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Serum from larvae of Lacanobia oleracea L. (Lepidoptera; Noctuidae) parasitized by Eulophus pennicornis (Hymenoptera; Eulophidae) and from normal non‐parasitized larvae is capable of agglutinating rabbit, sheep, calf, goat, chicken, horse and human erythrocytes, but not yeast. Studies with a range of inhibitory carbohydrates showed that serum lectins(s) had specificity for sugars containing galactose and for rhamnose, and for the glycosubstances fetuin and asialofetuin. Lectin activity is heat‐labile and is not dependent on calcium. Parasitism by E. pennicornis caused an increase in the agglutination titre of the serum from larvae of L. oleracea but not an increase in specific activity (titre per mg protein per ml). However, when venom from the venom gland of female wasps was injected into L. oleracea larvae, both the agglutinating activity and the specific activity of the larval serum increased. The possible causes of this increase are discussed. It is suggested that venom contains antigenic components which, when injected into the haemocoel of the L. oleracea larva, may be increasing lectin synthesis and/or release into the serum.  相似文献   
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Synthesis of prenylquinones in chloroplasts   总被引:3,自引:0,他引:3  
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The use of entomopathogenic nematodes on cabbage leaves against larvae of the diamondback moth (DBM) Plutella xylostella requires the addition of formulation adjuvants to achieve satisfying control. Without adjuvants nematodes settle in the tank mix of backpack sprayers causing uneven distribution. The polymers arabic and guar gum, alginate and xanthan were used in concentrations between 0.05 and 0.3% to retard sedimentation of Steinernema carpocapsae. Arabic gum had no effect, guar gum prevented sedimentation at 0.3% but the effect dropped significantly at lower concentration. At 0.05%, xanthan prevented nematode sedimentation better than alginate. Deposition of nematodes on the leaves was significantly increased by the addition of any of the polymers. Spraying nematodes on leaves with an inclination of 45° without the addition of any formulation resulted in 70% run-off. Adding 0.2% alginate or xanthan reduced the losses to <20%. The use of a surfactant–polymer formulation significantly reduced defoliation by DBM larvae. Visual examinations provided evidence that nematodes are not ingested by DBM larvae. Invasion of S. carpocapsae is an active process via the anus. The function of the formulation is not to prolong nematode survival, but to provide environmental conditions which enable rapid invasion of the nematodes. Nematode performance was improved by selection of the best surfactant in combination with xanthan and by optimisation of the concentrations of the surfactant Rimulgan® and the polymer xanthan. The best control results were achieved with Rimulgan® at 0.3% together with 0.3% xanthan, causing DBM mortality of >90% at 80% relative humidity and >70% at 60%. The formulation lowered the LC50 from 12 to 1 nematode/larva. The viscosity of the surfactant–polymer formulations correlated well with nematode efficacy, prevention of sedimentation and adherence to the leave. This physical parameter can therefore be recommended for improvement of nematode formulations to be used for foliar application against DBM.  相似文献   
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以厦门地区夏季播种的抗热松花型台湾花椰菜Brassica oleracea var. botrytis品种为材料,比较各品种生物学性状、营养成分、矿质元素、能源、植物功能性指标,并以低能高营养的消费原则,采用平均隶属函数值对品种进行评价。结果表明,平均隶属函数值依次为‘雪松’(4.805) >‘香雪’(3.282) >‘雪丽’(2.279) >‘庆农S90’(1.037)。结合生育期考虑,‘雪松’为夏季较适合在厦门地区推广的松花型花椰菜抗热新品种。  相似文献   
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Lipoxygenase- mediated cleavage of fatty acids in plant mitochondria   总被引:1,自引:0,他引:1  
Incubation of cauliflower bud mitochondria in the presence of 5 mM CaCl2 results in a rapid hydrolysis of the main membrane phospholipsds. Under the action of phospholipase D, phosphatidic acid is produced and forms, within the membranes, a very labile complex with Ca2+ and HPO42-ions present in the incubation medium. With time, one observes a first step characterized by the formation of phosphatidic acid, followed by a second step linked to the breakdown of this phospholipid. The enzyme responsible for the disappearance of phosphalidic acid has been identified as lipoxygenase. In the presence of molecular oxygen, this enzyme acts on the polyun-saturated fatty acids of phosphatidic add (mainly C18:2 and C18:3) yielding small water-soluble molecules, one of them being identified as malondialdehyde (1, 3-propanedial). Experiments involving inhibitory conditions of the breakdown of phosphatidic acid indicate that lipoxygenase acts directly on membrane-bound phosphatidic acid without previous, involvement of a lipolytic acyl hydrolase activity. In addition, the lipoxygenase activity is fully sensitive to hydroxamate derivatives. It is proposed that the lipoxygenase activity may account for a part of the mitochondrial alternative electron pathway that is insensitive to cyanide.  相似文献   
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The effects of the ovarian hormones progesterone and estrone on the conversion of tryptophan to nicotinamide in rats were investigated. Female rats were fed for 35 days with a 20% casein diet, or with a 20% casein diet containing 0.1% progesterone, or 0.001% estrone, or 0.1% progestrone and 0.001% estrone. The conversion ratio of tryptophan to nicotinamide on the last day of the experiment was 2% in the groups fed with the 20% casein diet and the diet containing 0.1% progesterone, but around 1.2% in the group fed with 0.001% estrone, and 0.7% in the group fed with 0.1% progesterone and 0.001% estrone. These results demonstrated that administration of ovarian hormones significantly decreased the conversion of tryptophan to nicotinamide.  相似文献   
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实时荧光定量PCR技术是探索植物基因功能和调节机理的有效手段。选择合适的内参基因是获得实时荧光定量PCR准确性数据的必备条件。ACT基因高度保守且表达稳定,常作为内参基因被广泛应用。为了获得花椰菜ACT基因,以转录组测序和RT-PCR方法为手段克隆得到花椰菜肌动蛋白基因Actin。该基因等电点为5.395,理论分子量为41.77 kD;其cDNA开放阅读框长1134 bp,编码氨基酸377个,GenBank登录号为MG598643。Wolf Psort分析发现,BobActin蛋白亚细胞定位于细胞质基质中。Motif Scan分析显示,BobActin蛋白质的氨基酸序列4~377位为Actin保守结构域。进化分析表明,同源序列基因编码的蛋白质与同为十字花科的甘蓝、芜菁和油菜同源蛋白的相似性达到90%以上,具有高度的保守性。在此基础上,设计了1对荧光定量PCR引物,分析显示,该引物具有较高的特异性和扩增效率,在花椰菜根、茎、花、花球、叶片等不同组织和低温、高温、盐处理、干旱处理、ABA处理等胁迫处理下均能稳定表达,适合在花椰菜基因表达研究中作为内参基因,为开展花椰菜重要功能基因的挖掘、表达模式以及调控机理的研究提供参考。花椰菜在内参基因方面的研究还处于初步阶段,今后可继续克隆其他内参基因,丰富花椰菜的内参基因库,从而进一步提高花椰菜基因表达分析研究的稳定性、重复性和准确性。  相似文献   
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