Matches in SemOpenAlex for { <https://semopenalex.org/work/W4360604181> ?p ?o ?g. }
- W4360604181 endingPage "107651" @default.
- W4360604181 startingPage "107651" @default.
- W4360604181 abstract "Salinity is one of the major abiotic stresses for sustainable agriculture. The use of mineral nutrients in form of nanoparticles can be a novel strategy to fight against abiotic stresses. An in vitro study has been conducted to investigate the effect of zinc oxide nanoparticles (ZnO NPs) capped with glycine betaine (ZnOBt) on coriander plants exposed to saline (NaCl) stress. SEM and XRD analysis revealed 14.73 nm and 17.34 nm size of ZnO and ZnOBt NPs, respectively with spherical to hexagonal structures. Coriander plant length and biomass increased by the application of ZnO and ZnOBt NPs. ZnOBt NPs depicted promising results at 100 mg/L where, shoot and root length increased up to 14 cm and 13 cm, respectively as compared to plants grown under saline stress. ZnOBt NPs also increased fresh and dry weight of shoots and roots as compared to other treatments. The results depict that ZnOBt NPs mitigated stress condition. This is evident from concentration of phenolic and flavonoid contents that decreased in both roots and shoots. Free radical scavenging activity, total antioxidant capacity and total reducing power also decreased in plants by ZnOBt NPs when applied with stress. The concentration of superoxide and peroxide dismutase also decreased by application of ZnOBt NPs to salt stress plants. Glycine betaine with ZnO NPs, in conclusion, can be an effective remedy for salinity-exposed plants. These nanoparticles can be encouraged as a viable technique to overcome the detrimental effects of saline stress on plants." @default.
- W4360604181 created "2023-03-24" @default.
- W4360604181 creator A5016555724 @default.
- W4360604181 creator A5082519246 @default.
- W4360604181 date "2023-04-01" @default.
- W4360604181 modified "2023-10-13" @default.
- W4360604181 title "Glycine betaine capped ZnO NPs eliminate oxidative stress to coriander plants grown under NaCl presence" @default.
- W4360604181 cites W1905767111 @default.
- W4360604181 cites W1964142268 @default.
- W4360604181 cites W1965032851 @default.
- W4360604181 cites W1968511432 @default.
- W4360604181 cites W1976015049 @default.
- W4360604181 cites W1976049943 @default.
- W4360604181 cites W1991796551 @default.
- W4360604181 cites W2002547797 @default.
- W4360604181 cites W2006831854 @default.
- W4360604181 cites W2010660011 @default.
- W4360604181 cites W2024556021 @default.
- W4360604181 cites W2035600955 @default.
- W4360604181 cites W2039756591 @default.
- W4360604181 cites W2053005925 @default.
- W4360604181 cites W2057340149 @default.
- W4360604181 cites W2063064548 @default.
- W4360604181 cites W2071328813 @default.
- W4360604181 cites W2079302736 @default.
- W4360604181 cites W2095377596 @default.
- W4360604181 cites W2105751976 @default.
- W4360604181 cites W2129665198 @default.
- W4360604181 cites W2129783363 @default.
- W4360604181 cites W2132865032 @default.
- W4360604181 cites W2148717014 @default.
- W4360604181 cites W2148874125 @default.
- W4360604181 cites W2156383411 @default.
- W4360604181 cites W2166902958 @default.
- W4360604181 cites W2333878386 @default.
- W4360604181 cites W2337563599 @default.
- W4360604181 cites W2344969974 @default.
- W4360604181 cites W2409955350 @default.
- W4360604181 cites W2509029937 @default.
- W4360604181 cites W2520090817 @default.
- W4360604181 cites W2526904641 @default.
- W4360604181 cites W2583070072 @default.
- W4360604181 cites W2597360386 @default.
- W4360604181 cites W2613922382 @default.
- W4360604181 cites W2626991156 @default.
- W4360604181 cites W2766277986 @default.
- W4360604181 cites W2774532407 @default.
- W4360604181 cites W2810421110 @default.
- W4360604181 cites W2886402127 @default.
- W4360604181 cites W2898145335 @default.
- W4360604181 cites W2904172380 @default.
- W4360604181 cites W2906437490 @default.
- W4360604181 cites W2913797511 @default.
- W4360604181 cites W2919116612 @default.
- W4360604181 cites W2920901855 @default.
- W4360604181 cites W2921715624 @default.
- W4360604181 cites W2964323354 @default.
- W4360604181 cites W2979338179 @default.
- W4360604181 cites W2981783798 @default.
- W4360604181 cites W2998970421 @default.
- W4360604181 cites W3007884803 @default.
- W4360604181 cites W3009652201 @default.
- W4360604181 cites W3010611687 @default.
- W4360604181 cites W3023774309 @default.
- W4360604181 cites W3028044331 @default.
- W4360604181 cites W3034912005 @default.
- W4360604181 cites W3048265522 @default.
- W4360604181 cites W3083694385 @default.
- W4360604181 cites W3109062081 @default.
- W4360604181 cites W3130266290 @default.
- W4360604181 cites W3139949846 @default.
- W4360604181 cites W3153550637 @default.
- W4360604181 cites W3161429546 @default.
- W4360604181 cites W3181909500 @default.
- W4360604181 cites W4213453867 @default.
- W4360604181 cites W4220666285 @default.
- W4360604181 cites W4224700189 @default.
- W4360604181 cites W4288070294 @default.
- W4360604181 cites W4289516762 @default.
- W4360604181 cites W4291535903 @default.
- W4360604181 doi "https://doi.org/10.1016/j.plaphy.2023.107651" @default.
- W4360604181 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/36989991" @default.
- W4360604181 hasPublicationYear "2023" @default.
- W4360604181 type Work @default.
- W4360604181 citedByCount "1" @default.
- W4360604181 crossrefType "journal-article" @default.
- W4360604181 hasAuthorship W4360604181A5016555724 @default.
- W4360604181 hasAuthorship W4360604181A5082519246 @default.
- W4360604181 hasConcept C104317684 @default.
- W4360604181 hasConcept C129513315 @default.
- W4360604181 hasConcept C134018914 @default.
- W4360604181 hasConcept C13965031 @default.
- W4360604181 hasConcept C144027150 @default.
- W4360604181 hasConcept C178790620 @default.
- W4360604181 hasConcept C185592680 @default.
- W4360604181 hasConcept C18903297 @default.
- W4360604181 hasConcept C21410773 @default.
- W4360604181 hasConcept C2777248517 @default.