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1.
He—Ne激光对小麦幼苗增强UV—B辐射损伤的修复效应   总被引:16,自引:3,他引:13  
采用 He- Ne激光辐照对增强 UV- B辐射后小麦幼苗的损伤修复作用进行了研究。小麦种子在盛有湿滤纸的培养皿内 2 5℃下进行萌发。萌发后小麦幼苗在光合有效辐射 (PAR)为 2 2 0 μmol· m- 2 · S- 1的光背景下 ,经 1 0 .0 8k J·m- 2 · d- 1的增强 UV- B辐射 ,然后再用 5m W· mm- 2的 He- Ne激光进行辐照。通过小麦幼苗丙二醛 (MDA)、抗坏血酸 (As A)、超氧化物歧化酶 (SOD)和紫外吸收物含量及活性的变化 ,测定了 He- Ne激光对小麦 UV- B损伤修复的作用。结果显示 ,MDA、SOD、As A和紫外吸收物的变化同小麦幼苗损伤修复的能力相关联。He- Ne激光辐照可使 UV- B辐射后小麦幼苗 MDA的含量明显减少、As A含量明显增加、SOD活性增强及紫外吸收物含量显著增加。说明增强 UV- B对小麦幼苗生理水平的辐射损伤 ,能够被一定剂量的 He- Ne激光辐照而得到部分修复。但是 ,采用同等波长和功率的红光照射 ,其 MDA、SOD、As A和紫外吸收物均无明显变化 ,证明激光的促进修复作用并非由激光的光效应所致  相似文献   

2.
孙永星  李晓阳  张玲  韩榕 《激光生物学报》2011,20(6):723-728,757
采用5 mW·mm-2He-Ne激光辐照、10.08 kJ·m-2d-1 UV-B辐射及二者组合对冬小麦“临优2018”幼苗进行处理,研究各处理组幼苗根过氧化物酶(POD)、过氧化氢酶(CAT)和超氧化物歧化酶(SOD)活性及同工酶变化.研究结果显示,增强UV-B辐射能抑制POD、CAT和SOD的活性,差异显著,关闭了...  相似文献   

3.
He-Ne激光对UV-B辐射小麦幼苗抗氧化系统的影响   总被引:9,自引:1,他引:8  
分别采用5 mW.mm-2He-Ne激光辐照、10.08 kJ.m-2.d-1的UV-B辐射及二者组合对‘晋麦8号’小麦幼苗进行处理,5 d后测定各处理幼苗叶片超氧阴离子(O 2)产生速率,丙二醛(MDA)、谷胱甘肽还原酶(GR)、抗坏血酸过氧化物酶(APX)、抗坏血酸(AsA)及类胡萝卜素(Car)的变化,分析He-Ne激光对增强UV-B辐射引起小麦损伤的修复效应。结果显示:He-Ne激光辐照可使UV-B辐射后小麦幼苗超氧阴离子的产生速率和MDA含量均减小,GR和APX活性升高,AsA和Car含量增加。表明超氧阴离子的产生速率、MDA、GR、APX、AsA和Car变化同小麦幼苗损伤修复的能力相关,一定剂量的He-Ne激光辐照可部分修复增强UV-B对小麦幼苗抗氧化系统的辐射损伤。  相似文献   

4.
He-Ne激光对增强UV-B辐射小麦细胞膜的影响   总被引:1,自引:1,他引:0  
采用He-Ne激光 5mW·mm-2 辐照方法,对增强UV-B 10.08kJ·m-2·d-1 辐射小麦细胞膜损伤进行修复的研究.结果表明:经He-Ne激光和UV-B复合处理后,小麦细胞膜表面电荷的电泳速度高于UV-B处理组,小麦的MDA含量比单独UV-B辐射后的低,SOD酶的活性增强.说明He-Ne激光和增强UV-B辐射复合处理后可使小麦的氧化酶活性增强,从而使MDA的浓度降低,小麦细胞膜损伤得到了一定程度的修复.  相似文献   

5.
云南报春花SOD、POD酶量月际性变化与UV-B辐射关系的研究   总被引:3,自引:1,他引:2  
利用低纬高原地区获得部分不同地区紫外辐射观测资料,研究不同地区紫外辐射月际性差异引起云南报春花SOD、POD酶量的差异变化,探讨在自然环境条件下,UV-B辐射对植物体内SOD、POD的影响。结果表明: (1)在低纬高原地区UV-B辐射强度变化具有特殊性和复杂性;(2)当报春花处于幼苗生长期(2月)时,UV-B辐射强度小,SOD、POD活性表现较弱;进入生长旺盛期和开花期(3月、4月),UV-B辐射增强,此时SOD、POD活性也随之增强;进入衰老期(5月),而UV-B继续增强,植物SOD、POD酶活性下降。  相似文献   

