。我们在手性雌性和雌雄同体与 AM 真菌共生或非菌根条件下进行人工授粉,并在温室实验中测量种子数量和质量以及幼苗的存活率和生长情况。雌性产生的种子多于雌雄同体,但种子的发芽、存活或生长情况并不理想。菌根植物的体型较大,但产生的种子并不比非菌根植物多。AM 真菌的跨代亲本效应在幼苗表现中得到了验证。这是首次在雌雄异株物种中证明 AM 真菌介导的跨代亲本效应的研究。菌根共生主要通过雌性功能影响植物的适合度,对下一代产生持久的影响。

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