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首页> 外文期刊>HortScience >Exogenous Application of Nitrogen and Cytokinin on Growth, Carbohydrate, and Antioxidant Metabolism of Creeping Bentgrass after De-submergence
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Exogenous Application of Nitrogen and Cytokinin on Growth, Carbohydrate, and Antioxidant Metabolism of Creeping Bentgrass after De-submergence

机译:氮和细胞分裂素对淹没后ent草生长,碳水化合物和抗氧化代谢的外源应用

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Recovery from submergence stress is vital for plant regrowth. The objective of this study was to characterize plant growth, carbohydrate, and antioxidant metabolism of creeping bentgrass (Agrostis stolonifera) to foliar application of nitrogen and cytokinin (CK) after de-submergence. Creeping bentgrass (cv. Penncross and 007) were submerged under the water for 14 days and then foliar-sprayed at 1, 2, 3, 7, and 14 days after de-submergence with six types of chemical treatments, respectively: 1) water (W); 2) 10 mM urea (N10); 3) 20mM urea (N20); 4) 10 mM CK; 5) N10 with CK (N10CK); and 6) N20 with CK (N20CK). Leaves were harvested at 20 days after chemical applications for various measurements. Compared with the nonstressed plants, plant height (HT), chlorophyll index (Chl), leaf dry weight (DW), water-soluble carbohydrate content (WSC), activities of superoxide dismutase (SOD), and ascorbate peroxidase (APX) decreased, but catalase (CAT) and peroxidase (POD) activities, malondialdehyde (MDA), and total soluble protein (TSP) content increased in both cultivars exposed to 14 days of submergence. After de-submergence, plants treated with N alone (N10, N20) or combined with CK (N10CK, N20CK) generally had higher HT, DW, Chl, TSP, and a lower amount ofMDA, compared with treatments of W or CK alone, whereas treatment using CK resulted in higher WSC for both cultivars. Foliar applications of N and CK had some effect on SOD, CAT, POD, and APX activities after de-submergence, but the effects were not consistent across chemicals and cultivars. The results indicated that foliar application of N or combinedwith CK promoted plant growth and reduced lipid peroxidation after de-submergence. The results also suggested a more positive role of foliar N application in comparison with a complex regulation of CK on creeping bentgrass regrowth after de-submergence.
机译:从淹没胁迫中恢复对植物再生至关重要。这项研究的目的是表征脱液后creep草(Agrostis stolonifera)在叶面施用氮和细胞分裂素(CK)时的植物生长,碳水化合物和抗氧化代谢。将蠕生的草根草(分别为Penncross和007)在水中浸没14天,然后在浸没后分别用六种化学处理方法在1、2、3、7和14天进行叶面喷洒:1)水(W); 2)10 mM尿素(N10); 3)20mM尿素(N20); 4)10 mM CK; 5)N10带CK(N10CK); 6)N20带CK(N20CK)。化学施用后第20天收获叶片用于各种测量。与未胁迫的植物相比,植物高度(HT),叶绿素指数(Chl),叶干重(DW),水溶性碳水化合物含量(WSC),超氧化物歧化酶(SOD)和抗坏血酸过氧化物酶(APX)降低,但是暴露于淹水14天的两个品种中的过氧化氢酶(CAT)和过氧化物酶(POD)活性,丙二醛(MDA)和总可溶性蛋白(TSP)含量均增加。淹没后,与单独处理W或CK相比,单独使用N(N10,N20)或与CK组合(N10CK,N20CK)处理的植物通常具有较高的HT,DW,Chl,TSP和较低的MDA,而使用CK处理的两个品种的WSC更高。叶面施用N和CK对淹没后SOD,CAT,POD和APX的活性有一定影响,但不同化学品和品种的影响不一致。结果表明,叶面施用N或与CK结合可促进植物的生长,并降低去水后的脂质过氧化作用。研究结果还表明,与叶面施肥相比,深层淹没后CK对蔓延的草丛回生有复杂的调控作用,叶面施氮更为积极。

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