6.
以小麦品种‘西农88’(Triticum aestivum L.,cv.Xinong 88)为材料,研究了外源施加不同浓度茉莉酸(1、2.5、5、10 mmol/L)对UV-B辐射(1.5 kJ·m-2·d-1)下小麦幼苗光合色素、抗氧化酶、丙二醛、游离脯氨酸、紫外吸收物、花青素、根系活力等生理指标以及对其生长的影响,探讨了茉莉酸在UV-B辐射胁迫中的可能作用及其作用机制.研究结果表明,外源茉莉酸对小麦幼苗生理指标产生显著影响,并且表现出浓度效应,其中较低浓度的茉莉酸(1 mmol/L和2.5 mmol/L)能明显提高小麦幼苗的UV-B抗性.表现为低浓度茉莉酸显著提高UV-B辐射下小麦幼苗叶片中的总叶绿素含量、过氧化氢酶(CAT)、过氧化物酶(POD)和超氧化物歧化酶(SOD)活性.并且外源施加的茉莉酸还能够增加小麦幼苗的游离脯氨酸含量,降低脂质过氧化水平,提高花青素含量,增强根系活力.可见,茉莉酸通过提高小麦幼苗的抗氧化酶活性,增加渗透调节物含量以及保护性色素含量,从而缓解膜脂过氧化程度和提高防御物质含量,进而增强植物抵抗UV-B辐射胁迫的能力,保证小麦幼苗正常生长.  相似文献   

7.
周璇  贾志鹏  王娟  杜梅娜  苏雪 《广西植物》2020,40(11):1595-1601
该文以青藏高原特有木本植物肋果沙棘为材料,在62 μW·cm-2的UV-B辐射强度下,分别测定处理了0~6 d幼苗叶片的氧化损伤程度、抗氧化系统酶活性和总黄酮含量及其抗氧化活性,以探究肋果沙棘对UV-B辐射的生理生态响应机制。结果表明:随UV-B辐射时间的增加,肋果沙棘幼苗过氧化氢含量(H2O2)和膜脂过氧化产物(MDA)显著增加; 抗氧化系统酶中过氧化氢酶(CAT)活性显著升高; 过氧化物酶(POD)、抗坏血酸过氧化物酶(APX)活性呈先降后升的趋势,且活性均显著低于对照,超氧化物歧化酶(SOD)活性无明显变化; 总黄酮含量随辐射时间的积累显著增加,作为非酶抗氧化物质的总黄酮对1,1-二苯基-2-苦基肼(DPPH)的清除率与其含量变化具有显著正相关关系。综上结果表明,肋果沙棘幼苗在抵御该辐射产生的氧化损伤中,通过提高CAT活性及增加总黄酮含量来抵御辐射造成的氧化损伤  相似文献   

8.
He-Ne激光对小麦幼苗增强UV-B辐射损伤的修复研究   总被引:2,自引:2,他引:0  
分别采用5mW·mm-2He-Ne激光辐照和增强UV-B辐射(10.08kJ·m-2·d-1)及其二者组合对晋麦8号小麦幼苗进行处理,5d后测定各处理幼苗叶片可溶性蛋白、硝酸还原酶和谷氨酸脱氢酶活性的变化以分析He-Ne激光对小麦幼苗受增强UV-B损伤的修复作用.结果显示:He-Ne激光辐照可使UV-B辐射后小麦幼苗叶片的可溶性蛋白含量增加,谷氨酸脱氢酶活性增强,而使硝酸还原酶活性先升高后降低.表明小麦幼苗叶片可溶性蛋白、谷氨酸脱氢酶、硝酸还原酶的变化同小麦幼苗损伤修复的能力相关,一定剂量的He-Ne激光辐照可部分修复增强UV-B对小麦幼苗氮代谢水平的辐射损伤.  相似文献   

