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1.
王晓  陈鹏  张硕  李振斌  王凡  刘锦  刘永杰 《植物保护》2019,45(2):211-217
为明确常见杀虫剂对日本通草蛉各虫态的影响,在室内分别采用浸渍法和喷雾法测定了12种(8类)杀虫剂对日本通草蛉卵、幼虫、蛹和成虫的毒性,并评价了杀虫剂对日本通草蛉的毒性风险。结果表明,高效氯氰菊酯对日本通草蛉为极高风险,毒死蜱、吡虫啉、烯啶虫胺和阿维菌素为高风险,溴氰虫酰胺、啶虫脒和氯虫苯甲酰胺为中等风险,噻嗪酮、吡蚜酮、螺虫乙酯和甲氧虫酰肼为低风险;与其他虫态相比,12种杀虫剂对日本通草蛉蛹的毒性均为最低。在害虫生物防治及综合治理中应尽量选用对日本通草蛉毒性低的杀虫剂,以起到保护天敌的作用。  相似文献   
2.
以从茶树油粕中提取茶皂素的得率为评价指标,研究提取溶剂、方法、时间、温度和料液比等因素对茶皂素得率的影响,并通过正交试验确定茶皂素最佳提取工艺条件,同时考察了所得茶皂素对几种果蔬采后致病菌的抑制作用。结果表明,茶树油粕中提取茶皂素的最佳工艺条件为:以75%乙醇作为提取溶剂,料液比1∶14(g/mL),85 ℃热回流提取2.5 h,茶皂素的得率达13.3%,经AB-8大孔吸附树脂纯化后,纯度达95.64%。所获茶皂素对胶胞炭疽菌(Colletotrichum gloeosporioides)、灰葡萄孢霉(Botrytis cinerea)和链格孢菌(Alternaria alternata)菌丝的生长均有显著的抑制作用,半最大效应浓度(EC50)值分别为203.62、165.87和550.61 mg·L-1,其中以对B. cinerea的抑制作用最强。  相似文献   
3.
为探讨60Co-γ射线对不同庭院月季品种扦插苗的辐射诱变效应,以粉扇、金凤凰、梅朗口红、紫袍玉带、安吉拉、粉色达芬奇、你的眼睛、香槟和九重香9个庭院月季品种的扦插苗为研究对象,60Co-γ射线为辐照源,设置不同剂量(0、25、45、60、80 Gy)进行辐射处理,测定了死亡率、萌芽率、变异率和主要的形态指标。结果表明,随着辐射剂量增加,月季扦插苗平均死亡率逐渐增加,从33.61%(0 Gy)上升至79.71%(80 Gy);植株生长受到显著抑制,植株变异率呈先升高后降低的趋势,辐射剂量为45 Gy时,植株变异率达到最高,占总体变异率(4.20‰)的64.70%。此外,不同品种月季对60Co-γ射线辐射的敏感性不同,半致死辐射剂量也存在差异,其有效值介于26~55 Gy之间。综合60Co-γ射线对月季扦插苗死亡率、生长势和变异率的影响,推荐庭院月季扦插苗的最适辐射剂量为45 Gy,这为月季辐射育种提供了理论基础。  相似文献   
4.
In Salmonidae, subordinate males are exposed to higher risks of sperm competition than dominant males and thus are expected to improve the sperm characteristics (sperm concentrations, sperm velocity and sperm longevity). In this study, we investigated the relationships between body size and secondary sexual characters (breeding colour, hump height and snout length), and sperm characteristics of one‐year‐old (newly matured) Dolly Varden char. Small males displayed higher sperm concentrations than large males. Moreover, males with dull breeding colours, but not with lesser snout length and hump height, displayed an increased sperm velocity compared to males with bright colours, suggesting a trade‐off between sperm quantity and the investment in breeding colour. In addition, sperm longevity decreased as sperm swimming velocity increased. These findings indicate that small males with dull breeding colours improve the quantity and quality of their sperm to a great extent to enhance their chances of reproductive success.  相似文献   
5.
