Matches in SemOpenAlex for { <https://semopenalex.org/work/W4366254458> ?p ?o ?g. }
Showing items 1 to 97 of
97
with 100 items per page.
- W4366254458 endingPage "116698" @default.
- W4366254458 startingPage "116698" @default.
- W4366254458 abstract "Soybean production as an oil and protein crop, especially in water limited conditions, is of global importance. Suitable Nano-iron fertilizer application method can be a useful nutrition technique under water limitation stress. The aim of this study was to investigate the response of yield, physiological and morphological characteristics of soybean to drought stress, planting date and nutrition with iron Nano-oxide in two separate experiments (i.e. 2-year field and a pot) in 2021–2022. Field experiments included planting date (April 09: early planting date, May 05: optimum planting date and June 10: late planting date), nutrition with iron Nano-oxide (control, seed priming 300 ppm, foliar spraying 15 ppm, priming 300 ppm + foliar spraying 15 ppm) and drought stress (100 %, 75 % and 50 % FC). In the pot experiment, all field treatments were applied except planting date. Then, morphological and biochemical characteristics of the root were investigated. The results showed that drought stress, planting date and different methods of iron Nano-oxide nutrition had significant effects on gas exchanges, chlorophyll fluorescence, antioxidant activity and grain yield. The highest gas exchanges, net photosynthesis rate, the maximum photosystem quantum efficiency (FV/Fm) and grain yield were obtained by iron Nano-oxide nutrition as seed priming + spraying in optimum planting date and 100 % FC. However, these traits were decreased with increasing drought intensity (50 % FC), non-use of iron Nano-oxide (control) in early planting date. By increasing the drought severity in the field to 50 % FC, the antioxidant enzyme’s activity increased. The highest activity of catalase and superoxide dismutase were observed in early planting date + non-use of iron Nano-oxide +50 % FC. Based on the results of the pot test, the highest root length, number of nitrogen-fixing nodules, root dry weight, and nitrogenase activity were observed by iron Nano-oxide nutrition (nano priming 300 ppm + 15 ppm spraying) under 100 % FC. The mentioned parameters were reduced by drought, but the number of root branches increased. Combined nutrition (priming + spraying) had more positive effects on the root's morphological and biochemical properties compared with iron spraying only. The water productivity increased due to late plantings, but the negative effect of early planting on this indicator was higher. The maximum water productivity (0.73 kg/m3) obtained from iron Nano-oxide nutrition (seed priming 300 ppm + foliar spraying 15 ppm) in late planting date under 50 % FC conditions and its lowest (0.35 kg/m3) in no iron Nano-oxide nutrition in early planting date under 100 % FC. In general, the optimum planting date (05 May), supply of 100 % FC and combined iron Nano-oxide nutrition (seed priming + foliar application) is suggestible for soybean (Kosar cultivar) production in the climate conditions like the present study." @default.
- W4366254458 created "2023-04-20" @default.
- W4366254458 creator A5013931075 @default.
- W4366254458 creator A5067116053 @default.
- W4366254458 creator A5076359849 @default.
- W4366254458 creator A5082209622 @default.
- W4366254458 date "2023-08-01" @default.
- W4366254458 modified "2023-10-06" @default.
- W4366254458 title "Nano-Fe nutrition improves soybean physiological characteristics, yield, root features and water productivity in different planting dates under drought stress conditions" @default.
- W4366254458 cites W1966500231 @default.
- W4366254458 cites W1974483933 @default.
- W4366254458 cites W1975473360 @default.
- W4366254458 cites W1975892234 @default.
- W4366254458 cites W1978875536 @default.
- W4366254458 cites W1994994846 @default.
- W4366254458 cites W2007423156 @default.
- W4366254458 cites W2008395373 @default.
- W4366254458 cites W2013787800 @default.
- W4366254458 cites W2031690803 @default.
- W4366254458 cites W2037838222 @default.
- W4366254458 cites W2055909434 @default.
- W4366254458 cites W2065126347 @default.
- W4366254458 cites W2066764287 @default.
- W4366254458 cites W2073867645 @default.
