linkedin post 2018-09-08 06:04:20

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POLLEN TUBE FUSION. "Congenitally united carpels benefit from the development of the compitum, a single pollen tube transmitting tract resulting from the fusion in the stigmatic region. This enables flowers with multiple ovaries to maintain centralized pollen tube selection, which has an adaptive advantage for targeted fertilization." https://lnkd.in/dD4GcAS View in LinkedIn
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linkedin post 2018-09-08 06:01:57

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ANGIOSPERM FUSIONS. "During the evolution of the angiosperm flower, the ovule-bearing carpels become enrolled and sealed with the ovules inside, with carpel fusion being a derived state for the angiosperm flower. Once the carpel is formed, syncarpy, or the congenital fusion of multiple carpels to form a multicarpellate ovary, dominates angiosperm evolution, with an estimated 80% of all angiosperms bearing syncarpous ovaries." https://lnkd.in/dD4GcAS View in LinkedIn
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linkedin post 2018-09-08 05:58:37

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FITNESS FUNCTION. "Interestingly, fusion of filaments alone is typically found in the early diverging angiosperms in flowers with many petals, while fusion events involving both anthers (connective) and filament are typically correlated with petal fusion, indicating that stamen fusion may have adaptive significance in flowers with tubular petals, increasing fitness through improved mechanisms of pollen reception or dispersal." https://lnkd.in/dD4GcAS View in LinkedIn
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linkedin post 2018-09-08 05:55:43

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FUSION EVOLUTION. "Unlike perianth fusion, which occurs early in angiosperm evolution and defines large clades, stamen fusion occurs multiple times independently and does not tend to define major angiosperm clades, although it is locally important for species-level diversification and is likely to have adaptive significance given the impact on mating patterns in plant populations." https://lnkd.in/dD4GcAS View in LinkedIn
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linkedin post 2018-09-08 05:52:21

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FRAGMENT FROM NATURE continues and concludes this weekend on the subject of floral fusions and their evolution and functions. These chimeric plant organs are driven by boundaries at a cellular and genetic level. Boundaries define the morphological transitions in flowers. Come and enjoy a deeper appreciation of the enormous diversity of flowers and how they got to be what they are, and speculate on where they may be headed. View in LinkedIn
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linkedin post 2018-09-09 04:07:01

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BOUNDARIES. "In order for lateral primordia to distinguish themselves as a population of cells separate from the shoot apical meristem (SAM), a meristem-to-organ boundary must be created. Mutants lacking appropriate genetic mechanisms for separation of organ primordia into distinct lateral organs are considered to be mutants in the process of ‘boundary formation’." https://lnkd.in/dD4GcAS View in LinkedIn
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