Reversal of height dimorphism promotes pollen and seed dispersal in a wind-pollinated dioecious plant.
نویسندگان
چکیده
Variation in the timing of reproductive functions in dioecious organisms may result in adaptive changes in the direction of sexual dimorphism during the breeding season. For plants in which both pollen and seeds are wind-dispersed, it may be advantageous for male plants to be taller when pollen is dispersed and female plants to be taller when seeds are dispersed. We examined the dynamics of height dimorphism in Rumex hastatulus, an annual, wind-pollinated, dioecious plant from the southern USA. A field survey of seven populations indicated that females were significantly taller than males at seed maturity. However, a glasshouse experiment revealed a more complex pattern of height growth during the life cycle. No dimorphism was evident prior to reproduction for six of seven populations, but at flowering, males were significantly taller than females in all populations. This pattern was reversed at reproductive maturity, consistent with field observations. Males flowered later than females and the degree of height dimorphism was greater in populations with a later onset of male flowering. We discuss the potential adaptive significance of temporal changes in height dimorphism for pollen and seed dispersal, and how this may be optimized for the contrasting reproductive functions of the sexes.
منابع مشابه
dispersal in a wind-pollinated dioecious plant Reversal of height dimorphism promotes pollen and seed
, 245-248 first published online 2 November 2011 8 2012 Biol. Lett. Melinda Pickup and Spencer C. H. Barrett dispersal in a wind-pollinated dioecious plant Reversal of height dimorphism promotes pollen and seed References http://rsbl.royalsocietypublishing.org/content/8/2/245.full.html#ref-list-1 This article cites 11 articles, 1 of which can be accessed free Email alerting service here right-h...
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متن کاملFloral dimorphism in plant populations with combined versus separate sexes.
BACKGROUND AND AIMS Dimorphism among floral traits can evolve through variation in selection intensity between female and male performance, especially when sex functions are separated between flowers on a plant (monoecy), or between individuals (dioecy). In animal-pollinated species, male floral traits are predicted to be larger because competition for pollinators should favour larger displays....
متن کاملPART OF A SPECIAL ISSUE ON SEXUAL PLANT REPRODUCTION Floral dimorphism in plant populations with combined versus separate sexes
†Background and Aims Dimorphism among floral traits can evolve through variation in selection intensity between female and male performance, especially when sex functions are separated between flowers on a plant (monoecy), or between individuals (dioecy). In animal-pollinated species, male floral traits are predicted to be larger because competition for pollinators should favour larger displays...
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In wind-pollinated plants, male-biased sex allocation is often positively associated with plant size and height. However, effects of size (biomass or reproductive investment) and height were not separated in most previous studies. Here, using experimental populations of monoecious plants, Ambrosia altemisiifolia, we examined (1) how male and female reproductive investments (MRI and FRI) change ...
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ورودعنوان ژورنال:
- Biology letters
دوره 8 2 شماره
صفحات -
تاریخ انتشار 2012