Koelewijn Hans P, VAN Damme Jos M M
Netherlands Institute of Ecology, Department of Plant Population Biology, Boterhoeksestraat 22, PO Box 40, 6666 ZG Heteren, The Netherlands.
Department of Genetics, University of Groningen, The Netherlands.
New Phytol. 1996 Jan;132(1):67-76. doi: 10.1111/j.1469-8137.1996.tb04510.x.
Gynodioecy is 8 breeding system consisting of male, steriles (MS, females) and hermaphrodites (H). There is however within such systems a third, often neglected, class of partially male sterile plants (PMS), i.e. plants with an intermediate sex expression, In natural populations of Plantago coronopus partially male sterile individuals were us common as male steriles (frequencies in the range 1·7-36·8%). These PMS plants constitute a continuous series, linking complete male sterility and hermaphroditism. We discovered that temperature influenced sex expression and the degree of male sterility of PMS individuals, but not of MS and H individuals. Thus, at higher temperatures PMS individuals became more male sterile. Difference in cytoplasmic background of the individuals did nut influence their response to temperature. It is argued that partial male sterility is a normal feature of gynodioecious species and not an abnormality.
雌雄异株是一种由雄性不育植株(MS,雌性)和雌雄同株(H)组成的繁殖系统。然而,在这样的系统中,还有第三种常被忽视的部分雄性不育植株(PMS),即具有中间性表达的植株。在海滨车前的自然种群中,部分雄性不育个体与雄性不育个体一样常见(频率在1.7%-36.8%之间)。这些PMS植株构成了一个连续系列,连接着完全雄性不育和雌雄同株。我们发现温度会影响PMS个体的性表达和雄性不育程度,但对MS和H个体没有影响。因此,在较高温度下,PMS个体变得更雄性不育。个体细胞质背景的差异并不影响它们对温度的反应。有人认为部分雄性不育是雌雄异株物种的正常特征,而不是异常现象。