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Evaluation of Silicon and Proline Application on the Oxidative Machinery in Drought-Stressed Sugar Beet

机译:硅和脯氨酸应用对干旱糖甜菜氧化机械的应用

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摘要

Drought stress deleteriously affects growth, development and productivity in plants. So, we examined the silicon effect (2 mmol) and proline (10 mmol) individually or the combination (Si + proline) in alleviating the harmful effect of drought on total phenolic compounds, reactive oxygen species (ROS), chlorophyll concentration and antioxidant enzymes as well as yield parameters of drought-stressed sugar beet plants during 2018/2019 and 2019/2020 seasons. Our findings indicated that the root diameter and length (cm), root and shoot fresh weights (g plant−1) as well as root and sugar yield significantly decreased in sugar beet plants under drought. Relative water content (RWC), nitrogen (N), phosphorus (P) and potassium (K) contents and chlorophyll (Chl) concentration considerably reduced in stressed sugar beet plants that compared with control in both seasons. Nonetheless, lipid peroxidation (MDA), electrolyte leakage (EL), hydrogen peroxide (H2O2) and superoxide (O2●−) considerably elevated as signals of drought. Drought-stressed sugar beet plants showed an increase in proline accumulation, total phenolic compounds and up-regulation of antioxidant enzymes catalase (CAT) and superoxide dismutase (SOD) activity to mitigate drought effects. Si and proline individually or the combination Si + proline considerably increased root and sugar yield, sucrose%, Chl concentration and RWC, MDA and EL were remarkably reduced. The treatments led to adjust proline and total phenolic compounds as well as CAT and SOD activity in stressed sugar beet plants. We concluded that application of Si + proline under drought stress led to improve the resistance of sugar beet by regulating of proline, antioxidant enzymes, phenolic compounds and improving RWC, Chl concentration and Nitrogen, Phosphorus and Potassium (NPK) contents as well as yield parameters.
机译:干旱压力有害地影响植物的生长,发展和生产力。因此,我们将硅效应(2mmol)和脯氨酸(10mmol)单独或组合(Si + ProLine)进行了缓解,减轻了干旱对总酚类化合物,反应性氧物质(ROS),叶绿素浓度和抗氧化酶的有害作用以及在2018/2019年至2019/2020赛季期间干旱糖甜菜植物的产量参数。我们的研究结果表明,在干旱下,根直径和长度(Cm),根部和芽鲜重(G植物-1)以及根本和糖产量显着降低。相对含水量(RWC),氮(N),磷(P)和钾(K)含量和叶绿素(CHL)浓度在应激甜菜植物中显着减少,与两个季节的控制相比。尽管如此,脂质过氧化(MDA),电解质泄漏(EL),过氧化氢(H 2 O 2)和超氧化氢(O2● - )随着干旱的信号而显着升高。干旱糖甜菜植物显示脯氨酸积累,酚类化合物总酚类化合物和抗氧化酶过氧化酶(猫)和超氧化物歧化酶(SOD)活性的增加,以减轻干旱作用。 Si和脯氨酸单独或组合Si +脯氨酸显着增加了根和糖产量,蔗糖%,CHL浓度和RWC,MDA和EL显着降低。该治疗导致调节脯氨酸和总酚类化合物以及患有糖甜菜植物中的猫和SOD活性。我们得出结论,通过调节脯氨酸,抗氧化酶,酚类化合物和改善RWC,CHL浓度和氮,磷和钾(NPK)含量以及产量参数,在干旱胁迫下施用Si +脯氨酸导致糖浆的抗性。 。

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