在溶氧(7.0±0.3)mg/L,水温(18±1)℃,pH 7.8±0.1条件下,采用国家标准半静态方式水生生物急性毒性实验法研究了高锰酸钾、硫酸铜与硫酸亚铁合剂(5∶2)、敌百虫和甲醛对硬刺松潘裸鲤(Gymnocypris potanini firmispinatus Wu et Wu)幼鱼的急性毒性试验。试验结果显示,高锰酸钾、硫酸铜与硫酸亚铁合剂、敌百虫和甲醛对硬刺松潘裸鲤幼鱼的24 h半致死浓度(24 h LC50)分别为4.57、2.74、8.00和54.69 mg/L,48 h半致死浓度(48 h LC50)分别为4.13、2.35、7.34和47.03 mg/L;96 h半致死浓度(96 h LC50)分别为3.37、1.92、4.76和40.44 mg/L;其安全浓度分别为1.01、0.52、1.85和10.43 mg/L。根据国家标准和本实验数据表明,甲醛对硬刺松潘裸鲤幼鱼微毒,高锰酸钾、硫酸铜与硫酸亚铁合剂和敌百虫对其中毒。  相似文献   
6.
Seed yield is a major breeding target in tetraploid red clover. We investigated if marker‐assisted parentage analysis can identify progeny plants with two high seed‐yielding parents in tetraploid red clover and if this technique is more advantageous than traditional half‐sib selection. Parentage analysis was successfully performed on the progeny from the 10% highest seed‐yielding genotypes from a second‐cycle family selection trial: 16.0% of progeny were identified with a high seed‐yielding father. However, progeny plants with two high seed‐yielding parents did not produce more seeds than traditionally selected progeny (27.3 g vs. 30.7 g/plant, respectively). The 10% highest seed‐yielding genotypes displayed on average 2% self‐fertilization. Four genotypes were self‐fertile with individual selfing rates up to 20%. Our results discourage the use of marker‐assisted parentage analysis to improve seed yield in tetraploid red clover when the material has been preselected for seed yield. Breeders should be aware that intensive selection for seed yield in tetraploid red clover may inadvertently lead to selection for increased self‐fertility, which may increase inbreeding in the long term.  相似文献   
7.
The aim of the study was to investigate source‐sink relations of wheat under continuous heat stress and to identify bottle necks of yield formation. A pot experiment was conducted in two climatic chambers exposing wheat plants (Triticum aestivum L. cv. Thasos) either to day/night temperatures of 20/20°C (control conditions) or of 30/25°C (heat stress) during the whole vegetation period in the absence of plant water deficit. Plants were harvested at four phenological stages: three‐node stage (DC 33), start of flowering (DC 61), grain filling (DC 75) and maturity (DC 94). Heat stress shortened the development phases of the plants and caused a significant decrease in total above‐ground biomass between 19% and 41%. At grain filling and at maturity, the reductions in total shoot biomass mainly resulted from grain yield depressions by 77% and 58%, respectively. The ear number per plant was significantly higher under heat stress in comparison with the control, at maturity it was more than doubled. On the contrary, under heat stress, the kernel number per ear was strongly decreased by 83% and 75% during grain filling and at maturity, respectively. The decrease in individual kernel weight was 23% at maturity. Thus, the heat‐stressed plants were able to strongly increase the number of ear‐bearing tillers which were able to set only a small number of kernels, yet these kernels showed good grain filling. The harvest index (HI) of heat‐stressed plants was significantly reduced by 36% (control: HI = 50.1% ± 0.4, heat: HI = 32.2% ± 0.9***). The plants in the stress treatment adapted to the adverse conditions by less biomass production which presumably allowed a higher transpiration without an increase in total water consumption. Nevertheless, under heat stress, the water use efficiency (WUEgrain) was strongly decreased by 62% as a result of a small grain yield. In ears and grains, the sucrose, glucose and fructose concentrations were not significantly different between control and heat stress at start of flowering and during grain filling. Thus, the supply of assimilates was not restricted (no source limitation). Sink capacity was reduced by heat stress, as lesser and smaller kernels were produced than in the control. Concerning sink activity, the sink‐limiting step during kernel set is probably the active transport of hexoses across the plasma membrane into the developing kernels, which could also affect grain filling. This needs to be investigated in more detail in further studies.  相似文献   
8.