9.
马晓丽  郝金花  韩榕 《植物研究》2007,27(6):669-673
采用He-Ne激光辐照对增强UV-B辐射后小麦幼苗的损伤修复作用进行了研究。小麦种子在盛有湿滤纸的培养皿内25℃下进行萌发。萌发后小麦幼苗在经10.08 kJ·m-2·d-1的增强UV-B辐射,然后再用5 mW·mm-2的He-Ne激光进行辐照。通过小麦幼苗叶片游离脯氨酸含量、多胺氧化酶和过氧化物酶的活性变化,测定了He-Ne激光对小麦UV-B损伤的修复情况。结果表明,游离脯氨酸、多胺氧化酶、过氧化物酶的变化同小麦幼苗损伤的修复的能力相关联。He-Ne激光辐照可使由增强UV-B辐射后诱导叶片升高的游离脯氨酸含量降低。增强UV-B辐射对多胺氧化酶(PAO)活性和过氧化物酶(POD)活性呈促进的作用。辐射6 d后PAO和POD总的活性呈正相关性,PAO和POD活性都呈现B组最高,L组最低,且差异显著。显示He-Ne激光对两种酶由于增强UV-B辐照造成的伤害有一定的修复。  相似文献   

10.
He-Ne激光对增强UV-B辐射下小麦幼苗膜脂过氧化的缓解作用   总被引:3,自引:0,他引:3  
采用He-Ne激光(5 mW/mm2)辐照增强UV-B辐射(10.08 kJ/m2.d)的晋麦8号小麦幼苗,通过测定小麦幼苗叶片细胞质膜透性、丙二醛(MDA)的含量以及脂氧合酶(LOX)、过氧化氢酶(CAT)、抗坏血酸过氧化物酶(APX)和谷光苷肽过氧化物酶(GPX)的活性变化,研究He-Ne激光对增强UV-B辐射的小麦幼苗膜脂过氧化的影响。结果显示,He-Ne激光辐照可使经UV-B辐射后小麦幼苗叶片质膜相对透性、MDA含量、LOX活性降低,而使CAT、APX和GPX的活性均升高。分析表明UV-B辐射增强可导致膜脂过氧化加剧,而一定剂量的He-Ne激光能够通过促进酶促抗氧化系统酶的活性来缓解紫外线辐射下小麦幼苗的膜脂过氧化作用。  相似文献   

11.
Sterilized seeds of Isatis indigotica (Brassicacae) were divided into four groups based on irradiation pretreatments. These control groups (C) were non irradiated, He–Ne laser treated seeds (L), UV-B treated seeds (B) and He–Ne laser followed by UV-B radiation treated seeds (LB). Laser radiation was provided by He–Ne laser, UV-B radiation was provided by filtered Qin brand 30 W fluorescent sun lamps. Malondialdehyde (MDA), proline, UV-B absorbing compounds and ascorbic acid (AsA) concentrations, as well as, the activities of superoxide dismutase (SOD), catalase (CAT) and peroxidase (POD) were measured in the cotyledons of seedlings from all the four irradiation treatments. The result indicate that UV-B radiation enhanced the concentration of MDA while decreasing the activities of SOD, CAT, POD and the concentration of AsA in the seedlings compared with the controls. The concentration of MDA decreased, while the activities of SOD, CAT, POD and the concentration of AsA increased in seedling treated with He–Ne laser and UV-B compared to UV-B alone. The concentration of proline and UV absorbing compounds increased progressively with treatments i.e. UV-B irradiation, He–Ne laser irradiation, and He–Ne laser irradiation followed by UV-B irradiation compared to the controls. The present data suggest that Isatis indigotica seedlings derived from laser stimulated seeds showed improved resistance to elevated UV-B.  相似文献   

12.
To determine the response of antioxidant defense system to laser radiation apical meristem of Isatis indigotica seedlings, Isatis indigotica seedlings were subjected to UV-B radiation (10.08 kJ m−2) for 8 h day−1 for 8 days (PAR, 220 µmol m−2 s−1) and then exposed to He-Ne laser radiation (633 nm; 5.23 mW mm−2; beam diameter: 1.5 mm) for 5 min each day without ambient light radiation. Changes in free radical elimination systems were measured, the results indicate that: (1) UV-B radiation enhanced the concentration of Malondialdahyde (MDA) and decreased the activities of superoxide dismutase (SOD), catalase (CAT) and peroxidase (POD) in seedlings compared with the control. The concentration of MDA was decreased and the activities of SOD, CAT and POD were increased when seedlings were subjected to elevated UV-B damage followed by laser; (2) the concentration of UV absorbing compounds and proline were increased progressively with UV-B irradiation, laser irradiation and He-Ne laser irradiation plus UV-B irradiation compared with the control. These results suggest that laser radiation has an active function in repairing UV-B-induced lesions in seedlings.Key words: Isatis indigotica, laser, UV-B lesion  相似文献   

