首页> 外文期刊>International Journal of Agriculture and Biology >Seeds Pretreatment with Zeatins or Maize Grain-Derived Organic Biostimulant Improved Hormonal Contents, Polyamine Gene Expression, and Salinity and Drought Tolerance of Wheat
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Seeds Pretreatment with Zeatins or Maize Grain-Derived Organic Biostimulant Improved Hormonal Contents, Polyamine Gene Expression, and Salinity and Drought Tolerance of Wheat

机译:种子用Zeepins或玉米籽粒衍生的有机化生物诱导剂改善了荷尔蒙含量,多胺基因表达和盐度和盐度的盐度和盐度的预处理

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The strategy of seed priming has been effectively addressed with plant extracts containing biostimulants for healthy growth and productivity of stressful plants. Therefore, the effect of maize grain extract (MGE) on wheat plant performance, hormones, polyamines (PAs) gene expression, and antioxidant system was examined under combined stress compared to synthetic cytokinins (CKs). Cis (c-Z) and trans-zeatin-type cytokinin (t-Z) were the synthetic CKs, and 75 mM NaCl-salinity + 60% of soil water-holding capacity (SWHC) was the combined stress used in this study. C-Z or t-Z was applied as seed priming at 20 μM versus 2% MGE. Under normal conditions, c-Z, t-Z, or MGE pretreatment positively affected wheat growth, grain yield, photosynthetic efficiency, and the contents of soluble sugars, α-tocopherol, ascorbate (AsA) and glutathione (GSH). The redox state of AsA and GSH, the contents of phytohormones, PAs and metabolism enzyme activity of proline, PAs gene expression, and enzymatic activities were also improved. In contrast, malondialdehyde (MDA) and H 2 O 2 contents were reduced compared to the control. Under the combined stress, negative effects were recorded on all above attributes including deleterious increases in Na + , Cl ? , MDA, and H 2 O 2 contents compared to the control. However, c-Z, t-Z, or MGE pretreatment alleviated the combined stress effects and significantly improved all above attributes including significant decreases in Na + , Cl ? , MDA, and H 2 O 2 contents compared to the stressed control. Compared to c-Z or t-Z, seed priming using 2% MGE conferred better results. Therefore, MGE is recommended to promote wheat growth and grain yield by reducing the influences of deficit saline irrigation water-induced oxidative stress.
机译:植物提取物有效地解决了种子引发的策略,含有生物染色剂的植物提取物,用于健康生长和压力植物的生产率。因此,与合成胁迫(CKS)相比,在组合应力下检查了玉米籽粒提取物(MGE)对小麦植物性能,激素,多胺(PAS)基因表达和抗氧化体系的影响。 CIS(C-Z)和Trans-Zeatin型细胞素素(T-Z)是合成CKS,75mM NaCl-Salinity + 60%的土壤水控容量(SWHC)是本研究中使用的组合应力。将C-Z或T-Z施用为种子引发,在20μm与2%架时。在正常条件下,C-Z,T-Z或MGE预处理积极影响小麦生长,籽粒产量,光合效率和可溶性糖,α-生育酚,抗坏血酸(ASA)和谷胱甘肽(GSH)的含量。还改善了繁殖的氧化铈和GSH,植物激素,PAS和代谢酶活性的植物,PAS基因表达和酶活性。相反,与对照相比,丙二醛(MDA)和H 2 O 2含量降低。在综合压力下,对所有上述属性记录了负面影响,包括纳+,CL的有害增加,MDA和H 2 O 2内容与控制相比。然而,C-Z,T-Z或MGE预处理减轻了组合应力效应,并显着改善了上述所有属性,包括Na +,Cl中的显着降低,MDA和H 2 O 2内容与压力控制相比。与C-Z或T-Z相比,使用2%MGE的种子引发赋予了更好的结果。因此,建议通过降低缺陷盐水灌溉水诱导的氧化应激的影响来促进小麦生长和籽粒产量。

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