Matches in SemOpenAlex for { <https://semopenalex.org/work/W2007271100> ?p ?o ?g. }
- W2007271100 endingPage "84" @default.
- W2007271100 startingPage "77" @default.
- W2007271100 abstract "Plant biomechanics combines the principles of physics, chemistry and engineering to answer questions about plant growth, development and interaction with the environment. The epidermal-growth-control theory, postulated in 1867 and verified in 2007, states that epidermal cells determine the rate of organ elongation since they are under tension, while inner tissues are under compression. The lipid cuticle layer is deposited on the surface of outer epidermal cell walls and modifies the chemical and mechanical nature of these cell walls. Thus, the plant cuticle plays a key role in plant interaction with the environment and in controlling organ expansion. Rheological analyses indicate that the cuticle is a mostly viscoelastic and strain-hardening material that stiffens the comparatively more elastic epidermal cell walls. Cuticle stiffness can be attributed to polysaccharides and flavonoids present in the cuticle whereas a cutin matrix is mainly responsible for its extensibility. Environmental conditions such as temperature and relative humidity have a plasticizing effect on the mechanical properties of cuticle since they lower cuticle stiffness and strength. The external appearance of agricultural commodities, especially fruits, is of great economic value. Mechanical properties of the cuticle can have a positive or negative effect on disorders like fruit cracking, fungal pathogen penetration and pest infestation. Cuticle rheology has significant variability within a species and thus can be subjected to selection in order to breed cultivars resistant to pests, infestation and disorders." @default.
- W2007271100 created "2016-06-24" @default.
- W2007271100 creator A5047697487 @default.
- W2007271100 creator A5063225590 @default.
- W2007271100 creator A5070365199 @default.
- W2007271100 date "2011-08-01" @default.
- W2007271100 modified "2023-10-02" @default.
- W2007271100 title "An overview on plant cuticle biomechanics" @default.
- W2007271100 cites W1564884519 @default.
- W2007271100 cites W1615927438 @default.
- W2007271100 cites W1700776583 @default.
- W2007271100 cites W1821582000 @default.
- W2007271100 cites W1966153048 @default.
- W2007271100 cites W1968594317 @default.
- W2007271100 cites W1974599548 @default.
- W2007271100 cites W1976672093 @default.
- W2007271100 cites W1977183366 @default.
- W2007271100 cites W1980073252 @default.
- W2007271100 cites W1980158599 @default.
- W2007271100 cites W1991882516 @default.
- W2007271100 cites W1993499983 @default.
- W2007271100 cites W1999252554 @default.
- W2007271100 cites W2001824684 @default.
- W2007271100 cites W2002115219 @default.
- W2007271100 cites W2002301753 @default.
- W2007271100 cites W2003962689 @default.
- W2007271100 cites W2005690093 @default.
- W2007271100 cites W2010376309 @default.
- W2007271100 cites W2014812692 @default.
- W2007271100 cites W2021619394 @default.
- W2007271100 cites W2029643432 @default.
- W2007271100 cites W2032787857 @default.
- W2007271100 cites W2033272978 @default.
- W2007271100 cites W2046433830 @default.
- W2007271100 cites W2051928332 @default.
- W2007271100 cites W2057555284 @default.
- W2007271100 cites W2074934411 @default.
- W2007271100 cites W2079347456 @default.
- W2007271100 cites W2087142132 @default.
- W2007271100 cites W2089299716 @default.
- W2007271100 cites W2090766820 @default.
- W2007271100 cites W2091075059 @default.
- W2007271100 cites W2094226300 @default.
- W2007271100 cites W2099131048 @default.
- W2007271100 cites W2099765642 @default.
- W2007271100 cites W2101065700 @default.
- W2007271100 cites W2101504860 @default.
- W2007271100 cites W2104930935 @default.
- W2007271100 cites W2115465954 @default.
- W2007271100 cites W2117855074 @default.
- W2007271100 cites W2122328980 @default.
- W2007271100 cites W2125052581 @default.
- W2007271100 cites W2126777023 @default.
- W2007271100 cites W2129687313 @default.
- W2007271100 cites W2131295411 @default.
- W2007271100 cites W2134767034 @default.
- W2007271100 cites W2142283822 @default.
- W2007271100 cites W2144744158 @default.
- W2007271100 cites W2145950226 @default.
- W2007271100 cites W2148160164 @default.
- W2007271100 cites W2156990942 @default.
- W2007271100 cites W2158715711 @default.
- W2007271100 cites W2164674391 @default.
- W2007271100 cites W2164819229 @default.
- W2007271100 cites W2166586228 @default.
- W2007271100 cites W2167078911 @default.
- W2007271100 cites W2167927738 @default.
- W2007271100 cites W2170489190 @default.
- W2007271100 cites W2170556359 @default.
- W2007271100 cites W2257436482 @default.
- W2007271100 cites W2308318145 @default.
- W2007271100 cites W2314460577 @default.
- W2007271100 cites W2320382211 @default.
- W2007271100 cites W2405173411 @default.
- W2007271100 cites W2413781634 @default.
- W2007271100 cites W2418320620 @default.
- W2007271100 cites W2885036201 @default.
- W2007271100 cites W2912999439 @default.
- W2007271100 cites W3021343360 @default.
- W2007271100 cites W4247447466 @default.
- W2007271100 cites W89576079 @default.
- W2007271100 doi "https://doi.org/10.1016/j.plantsci.2011.04.016" @default.
- W2007271100 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/21683870" @default.
- W2007271100 hasPublicationYear "2011" @default.
- W2007271100 type Work @default.
- W2007271100 sameAs 2007271100 @default.
- W2007271100 citedByCount "149" @default.
- W2007271100 countsByYear W20072711002012 @default.
- W2007271100 countsByYear W20072711002013 @default.
- W2007271100 countsByYear W20072711002014 @default.
- W2007271100 countsByYear W20072711002015 @default.
- W2007271100 countsByYear W20072711002016 @default.
- W2007271100 countsByYear W20072711002017 @default.
- W2007271100 countsByYear W20072711002018 @default.
- W2007271100 countsByYear W20072711002019 @default.
- W2007271100 countsByYear W20072711002020 @default.
- W2007271100 countsByYear W20072711002021 @default.
- W2007271100 countsByYear W20072711002022 @default.