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Effects of Different Exogenous Substances on Seed Germination of Isatis indigotica Under Drought Stress and Chemical Composition of Isatis indigotica leaves
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作者 Wang Hao Qin Jingjing +4 位作者 Shi Zhe Song Jiayao Ma Wuqiong Wang Huimin Cao Jinjun 《Journal of Northeast Agricultural University(English Edition)》 CAS 2024年第2期66-75,共10页
This study was to investigate the effects of three exogenous substances on chemical constituents of Isatis indigotica leavesand their efficacy in alleviating drought stress, and explore the methods of applying exogeno... This study was to investigate the effects of three exogenous substances on chemical constituents of Isatis indigotica leavesand their efficacy in alleviating drought stress, and explore the methods of applying exogenous substances to efficient cultivationof Isatis indigotica. Polyethylene glycol (PEG) was used to simulate drought stress to deal with seeds of Isatis indigotica at thegermination stage (concentration: 0, 10%, 15%, and 20%). Simultaneous operation of exogenous growth regulators [microbialinoculum (MI), γ-aminobutyric acid (GABA) and salicylic acid (SA)] and PEG were implemented in seeds of Isatis indigotica.The effects of drought stress and the mitigation of exogenous substances were observed by statistics of seed germination potential,germination rate, hypocotyl length, and radicle length of each treatment. The effects of exogenous substances on the content ofalkaloids, crude protein and free amino acids in the leaves of Isatis indigotica grown in a greenhouse were determined after sprayingexogenous substances on the plants. The differences of germination potential, germination rate, hypocotyl length, and radicle lengthamong 15% PEG stress treatment, 10% PEG stress treatment and the control were significant (P<0.05). According to the predesignedgermination standard, the seeds did not germinate under 20% PEG stress treatment. When the PEG concentration was 15%, the resultsof seed germination potential and germination rate after adding MI were significantly different from those under stress alone (P<0.05).When exposed to 10% PEG stress, the supplementation of GABA led to a notable increase in radicle length of Isatis indigotica seeds,showing significant differences compared to other three treatments. The application of MI and GABA under 15% PEG stress resultedin a significant increase in the radicle and hypocotyl length of Isatis indigotica seeds compared to other two treatments. The contentof the total alkaloids in leaves of Isatis indigotica was significantly increased after spraying GABA. Meanwhile, the contents of crudeprotein and the total free amino acids were kept constant after spraying exogenous substances. Application of MI and GABA couldalleviate drought stress of Isatis indigotica. The content of the total alkaloids in leaves of Isatis indigotica could significantly increaseafter spraying GABA. 展开更多
关键词 Isatis indigotica Fort. exogenous growth regulator drought stress chemical composition leaves of Isatis indigotica
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Improving crop drought resistance with plant growth regulators and rhizobacteria: Mechanisms, applications, and perspectives 被引量:5
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作者 Hui Zhang Xiaopeng Sun Mingqiu Dai 《Plant Communications》 SCIE 2022年第1期21-35,共15页
Drought is one of the main abiotic stresses that cause crop yield loss.Improving crop yield under drought stress is a major goal of crop breeding,as it is critical to food security.The mechanism of plant drought resis... Drought is one of the main abiotic stresses that cause crop yield loss.Improving crop yield under drought stress is a major goal of crop breeding,as it is critical to food security.The mechanism of plant drought resistance has been well studied,and diverse drought resistance genes have been identified in recent years,but transferring this knowledge from the laboratory to field production remains a significant challenge.Recently,some new strategies have become research frontiers owing to their advantages of low cost,convenience,strong field operability,and/or environmental friendliness.Exogenous plant growth regulator(PGR)treatment and microbe-based plant biotechnology have been used to effectively improve crop drought tolerance and preserve yield under drought stress.However,our understanding of the mechanisms by which PGRs regulate plant drought resistance and of plant-microbiome interactions under drought is still incomplete.In this review,we summarize these two strategies reported in recent studies,focusing on the mechanisms by which these exogenous treatments regulate crop drought resistance.Finally,future challenges and directions in crop drought resistance breeding are discussed. 展开更多
关键词 abiotic stress drought tolerance exogenous plant growth regulators microbial CROPS
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