Lourenço Isabella Martins, Freire Bruna Moreira, Pieretti Joana Claudio, Reis Roberta Albino Dos, Soares Nicolas Martins, Santos Marcelo da Luz, Batista Bruno Lemos, Seabra Amedea Barozzi, Lange Camila Neves
Center for Natural and Human Sciences (CCNH), Federal University of ABC (UFABC), Santo André 09210-580, SP, Brazil.
Antioxidants (Basel). 2023 Oct 17;12(10):1871. doi: 10.3390/antiox12101871.
Zinc is an important nutrient for several plants and humans. Nitric oxide (NO) is a free radical that is important to biological processes that mediate the growth and mitigation of biotic and abiotic stresses in plants. The present study investigated the enzymatic and photosynthetic profile and the accumulation of macro- and microelements in rice plants ( L.) that received foliar treatments of zinc oxide nanoparticles (ZnO NPs), nitric oxide donor (GSNO), and the association of both (GSNO-ZnO NPs). Zinc concentration in rice husks increased by 66% and 68% in plants treated with ZnO NPs and GSNO-ZnO NPs, respectively. The GSNO treatment caused an increase of 25% in the Fe concentration in the rice grains. Only a small disturbance of the antioxidant system was observed, with increases in HO, S-NO, and NO, mainly in the group treated with GSNO-ZnO NPs; however, the disturbance did not affect the yield, the growth, or vital processes, such as as photosynthetic pigments production. There was an increase in chlorophyll B of 290% and an increase in chlorophyll A of 187% when ZnO NPs was applied. GSNO-ZnO NPs increased chlorophyll B by 345% and chlorophyll A by 345%, indicating that the treatments GSNO, ZnO NPs, and GSNO-ZnO NPs reduced possible oxidative stress and helped as protective treatments.
锌是多种植物和人类所需的重要营养素。一氧化氮(NO)是一种自由基,对介导植物生物和非生物胁迫的生长与缓解的生物过程至关重要。本研究调查了接受氧化锌纳米颗粒(ZnO NPs)、一氧化氮供体(GSNO)以及二者组合(GSNO-ZnO NPs)叶面处理的水稻植株(L.)的酶活性和光合特性,以及大量元素和微量元素的积累情况。用ZnO NPs和GSNO-ZnO NPs处理的植株,稻壳中的锌浓度分别增加了66%和68%。GSNO处理使水稻籽粒中的铁浓度增加了25%。仅观察到抗氧化系统有轻微扰动,主要在GSNO-ZnO NPs处理组中,HO、S-NO和NO有所增加;然而,这种扰动并未影响产量、生长或诸如光合色素产生等生命过程。施用ZnO NPs时,叶绿素B增加了290%,叶绿素A增加了187%。GSNO-ZnO NPs使叶绿素B增加了345%,叶绿素A增加了345%,表明GSNO、ZnO NPs和GSNO-ZnO NPs处理减轻了可能的氧化应激,起到了保护作用。