Matches in SemOpenAlex for { <https://semopenalex.org/work/W2897320514> ?p ?o ?g. }
- W2897320514 endingPage "11" @default.
- W2897320514 startingPage "1" @default.
- W2897320514 abstract "A nitrogen supply is necessary for all plants. The multifaceted reasons why this nutrient stimulates plant dry weight accumulation are assessed herein. We compared tomato plants grown in full sunlight and in low light environments under four N doses and evaluated plant growth, photosynthetic and calorimetric parameters, leaf anatomy, chloroplast transmission electron microscopy (TEM) and a high resolution profile of optical leaf properties. Increases in N supplies allow tomato plants to grow faster in low light environments (91.5% shading), displaying a robust light harvesting machinery and, consequently, improved light harvesting efficiency. Ultrastructurally, high N doses were associated to a high number of grana per chloroplast and greater thylakoid stacking, as well as high electrodensity by TEM. Robust photosynthetic machinery improves green light absorption, but not blue or red. In addition, low construction and dark respiration costs were related to improved total dry weight accumulation in shade conditions. By applying multivariate analyses, we conclude that improved green light absorbance, improved quantum yield and greater palisade parenchyma cell area are the primary components that drive increased plant growth under natural light-limited photosynthesis." @default.
- W2897320514 created "2018-10-26" @default.
- W2897320514 creator A5034724409 @default.
- W2897320514 creator A5036284995 @default.
- W2897320514 creator A5049935953 @default.
- W2897320514 creator A5050758503 @default.
- W2897320514 creator A5064731360 @default.
- W2897320514 creator A5072651615 @default.
- W2897320514 creator A5073225829 @default.
- W2897320514 creator A5078090289 @default.
- W2897320514 creator A5086594703 @default.
- W2897320514 date "2019-01-01" @default.
- W2897320514 modified "2023-10-18" @default.
- W2897320514 title "Nitrogen-improved photosynthesis quantum yield is driven by increased thylakoid density, enhancing green light absorption" @default.
- W2897320514 cites W116253160 @default.
- W2897320514 cites W1530720822 @default.
- W2897320514 cites W1963975595 @default.
- W2897320514 cites W1979795508 @default.
- W2897320514 cites W1984852560 @default.
- W2897320514 cites W2009891198 @default.
- W2897320514 cites W2011894492 @default.
- W2897320514 cites W2013880847 @default.
- W2897320514 cites W2017917877 @default.
- W2897320514 cites W2055784994 @default.
- W2897320514 cites W2059354705 @default.
- W2897320514 cites W2066689111 @default.
- W2897320514 cites W2067364525 @default.
- W2897320514 cites W2093846586 @default.
- W2897320514 cites W2102630498 @default.
- W2897320514 cites W2104297123 @default.
- W2897320514 cites W2106274381 @default.
- W2897320514 cites W2108907718 @default.
- W2897320514 cites W2115663229 @default.
- W2897320514 cites W2116058003 @default.
- W2897320514 cites W2116188431 @default.
- W2897320514 cites W2117329063 @default.
- W2897320514 cites W2122689599 @default.
- W2897320514 cites W2127911529 @default.
- W2897320514 cites W2127928859 @default.
- W2897320514 cites W2128141999 @default.
- W2897320514 cites W2130486802 @default.
- W2897320514 cites W2135974219 @default.
- W2897320514 cites W2136726359 @default.
- W2897320514 cites W2136775576 @default.
- W2897320514 cites W2137058134 @default.
- W2897320514 cites W2138731137 @default.
- W2897320514 cites W2139582820 @default.
- W2897320514 cites W2142283539 @default.
- W2897320514 cites W2147589054 @default.
- W2897320514 cites W2151968140 @default.
- W2897320514 cites W2155285359 @default.
- W2897320514 cites W2156782579 @default.
- W2897320514 cites W2160906348 @default.
- W2897320514 cites W2163987700 @default.
- W2897320514 cites W2165340858 @default.
- W2897320514 cites W2166363929 @default.
- W2897320514 cites W2168045286 @default.
- W2897320514 cites W2169358467 @default.
- W2897320514 cites W2170214026 @default.
- W2897320514 cites W2175629130 @default.
- W2897320514 cites W2198130490 @default.
- W2897320514 cites W2302058729 @default.
- W2897320514 cites W2320056406 @default.
- W2897320514 cites W2325636442 @default.
- W2897320514 cites W2507166901 @default.
- W2897320514 cites W2586288136 @default.
- W2897320514 cites W2591710010 @default.
- W2897320514 cites W2618383032 @default.
- W2897320514 cites W2620668763 @default.
- W2897320514 cites W2753552020 @default.
- W2897320514 cites W2769862293 @default.
- W2897320514 cites W2887079119 @default.
- W2897320514 cites W3036676859 @default.
- W2897320514 cites W4232629414 @default.
- W2897320514 doi "https://doi.org/10.1016/j.plantsci.2018.10.012" @default.
- W2897320514 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/30471722" @default.
- W2897320514 hasPublicationYear "2019" @default.
- W2897320514 type Work @default.
- W2897320514 sameAs 2897320514 @default.
- W2897320514 citedByCount "38" @default.
- W2897320514 countsByYear W28973205142020 @default.
- W2897320514 countsByYear W28973205142021 @default.
- W2897320514 countsByYear W28973205142022 @default.
- W2897320514 countsByYear W28973205142023 @default.
- W2897320514 crossrefType "journal-article" @default.
- W2897320514 hasAuthorship W2897320514A5034724409 @default.
- W2897320514 hasAuthorship W2897320514A5036284995 @default.
- W2897320514 hasAuthorship W2897320514A5049935953 @default.
- W2897320514 hasAuthorship W2897320514A5050758503 @default.
- W2897320514 hasAuthorship W2897320514A5064731360 @default.
- W2897320514 hasAuthorship W2897320514A5072651615 @default.
- W2897320514 hasAuthorship W2897320514A5073225829 @default.
- W2897320514 hasAuthorship W2897320514A5078090289 @default.
- W2897320514 hasAuthorship W2897320514A5086594703 @default.
- W2897320514 hasConcept C101692577 @default.
- W2897320514 hasConcept C104317684 @default.
- W2897320514 hasConcept C125564181 @default.
- W2897320514 hasConcept C150668497 @default.