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51.
52.
Geographical isolates ofSpodoptera litura (Fabricius) (Noctuidae: Lepidoptera) nucleopolyhedrovirus (SpltNPV), collected from different parts of India and maintained
at Tamil Nadu Agricultural University, were compared for their biological activity and subjected to Restriction Endonuclease
(REN) analysis. Neonate and second instar bioassay studies revealed similarity in biological activity as shown by the overlapping
fiducial limits of LC50 values. However, there were differences in yield among isolates: significantly higher yields were obtained from isolates
UAS and CBE than from the BARC isolate. REN analysis of the four isolates withPst I,Hind III,Bam HI andEco RI enzymes indicated genotypic variation among the isolates. Based on the commonality of the bands, the isolates could be
broadly divided into two groups: isolates AU and CBE formed one group, and the other group comprised UAS and BARC based on
genetic relatedness.
http://www.phytoparasitica.org posting Nov. 21, 2005. 相似文献
53.
纤维素复合酶对羔羊消化道组织结构的影响 总被引:1,自引:0,他引:1
为了探明纤维素复合酶提高羔羊饲料消化率的消化道组织学基础,选择刚出生且体重相近的波尔山羊公羔30只(20日龄开始自由采食优质苜蓿干草, 80日龄断奶)分为对照组和试验组(添加0.2%酶制剂),分别在2、3和4月龄每组各选体重相近的3只羔羊屠宰.结果表明,瘤胃乳头长度、宽度和单位面积瘤胃乳头表面积随月龄增加而增加,而单位面积乳头数随着月龄的增加而减少(P < 0.01).酶制剂提高3、4月龄羔羊瘤胃乳头长度(P < 0.01)、宽度(P > 0.05)和单位面积瘤胃乳头表面积(P < 0.01),减少单位面积乳头数(P < 0.01).显著提高3月龄十二指肠肠绒毛的长度(P < 0.05).在3、4月龄,酶制剂有增加小肠隐窝深度和黏膜厚度的趋势,但未达到显著水平(P > 0.05). 相似文献
54.
白菜耐光氧化能力鉴定及其与活性氧代谢关系的研究 总被引:2,自引:0,他引:2
采用人工光氧化技术对30个常见白菜栽培品种进行光氧化处理, 以总叶绿素存留率作为评价指标, 利用系统聚类分析将供试品种划分为5个级别(1~5级) 。其中耐光氧化能力强的品种有青优4号、暑绿、抗热605、绿扬青、矮抗6号、华王; 不耐光氧化的品种有四倍体矮脚黄、绿星。在此基础上, 以耐光氧化品种抗热605与不耐光氧化品种绿星为材料, 研究了光氧化过程中活性氧代谢的特征。结果表明:在光氧化条件下, 白菜叶片内的抗氧化酶SOD、POD、CAT、APX活性受光氧化诱导升高, 但光氧化敏感性品种绿星的酶活性很快下降, 耐光氧化品种抗热605的酶活持续保持在较高的水平。因此, 绿星的O2·生成速率、H2O2 含量及MDA的积累量均高于抗热605, 最终导致品种绿星在光氧化下总叶绿素存留率低。表明抗热605植株内较高的抗氧化酶活性对提高耐光氧化能力起了重要作用。 相似文献
55.
Although of considerable agronomic importance, our understanding of B toxicity mechanism in plants is still not completely understood, and remains an open question. Therefore, we investigated the effect of increasing levels of B (0, 10, 20 and 30 mg kg−1) on the growth, boron (B) concentrations, stomatal resistance, lipid peroxidation (MDA), membrane permeability (MP), lypoxygenase activity (LOX), proline (PRO) and H2O2 accumulation, and the activities of major antioxidant enzymes (superoxide dismutase, SOD; catalase, CAT and ascorbate peroxidase, APX) of grapevine (Vitis vinifera L. cv. Kalecik Karasi) grafted on 5BB rootstock (V. berlandieri × V. riparia) was investigated. Applied toxic levels of B significantly reduced leaf and root growth and increased the B concentration of the leaf, and stem, bark and root of rootstock. In the all B levels leaf tissues of grapevine accumulated more B than that of the other plant parts. In order to restrict excessive uptake of B, stomatal resistance of the leaves increased especially at high B treatments (20 and 30 mg kg−1). The concentrations of H2O2, MDA and membrane permeability were increased as the result of B toxicity while proline and the activity of lypoxygenase were decreased. Compared with control plants, the activities of SOD and CAT were increased by B treatments while the activity of APX was decreased. To our knowledge, this is the first report that B toxicity elevated the antioxidant enzymes to protect the membrane functions from reactive oxygen species (ROS) injury in grapevine and it was hoped that this study would provide a basis for developing strategies for reducing the risks associated with B toxicity. 相似文献
56.