13.
当蚕豆的胚被 He- Ne激光 (632 .8nm,1 .63J· mm- 2 )照射 5min或被 CO2 激光 (1 0 60nm,2 .53J· mm- 2 )照射 1 min后 ,将其置入 Knop营养液中进行恒温培养。当蚕豆的上胚轴长到大约 3cm时 ,在光背景 (PAR)为 70μmol· m- 2 · s- 1条件下 ,分别用 1 .0 2、3.0 3、4.52 k J· m- 2 的 UV- B辐射蚕豆的上胚轴 7h。根据蚕豆丙二醛 (MDA)、抗坏血酸 (As A)和 UV- B吸收物的含量变化 ,来测试激光对 UV- B照射蚕豆的上胚轴的保护作用。结果显示 :激光预处理可保护蚕豆上胚轴对 UV- B辐射的作用。与对照组 (没有用 UV- B或激光照射 )、UV- B单独照射组比较 ,在激光预处理的条件下 ,MDA的含量明显减少 ,As A和 UV- B吸收化合物的含量增加。如先用激光处理 ,然后再用 UV- B辐射 ,UV- B吸收物的含量将比单独用激光和 UV-B处理获得更好的改善。从而认为 ,激光预处理能增强植物对 UV- B的抵抗力。  相似文献   

14.
Lasers have been widely used in the field of biology along with the development of laser technology, but the mechanism of the bio-effect of lasers is not explicit. The objective of this paper was to test the optical effect of a laser on protecting wheat from UV-B damage. A patent instrument was employed to emit semiconductor laser (wavelength 650 nm) and incoherent red light, which was transformed from the semiconductor laser. The wavelength, power and lightfleck diameter of the incoherent red light are the same as those of the semiconductor laser. The semiconductor laser (wavelength 650 nm, power density 3.97 mW mm(-2)) and incoherent red light (wavelength 650 nm, power density 3.97 mW mm(-2)) directly irradiated the embryo of wheat seeds for 3 min respectively, and when the seedlings were 12-day-old they were irradiated by UV-B radiation (10.08 kJ m(-2)) for 12 h in the dark. Changes in the concentration of malondialdehyde (MDA), hydrogen peroxide (H(2)O(2)), glutathione (GSH), ascorbate (AsA), carotenoids (CAR), the production rate of superoxide radical (O(2)(-)), the activities of peroxidase (POD), catalase (CAT), superoxide dismutase (SOD) and the growth parameters of seedlings (plant height, leaf area and fresh weight) were measured to test the optical effect of the laser. The results showed that the incoherent red light treatment could not enhance the activities of SOD, POD and CAT and the concentration of AsA and CAR. When the plant cells were irradiated by UV-B, the incoherent red light treatment could not eliminate active oxygen and prevent lipid peroxidation in wheat. The results also clearly demonstrate that the plant DNA was damaged by UV-B radiation and semiconductor laser irradiance had the capability to protect plants from UV-B-induced DNA damage, while the incoherent red light could not. This is the first investigation reporting the optical effect of a semiconductor laser on protecting wheat from UV-B radiation damage.  相似文献   

15.
多蒴灰藓对强紫外线照射的生理响应   总被引:1,自引:0,他引:1  
将多蒴灰藓(Hypnum fertile)置于紫外辐射下照光3周,研究了紫外辐射对多蒴灰藓的损害及其生理响应。结果表明: 与对照(自然环境)相比,多蒴灰藓的叶绿素和类胡萝卜素含量均随紫外辐射时间的延长而减少,MDA含量却明显增加,SOD、POD和CAT活性也相应增加;增加紫外辐射量会引起多蒴灰藓的氧化胁迫,其能通过增加抗氧化酶的活性来减轻这种胁迫。  相似文献   

16.
紫外线B对水稻叶组织中活性氧代谢及膜系统的影响   总被引:8,自引:0,他引:8  
增强UV-B处理下,水稻叶片的O净产生速率、H2O2和MDA含量以及膜透性都显著增加,敏感性弱的品种O2净产生速率和膜伤害程度较低。在UV-B处理初期活性氧清除系统的水平增高,但随着处理时间的延长,SOD、CAT和AP活性以及ASA含量降低,其中AP和SOD活性的下降最为明显,而敏感性弱的品种SOD活性始终高于敏感性强的品种。处理14d后去掉UV-B,再经则14d上述各指标均恢复到与对照相近的水平。根据这些结果推测,水稻的UV-B伤害可能主要是由于SOD活性的降低而导致O增生和膜脂过氧化。  相似文献   

