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基于 AFLP 和同工酶分析的欧洲悬钩子属(蔷薇科)物种的性证据。

Evidence of sexuality in European Rubus (Rosaceae) species based on AFLP and allozyme analysis.

机构信息

Geobotanisches Institut, ETH Zürich, Zürichbergstrasse 38, 8044 Zürich, Switzerland.

出版信息

Am J Bot. 2000 Nov;87(11):1592-8.

Abstract

Reproduction of polyploid Rubus species is described as facultatively apomictic. Pollination is needed for seed set, but most seedlings are produced asexually by pseudogamy. Although sexual processes may occur, clonal diversity can be extremely low. We performed a pollination experiment to investigate the breeding system and used allozyme and AFLP markers to analyze genetic variation among and within seed families in R. armeniacus and R. bifrons. Pollination either with self or outcross pollen was necessary to trigger seed set. Outbreeding marginally increased the number and quality of seeds compared with selfing. The enzyme PGI revealed some genetic variation within seed families. Seven other enzyme systems were monomorphic. The more detailed AFLP analyses with five primer pairs detected the same rate of genetic variation (14-17% of seedlings were genetically distinct) and confirmed the allozyme results for the same individuals. No genetic variation was found between the seed families from within a species collected in widely separated populations, but clear species-specific differences were observed. The results support the view that polyploid Rubus species are pseudogamous apomicts with low genetic diversity among and within seed families. However, sexual reproduction occasionally occurs and contributes to the maintenance of genetic variation within natural populations.

摘要

多倍体悬钩子属植物的繁殖被描述为兼性无融合生殖。种子结实需要授粉,但大多数幼苗是通过假配子发生无性繁殖产生的。尽管可能发生有性过程,但克隆多样性可能极低。我们进行了授粉实验来研究繁殖系统,并使用同工酶和 AFLP 标记分析了 R. armeniacus 和 R. bifrons 种子家系之间和内部的遗传变异。自交或异交花粉授粉都需要触发种子结实。与自交相比,异交略微增加了种子的数量和质量。PGI 酶揭示了种子家系内的一些遗传变异。其他七个酶系统是单态的。用五对引物进行的更详细的 AFLP 分析检测到相同的遗传变异率(14-17%的幼苗在遗传上是不同的),并证实了同一个体的同工酶结果。在来自广泛分离种群的同一物种的种子家系之间没有发现遗传变异,但观察到明显的种间特异性差异。这些结果支持多倍体悬钩子属植物是假配子无融合生殖的观点,其种子家系内和种子家系间的遗传多样性较低。然而,有性繁殖偶尔发生,并有助于维持自然种群内的遗传变异。

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