盐胁迫对珠美海棠和山定子膜保护酶系统的影响 总被引:23,自引:1,他引:23
实验以耐盐种珠美海棠(MaluszumiMats)和盐敏感种山定子[Malusbaccata(L.)Borkh]为试材,比较研究了在盐胁迫下叶片质膜透性、叶绿素和丙二醛(MDA)含量、膜保护酶超氧化物歧化酶(SOD)、过氧化氢酶(CAT)、过氧化物酶(POD)活性及根质膜透性的变化,为探索苹果属植物耐盐机制提供素材。结果表明,盐胁迫对根质膜透性没有明显的影响;但导致叶片质膜透性增加,盐敏感种山定子的质膜透性高于耐盐的珠美海棠。随盐胁迫加重,叶绿素a、b含量降低,叶绿素a/b比值增加,类胡萝卜素变化不明显。MDA含量随盐胁迫而升高,但珠美海棠低于山定子。山定子叶片中SOD、POD、CAT活性随盐胁迫加重而降低,而珠美海棠SOD活性在盐胁迫下保持稳定,POD、CAT活性增高。由此可见珠美海棠在盐胁迫条件下有活性较高的膜保护酶系统。 相似文献
57.
58.
水分胁迫对抗旱性不同小麦品种叶片光合及根呼吸等生理特性的影响 总被引:1,自引:0,他引:1
以两个抗旱性不同的小麦品种西农1043、陕253为材料,采用盆栽与水培试验相结合的方式,研究水分亏缺对小麦不同生育期叶片光合及根呼吸速率等生理指标的影响。结果表明:相同水分处理下,抗旱品种西农1043与水分敏感品种陕253相比,具有较高的光合和根呼吸速率、以及相对较高的保护酶活性;水分胁迫下,两个小麦品种叶片光合和根呼吸速率及苗期叶保护酶活性均降低;两种水分处理下抗旱性强的西农1043根呼吸所占光合的比例相对高于陕253。 相似文献
59.
用吡虫啉对棉蚜进行室内抗性筛选,用药处理25次后抗性是筛选前的20.03倍;2007年对田间棉蚜进行抗性调查,发现不同地区种群对吡虫啉的抗性差异显著,江苏南京种群最为敏感,河南安阳、山东泰安和北京地区棉蚜与之相比,抗性分别为2.21、7.63和9.53倍;抗、感品系解毒酶活力分析发现,抗性品系的谷胱甘肽S-转移酶活性增加很少(比活力1.12倍),但酯酶活力显著高于敏感品系(比活力1.71倍);增效试验结果表明,顺丁烯二酸二乙酯(DEM)在抗、感品系中对吡虫啉均没有明显的增效作用,而磷酸三苯酯(TPP)和增效醚(PBO)虽然在敏感品系中对吡虫啉的增效作用较小(SR 1.24和1.29),但在抗性品系中的增效作用显著增高(SR 2.13和1.74);此外还发现,吡虫啉处理可提高棉蚜群体的酯酶活力。由此认为,棉蚜至少具有对吡虫啉产生中等水平抗性的风险,其抗性可能是由于棉蚜的酯酶和P450单加氧酶的解毒能力提高所致。 相似文献
60.
《植物养料与土壤学杂志》2017,180(5):535-543
Sodic‐alkalinity may be more deleterious to plant growth than salinity. The objectives of this study were to determine whether 5‐aminolevulinic acid (ALA: an essential precursor for chlorophyll biosynthesis) foliar application could improve the sodic‐alkaline resistance of Swiss chard (Beta vulgaris L. subsp. cicla ) by regulating water uptake, ionic homeostasis, photosynthetic capacity, and antioxidant metabolism. Eight‐week‐old uniform plants were grown in nutrient medium without and with a sodic‐alkaline regime generated by a mixture of NaHCO3 and Na2CO3 (NaHCO3 : Na2CO3 = 9:1 molar ratio) for 12 d, and leaves were sprayed daily with water or ALA. The Na+ and ALA concentrations were gradually increased to 60 mM and 120 μM, respectively. ALA foliar application alleviated the physiological damage from sodic‐alkalinity, as reflected by the increases in plant dry weight, relative growth rate, chlorophyll, Mg2+ concentration, and the decrease in Na+ concentration. However, ALA foliar application did not change the water uptake capacity or the concentration of K+, Fe3+, and endogenous ALA in leaf tissues under sodic‐alkaline conditions. ALA foliar application effectively mitigated damage from sodic‐alkalinity because of the increased activity of antioxidant enzymes (catalase and guaiacol peroxidase), particularly superoxide dismutase activity, which was maintained at the same level as for control plants. These results suggest that ALA foliar application alleviated sodic‐alkaline stress mainly owing to its antioxidant capacity, and superoxide dismutase has the main responsibility for reducing oxidative stress in Swiss chard. 相似文献