家蚕可能通过取食漂移到桑叶上的玉米花粉从而受到转基因玉米中表达的Cry蛋白的影响。实验采用室内生物测试的方法评价了转cry1Abcry2Ab基因玉米GAB-3花粉对家蚕可能产生的影响,并采用在饲料中掺入蛋白的方式检测了转基因玉米中广泛使用的6种Cry杀虫蛋白对家蚕的毒性。当桑叶上GAB-3花粉密度为50粒·cm-2时,对家蚕幼虫存活率无显著影响,达500粒·cm-2时,家蚕14 d存活率为0;以10粒·cm-2的GAB-3花粉饲喂家蚕幼虫7 d对其体重无显著不利影响,但延长饲喂时间或者当GAB-3花粉密度为50粒·cm-2时,家蚕的体重显著低于对照组;转基因和非转基因玉米花粉处理14 d或更长时间的家蚕体重均低于无花粉处理组。与非转基因对照处理组相比,低于100粒·cm-2的转基因玉米GAB-3花粉处理组家蚕的化蛹率、茧重、茧壳重和蛹重无显著差异,转基因玉米和非转基因玉米花粉处理均会延长家蚕幼虫的发育历期。GAB-3花粉对家蚕7 d的LC50为261.18粒·cm-2,随着处理时间延长,LC50下降。测试的6种Bt杀虫蛋白对家蚕的毒性依次为Cry1C>Cry1Fa>Cry1B>Cry2A>Cry1Ab>Cry1Ac。目前,在中国接近商业化的转基因玉米中多采用的Bt杀虫蛋白为Cry1Ab和Cry2A,二者对家蚕的毒性较低,并且在实际生产中,家蚕接触到的转基因玉米花粉密度较低,因此转Cry抗虫基因玉米对家蚕的风险较低。  相似文献   
9.
Monocrotophos (MCP) is one of the organophosphate pesticides extensively used in agriculture and animal husbandry. The present study reports the effects of sub‐lethal concentrations of MCP on gonadosomatic index (GSI), gonadal histology and breeding fitness of the fish Anabas testudineus. The fish were exposed to three sub‐lethal concentrations of monocrotophos (T1: 3.5 mg/L, T2: 5.3 mg/L and T3: 10.6 mg/L) for 45 days with 12 fish (males and females in equal numbers) in each tank, and one group was kept as control (C) without any treatment. GSI decreased in all treatment groups in comparison with control. Significant decrease in fertilization and hatching rate was observed at all concentrations in comparison with control on 15, 30 and 45 days of monocrotophos exposure. The decreased vitellogenesis, disruption of follicular wall and oocyte atresia were observed in all the treated females at 30 and 45 days of exposure. Rupture of seminiferous tubules was noticed in all the treated males irrespective of exposure periods. The results thus indicated that monocrotophos could deleteriously impact the gonadal structure and function in A. testudineus, which could seriously impact the reproductive success of the animal.  相似文献   
10.
超氧化物歧化酶在苜蓿抗寒锻炼过程中的作用   总被引:9,自引:0,他引:9  
对苜蓿Medicago sativa抗寒锻炼过程中膜透性和超氧化物歧化酶(SOD)活性进行测定,通过苜蓿组织冰冻半致死温度(LT50)说明在抗寒锻炼过程中苜蓿抗寒性的变化。结果表明,在不同低温处理下,苜蓿叶片和根茎组织电解质透出率呈现出S型曲线变化。抗寒锻炼过程中,苜蓿组织LT50从9月初的-6.9℃下降到11月初的-15.6℃,下降了8.7℃。随着秋季气温的下降,苜蓿叶片SOD活性显著增加,11月上旬达到最高峰,此后显著下降。这说明SOD在抗寒锻炼过程中起着重要的保护作用,当苜蓿获得抗寒能力后,SOD活性逐渐下降。在抗寒锻炼过程中,苜蓿根茎SOD活性的变化与叶片中SOD活性的变化规律不一致,苜蓿根茎中SOD活性水平显著高于叶片中的SOD活性水平。聚丙烯酰胺凝胶电泳分析结果显示,不同苜蓿品种具有6条共同的SOD同工酶酶带。适应高寒地区气候条件的当地材料同德杂种苜蓿表现出与其他苜蓿品种较大的特异性。抑制试验表明苜蓿SOD为CuZn-SOD。  相似文献   
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