17.
为探讨NO对He-Ne激光和增强UV-B辐射小麦(Triticum aestivuml)气孔运动的作用机理,采用低剂量(5 mW.mm-2)He-Ne激光和增强(10.08 kJ.m-2.d-1)UV-B辐射并结合药理学实验和激光共聚焦显微技术,对ML7113小麦的叶片及表皮条进行不同的处理,结果显示:(1)UV-B辐射既可诱导小麦叶片气孔关闭,又能够明显增加气孔保卫细胞和叶片的NO水平,且NO清除剂明显抑制了UV-B辐射诱导的小麦叶片气孔关闭,同时气孔保卫细胞和叶片内的NO含量明显减少。(2)一氧化氮合酶(NOS)抑制剂L-NAME对经UV-B辐射诱导的小麦幼苗气孔开度及保卫细胞和叶片内NO含量的抑制程度明显大于硝酸还原酶(NR)抑制剂NaN3对其的抑制程度,说明一氧化氮合酶(NOS)合成途径是小麦叶片经UV-B辐射后NO的主要产生途径。(3)就气孔开度而言,L〉CK〉BL〉B。就小麦叶片及保卫细胞内NO含量而言,B〉BL〉CK〉L。就硝酸还原酶(NR)和一氧化氮合酶(NOS)的活性而言,B组NR活性最低,NOS活性最高,L组NR活性最高,NOS活性最低。表明经He-Ne激光和增强UV-B辐射诱导的小麦气孔开度的变化确实与保卫细胞及叶片中NO含量的多少有关,气孔开度的减小及增大对应于NO含量的增多或减少,同时进一步证实了小麦叶片经He-Ne激光单独辐照后,NO的主要合成途径也来源于NOS途径。  相似文献   

18.
Bean ( Phaseolus vulgaris L. ) seedlings were grown in a greenhouse condition under UV-B (280 ~ 320 nm) radiation and an UV-B-free control condition. At early stage of bean growth, UV-B radiation(UV- BBE: 16 kJ·m-2·d-1 ) increased the synthetic rate of protein in bean leaves. UV-B radiation decreased the synthetic rate of protein and the content of soluble protein, increased the activities of caseolytic enzymes and the content of total amino acids in bean leaves at later growth stage. The results of SDS-PAGE indicated that UV-B radiation increased the contents of polypeptide in a range of 99 kD, 88 kD, 76 kD, 42 kD, 35 kD and 33 kD at the early stage, and increased that of 10 ~ 14 kD, 29 kD, 33 kD and 35 kD at later growth stage. It is suggested that the increase of these polypeptides is an adaptation response of plants to the enhanced UV-B radiation.  相似文献   

19.
Enhanced ultraviolet-B radiation (UV-B, 280?C320?nm) is recognized as one of the environmental stress factors that cannot be neglected. Jasmonic acid (JA) is an important signaling molecule in a plant??s defense against biotic and abiotic stresses. To determine the role of exogenous JA in the resistance of wheat to stress from UV-B radiation, wheat seedlings were exposed to 0.9?kJ?m?2?h?1 UV-B radiation for 12?h after pretreatment with 1 and 2.5?mM JA, and the activity of antioxidant enzymes, the level of malondialdehyde (MDA), the content of UV-B absorbing compounds, photosynthetic pigments, and proline and chlorophyll fluorescence parameters were measured. The results of two-way ANOVA illustrated that the activities of superoxide dismutase (SOD), peroxidase (POD), and catalase (CAT), MDA level, anthocyanin and carotenoid (Car) content, and almost all chlorophyll fluorescence parameters were significantly affected by UV-B, JA, and UV-B?×?JA (P?<?0.05) [the maximal efficiency of photosystem II photochemistry (F v/F m) was not affected significantly by UV-B radiation]. Duncan??s multiple-range tests demonstrated that UV-B stress induced a significant reduction in plant photosystem II (PSII) function and SOD activity and an increased level of membrane lipid peroxidation, indicative of the deleterious effect of UV-B radiation on wheat. JA pretreatment obviously mitigated the detrimental effect of UV-B on PSII function by increasing F v/F m, reaction centers?? excitation energy capture efficiency (F v??/F m??), effective photosystem II quantum yield (??PSII), and photosynthetic electron transport rate (ETR), and by decreasing nonphotochemical quenching (NPQ) of wheat seedlings. Moreover, the activity of SOD and the content of proline and anthocyanin were provoked by exogenous JA. However, the MDA level was increased and Car content was decreased by exogenous JA with or without the presence of supplementary UV-B, whereas the contents of chlorophyll and flavonoids and related phenolics were not affected by exogenous JA. Meanwhile, exogenous JA resulted in a decrease of CAT and POD activities under UV-B radiation stress. These results partly confirm the hypothesis that exogenous JA could counteract the negative effects of UV-B stress on wheat seedlings to some extent.  相似文献   

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