linkedin post 2016-08-13 06:01:29

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"FLOWER OPENING depends on petal movements, of which at least four types can be distinguished. (1) Opening is due to reversible ion accumulation, and independent of elongation growth; (2) it depends on cellular death in a specific area of the petal; (3) it is due to loss of water during the day and refilling during the night; and (4) it depends on differential growth." https://lnkd.in/eTEzGE9 View in LinkedIn
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linkedin post 2016-08-13 05:56:58

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ELEGANT ENGINEERING. "In some flowers, for example in Oenothera spp., the sepals are connected by a zipper‐like mechanism whereby cells at the sepal margins are tangled. Due to the force of the growing petals this entanglement is broken and the petals are suddenly released. In several other species the sepal margins are tightly held together by ridges, which also delay opening until the growing petals overcome their resistance. This also results in rapid opening." https://lnkd.in/eTEzGE9 View in LinkedIn
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linkedin post 2016-08-13 05:54:29

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DIVERGENT SOLUTIONS. "Depending on the species, opening may relate to the development of tissues adjacent to the flower, for example, opening may require growth of the pedicel, as in several species in the Iridaceae; or it may require forced separation or abscission of covering parts, such as bracts or sepals." https://lnkd.in/eTEzGE9 View in LinkedIn
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linkedin post 2016-08-13 05:52:24

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FOLDING ORIGAMI is not the simplest of projects, especially if the folding parts get damaged by weather or predators. Folding and unfolding of flowers is a complex and biologically costly venture. It is surprising that nature has elected to fold and unfold such seemingly delicate structures as flowers so frequently. View in LinkedIn
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linkedin post 2016-08-13 05:47:05

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SWIFT AND COMPLEX. "Flower opening is often rapid. In Oenothera biennis, for example, full opening takes less than 20 min and in Hedera helix it occurs in about 5 min. Flower opening is therefore interesting from a physiological point of view as, in many species, it is accompanied by a high rate of cell expansion, rather impressive movements, and complex regulation by external and internal factors." https://lnkd.in/eTEzGE9 View in LinkedIn
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linkedin post 2016-08-13 05:42:59

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RESPONSIVENESS. "Plants respond to light, gravity, touch, and other environmental signals by both temporary and permanent differential growth. Certain plant species respond to light, dark, and other environmental factors by leaf movement. Leguminous plants both track and avoid the sun through turgor changes of the pulvinus tissue at the base of leaves. Mechanisms leading to pulvinar turgor flux." https://lnkd.in/e9s_fPH View in LinkedIn
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linkedin post 2016-08-13 05:38:27

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NYCTINASTY. "Tropisms are plant movements induced by directional stimuli, such as light or gravity. In addition, plants can move in response to nondirectional factors, such as humidity or contact. These movements are called nastic responses. Nyctinasty, the proper name for the “sleep movements of leaves” is a well-known example of a nastic response. In this case, plants close up their leaves and petals in response to the onset of darkness. Because it is a rather fast response, it does not involve differential growth but changes in cellular turgor." https://lnkd.in/eE__XBs View in LinkedIn
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linkedin post 2016-08-13 05:35:47

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SET APART. "The co‐ordination of processes culminating in synchronized flower opening is, in many species, highly intricate. The complex control by endogenous and exogenous factors sets flower opening and closure apart from most other growth processes." http://jxb.oxfordjournals.org/content/54/389/1801.full View in LinkedIn
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linkedin post 2016-08-13 05:32:17

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EVERYDAY MYSTERY. "It is not clear, from an ecological and evolutionary point of view, why some flowers last as long as they do, nor is it obvious why they open and close as they do. Opening and closure show a wide range of strategies. Presumably, these strategies have been selected to optimize reproductive success at a minimal (metabolic) cost." http://jxb.oxfordjournals.org/content/54/389/1801.full View in LinkedIn
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