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Molecular mechanism study of Astragalus adsurgens Pall synergistically induced by plasma and plasma-activated water
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作者 Yibing LI Tao ZHANG +2 位作者 Zhiqing SONG Changjiang DING Hao CHEN 《Plasma Science and Technology》 SCIE EI CAS CSCD 2022年第7期172-186,共15页
The mutagenic effects of discharge plasma and plasma+PAW(plasma and its activated water combined) on Astragalus adsurgens Pall seeds were explored. Needle array-plate dielectric-barrier discharge plasma was used to tr... The mutagenic effects of discharge plasma and plasma+PAW(plasma and its activated water combined) on Astragalus adsurgens Pall seeds were explored. Needle array-plate dielectric-barrier discharge plasma was used to treat A. adsurgens Pall seeds and PAW was prepared at the same time.The deionized water and the obtained PAW were used to cultivate plasma-treated seeds in groups and the survival rate of each group was counted. Results showed that the survival rate of the treated seeds of A. adsurgens Pall when cultured with deionized water was not significantly different from that of the control check(CK). The culture with PAW had an obvious lethal effect and each group reached the half-lethal dose. Reactive oxygen species(ROS) and RNA-Seq analysis of seedlings in the 3 h treatment group showed that the content of ROS in the 3 d post-treatment group was significantly higher than that of the CK. Because expression of the gene with the function of scavenging superoxide free radicals was upregulated, the ROS content of seedlings on the sixth day was significantly lower than that on the third day. Plasma and plasma+PAW treatments changed a large number of gene expressions;particularly, the plasma+PAW group caused plant-growth genes to be significantly upregulated. After treatment, the seedlings of A. adsurgens Pall may grow faster and have higher nutritional value. This research is of great significance to the wider application of isoelectronic bodies and their activated water physicochemical mutagens in biological effects and breeding research. 展开更多
关键词 astragalus adsurgens pall plasma activated water(PAW) PLASMA RNA-SEQ molecular mechanisms
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低压直流电场对沙打旺生长及根系土壤酶活的影响 被引量:1
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作者 成新艳 凌梦 +4 位作者 邓流阳 杜梦琳 杨滢滢 王陈 陈珂 《湖北农业科学》 2021年第8期102-106,共5页
使用不同强度的低压直流电场对沙打旺(Astragalus adsurgens Pall.)幼苗进行处理,加电30 d后测定植物株高、株茎、根长、生物量、叶绿素含量、荧光动力学参数、抗氧化酶活性、根系土壤酶活的变化。结果表明,在沙打旺幼苗的生长过程中,施... 使用不同强度的低压直流电场对沙打旺(Astragalus adsurgens Pall.)幼苗进行处理,加电30 d后测定植物株高、株茎、根长、生物量、叶绿素含量、荧光动力学参数、抗氧化酶活性、根系土壤酶活的变化。结果表明,在沙打旺幼苗的生长过程中,施加0~0.8 V/cm强度的低压直流电场,随着电场强度的增加,阳极区、中间区、阴极区3个区域沙打旺的光化学效率Fv/Fm都有一定程度的提高,且显著高于对照。沙打旺叶绿素a和叶绿素b的含量、抗氧化酶活性(CAT、POD、SOD)、株高、株茎、根长、鲜重、地上生物量和地下生物量均随着电场强度的升高呈低促高抑的趋势。当电场强度为0.2~0.4 V/cm时,不同区域的沙打旺理化指标和土壤酶活各项参数均得到了不同程度的提高,而当电场强度为0.8 V/cm时,沙打旺的相关参数受到了抑制。0.2~0.4 V/cm的电场强度在一定程度上能刺激沙打旺的生长,可能是强化沙打旺幼苗生长的适宜电场强度范围,而0.8 V/cm电场强度则会对沙打旺的生理及其根系土壤造成胁迫,使其无法得到良好的生长。 展开更多
关键词 沙打旺(astragalus adsurgens pall.) 直流电场 生理指标 土壤酶活
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