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β-Aminobutyric Acid Promotes Germination of Aged Triticale Seeds and Alleviates Oxidative Stress
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作者 Tetiana O.Yastreb Mykola V.Shevchenko +2 位作者 Liubov N.Kobyzeva Alexander I.Oboznyi Yuriy E.Kolupaev 《Phyton-International Journal of Experimental Botany》 2025年第10期3125-3143,共19页
β-Aminobutyric acid(BABA)is a physiologically active plant compound that has not been extensively studied.It has been shown to increase resistance to biotic and abiotic stress factors and enhance seed germination in ... β-Aminobutyric acid(BABA)is a physiologically active plant compound that has not been extensively studied.It has been shown to increase resistance to biotic and abiotic stress factors and enhance seed germination in certain plant species.However,its effects on cereal grains with low germination rates have not yet been studied.This study investigated the effects of BABA on the germination of aged triticale seeds,the metabolite content of seedlings,and the state of their antioxidant systems.The study found that a three-hour treatment of seeds in BABA solutions at concentrations ranging from 0.1 to 1.0 mM increased germination energy and germination(by 10%–14%)and enhanced the accumulation of shoot and root biomass(by 17%–26%).Additionally,amylase activity increased in the grains,and the accumulation of osmolytes(sugars and proline)increased in the shoots.The content of anthocyanins in shoots increased by almost twofold,and the activity of antioxidant enzymes(superoxide dismutase,catalase,and guaiacol peroxidase)increased by approximately 20%–30%.Simultaneously,BABA seed priming caused a noticeable decrease in the levels of hydrogen peroxide and lipid peroxidation products in the shoots of seedlings.The conclusion was made that the use of BABA as a bioregulator has the potential to enhance the germination of seeds with low sowing qualities.This is due to the ability of BABA to activate the metabolism of reserve substances in the grain and prevent the development of oxidative stress. 展开更多
关键词 Antioxidant system β-aminobutyric acid carbohydrate metabolism PRIMING secondary metabolites seed aging seed germination ×triticosecale
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应用模糊综合评判法评价小黑麦的抗旱性 被引量:8
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作者 李诚 孔广超 +3 位作者 曹连莆 李春艳 李卫华 李召锋 《湖北农业科学》 北大核心 2012年第13期2682-2684,2687,共4页
运用模糊综合评判法对19个小黑麦(Triticosecale wittmack)品种(系)与抗旱性相关的性状进行了综合评价。结果表明,08草鉴15、07草品11、05草鉴2、08草鉴13和06草鉴5的抗旱性较强。参试大部分品种(系)经干旱胁迫处理后综合性状优于对照... 运用模糊综合评判法对19个小黑麦(Triticosecale wittmack)品种(系)与抗旱性相关的性状进行了综合评价。结果表明,08草鉴15、07草品11、05草鉴2、08草鉴13和06草鉴5的抗旱性较强。参试大部分品种(系)经干旱胁迫处理后综合性状优于对照品种新小黑麦3号,表明大部分参试高世代品种(系)的抗旱性较强。 展开更多
关键词 小黑麦(triticosecale wittmack) 抗旱性 模糊综合评判法
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小黑麦TwNA C01基因功能分析 被引量:4
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作者 王萌 任丽彤 +4 位作者 凌悦铭 谷海涛 艾尼瓦尔·江 李召锋 孔广超 《分子植物育种》 CAS CSCD 北大核心 2020年第16期5221-5229,共9页
NAC是一类调控植物发育、衰老、生物与非生物逆境以及在激素反应方面具有重要作用的转录因子。为解析小黑麦TwNAC01基因的初步功能,本研究以从六倍体小黑麦中克隆到NAC转录因子基因TwNAC01为基础,构建了过表达载体pCAMBIA1300-35S-Tw NA... NAC是一类调控植物发育、衰老、生物与非生物逆境以及在激素反应方面具有重要作用的转录因子。为解析小黑麦TwNAC01基因的初步功能,本研究以从六倍体小黑麦中克隆到NAC转录因子基因TwNAC01为基础,构建了过表达载体pCAMBIA1300-35S-Tw NAC01,并通过蘸花法转化拟南芥,获得转基因拟南芥株系,对转基因与野生型拟南芥在干旱胁迫下的该基因表达量与相关生理指标进行了检测。结果表明,在干旱胁迫下,TwNAC01基因在拟南芥根部表达量显著高于叶部,同时在转Tw NAC01基因植株根和叶部的表达量均显著高于野生型及转空载体拟南芥。转TwNAC01基因拟南芥叶片在干旱胁迫下失水率较转空载体和野生型拟南芥降低,其电导率、H2O2和MDA含量较转空载体及野生型株系显著降低,但叶片含水量在转TwNAC01基因株系与较转空载体及野生型株系间差异不显著,而转Tw NAC01基因拟南芥根系长度分别是野生型和转空载体拟南芥根系长度的1.5倍和1.2倍,差异显著。可见Tw NAC01在拟南芥根部优势表达,其优势表达促进了根系的伸长,提高了拟南芥抗旱能力。本研究对于理解小黑麦的抗旱分子机制提供了重要依据,也为小黑麦抗旱育种奠定了分子基础。 展开更多
关键词 小黑麦(×triticosecale Wittmack) TwNA C01 NAC转录因子 表达载体
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