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首页> 外文期刊>American Journal of Plant Sciences >Study on the Response and Recovery Characteristics of Different Herbaceous Peony (&i&Paeonia lactiflora&/i& Pall.) Varieties to Waterlogging Stress
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Study on the Response and Recovery Characteristics of Different Herbaceous Peony (&i&Paeonia lactiflora&/i& Pall.) Varieties to Waterlogging Stress

机译:不同草本牡丹(& LT; LT; PAEONIA LACTIFLORA& LT; / i& GT; PALL。)品种对涝屑的反应和恢复特性研究

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The root of herbaceous peony (Paeonia lactiflora Pall.) is fleshy, and different varieties have different tolerance to waterlogging stress. In order to explore its response and recovery characteristics to waterlogging stress, six varieties of herbaceous peony with strong, medium and weak waterlogging tolerance and high ornamental value were selected as experimental materials. After the vegetative growth of each variety was completed, the field simulated waterlogging stress experiment was carried out by the semi-flooded (the water surface is half the height of the flowerpot) pot method. Changes in photosynthetic p arameters, chlorophyll fluorescence parameters, relative water content (R WC), relative conductivity (REC), chlorophyll content, lutein cycle, and leaf microstructure were analyzed during recovery from waterlogging stress and stress relief. The results showed that the time of reaching the most significant difference between CK and tested varieties was different. From the beginning of stress to 60% of the leaves with symptoms, the varieties with strong and m oderate waterlogging tolerance experienced longer time; the proportion of palisade tissue in leaves was larger; the maximum photochemical quantum yield (Fv/Fm) was reduced less; it could increase xanthophyll cycle and heat dissi pation (NPQ) to consume excess light energy, and maintain a higher net ph otosynthetic rate (Pn) for normal growth of plants in a short period of time. The REC in leaves of varieties with weak waterlogging tolerance increased more, and the damage of cell membrane was more serious. After the stress was removed, all indexes recovered to different degrees. Based on our comprehensive analysis, the comprehensive waterlogging resistance of the experimental materials followed the pattern: “Lihong” > “Yangfeichuyu” > “Taohuafeixue” > “Dafugui” > “Qihualushuang” > “Hongxiuqiu”. It is suggested that the variety “Lihong” and “Yangfeichuyu”, with strong comprehensive wa terlogging tolerance, can be selected for propagation and cultivation in areas prone to waterlogging. In the later stage, it is still necessary to further expand the number and scale of varieties, combined with the in-depth study of wa terlogging-resistance genes, so as to provide a theoretical reference for the cu ltivation and production of new waterlogging-resistant varieties.
机译:草本牡丹(芍药叶片Pall。)的根部是肉质的,不同的品种对涝隙的耐受性具有不同的耐受性。为了探讨其对涝渍应激的响应和恢复特性,选择了六种具有强大的耐水性耐水性和耐水性耐受性和高装饰物的草本牡丹作为实验材料。在完成各种品种的营养生长之后,通过半淹水(水面是花盆高度的一半)进行的田间模拟涝渍应力实验。在回收率下,在涝渍应力和应力减轻期间分析了光合作用PARAMETERS,叶绿素荧光参数,相对含水量(R WC),相对导电性(RC),叶绿素含量,叶黄素循环和叶片微观结构。结果表明,达到CK和测试品种之间最显着差异的时间是不同的。从强调的开始到60%的叶子有症状,品种具有强大和m臭臭的耐水性耐受性较长的时间;叶片在叶子中的比例较大;最大光化学量子产量(FV / FM)减少;它可以增加荧光素循环和散热性分子(NPQ)以消耗多余的光能,并在短时间内保持较高的净pH otosynthetic速率(Pn),以便在短时间内进行植物的正常生长。品种叶片叶片较弱的耐受性较大,细胞膜的损伤更严重。压力除去后,所有指数都恢复到不同程度。基于我们的综合分析,实验材料的综合涝渍抗性,遵循图案:“李红”>“杨福玉”>“桃花汇”>“大辉”>“奇汇五”>“洪秀秋”>“洪秀秋”。有人建议,具有强大的全面WA Terlogging耐受性的“Lihong”和“Yangfeichuyu”,可以选择易于涝的地区的传播和培养。在后期的阶段,仍然有必要进一步扩大品种的数量和规模,结合对瓦尔·耐久性基因的深入研究,以便为Cu Liveativation和新的涝渍的产生提供理论参考 - 品种抗性。

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