- W4366254458 cites W2074853164 @default.
- W4366254458 cites W2076324398 @default.
- W4366254458 cites W2080394913 @default.
- W4366254458 cites W2080843596 @default.
- W4366254458 cites W2092256421 @default.
- W4366254458 cites W2140791476 @default.
- W4366254458 cites W2496633396 @default.
- W4366254458 cites W2547269372 @default.
- W4366254458 cites W2564219696 @default.
- W4366254458 cites W2612724153 @default.
- W4366254458 cites W2614929645 @default.
- W4366254458 cites W2777809097 @default.
- W4366254458 cites W2808246860 @default.
- W4366254458 cites W2903828346 @default.
- W4366254458 cites W2947191580 @default.
- W4366254458 cites W3034592541 @default.
- W4366254458 cites W3038840718 @default.
- W4366254458 cites W3125160781 @default.
- W4366254458 cites W3176904804 @default.
- W4366254458 cites W3203129698 @default.
- W4366254458 cites W4234382422 @default.
- W4366254458 cites W4293247451 @default.
- W4366254458 doi "https://doi.org/10.1016/j.indcrop.2023.116698" @default.
- W4366254458 hasPublicationYear "2023" @default.
- W4366254458 type Work @default.
- W4366254458 citedByCount "1" @default.
- W4366254458 countsByYear W43662544582023 @default.
- W4366254458 crossrefType "journal-article" @default.
- W4366254458 hasAuthorship W4366254458A5013931075 @default.
- W4366254458 hasAuthorship W4366254458A5067116053 @default.
- W4366254458 hasAuthorship W4366254458A5076359849 @default.
- W4366254458 hasAuthorship W4366254458A5082209622 @default.
- W4366254458 hasConcept C100701293 @default.
- W4366254458 hasConcept C144027150 @default.
- W4366254458 hasConcept C168741863 @default.
- W4366254458 hasConcept C183688256 @default.
- W4366254458 hasConcept C185592680 @default.
- W4366254458 hasConcept C2780560099 @default.
- W4366254458 hasConcept C59822182 @default.
- W4366254458 hasConcept C6557445 @default.
- W4366254458 hasConcept C75639521 @default.
- W4366254458 hasConcept C81444415 @default.
- W4366254458 hasConcept C86803240 @default.
- W4366254458 hasConceptScore W4366254458C100701293 @default.
- W4366254458 hasConceptScore W4366254458C144027150 @default.
- W4366254458 hasConceptScore W4366254458C168741863 @default.
- W4366254458 hasConceptScore W4366254458C183688256 @default.
- W4366254458 hasConceptScore W4366254458C185592680 @default.
- W4366254458 hasConceptScore W4366254458C2780560099 @default.
- W4366254458 hasConceptScore W4366254458C59822182 @default.
- W4366254458 hasConceptScore W4366254458C6557445 @default.
- W4366254458 hasConceptScore W4366254458C75639521 @default.
- W4366254458 hasConceptScore W4366254458C81444415 @default.
- W4366254458 hasConceptScore W4366254458C86803240 @default.
- W4366254458 hasLocation W43662544581 @default.
- W4366254458 hasOpenAccess W4366254458 @default.
- W4366254458 hasPrimaryLocation W43662544581 @default.
- W4366254458 hasRelatedWork W174801042 @default.
- W4366254458 hasRelatedWork W2007069168 @default.
- W4366254458 hasRelatedWork W2187836843 @default.
- W4366254458 hasRelatedWork W2352863304 @default.
- W4366254458 hasRelatedWork W2359429054 @default.
- W4366254458 hasRelatedWork W2361083316 @default.
- W4366254458 hasRelatedWork W2383170081 @default.
- W4366254458 hasRelatedWork W2943377143 @default.
- W4366254458 hasRelatedWork W315938779 @default.
- W4366254458 hasRelatedWork W3088670703 @default.
- W4366254458 hasVolume "198" @default.
- W4366254458 isParatext "false" @default.
- W4366254458 isRetracted "false" @default.
- W4366254458 workType "article" @default.