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101.
稻螟赤眼蜂Trichogramma japonicum Ashmead是水稻二化螟Chilo suppressalis(Walker)的优势卵寄生蜂。本文构建了以黏虫卵为中间寄主,稻螟赤眼蜂在20℃、25℃、30℃、33℃四个温度条件下的生命表。研究结果表明利用黏虫卵繁育稻螟赤眼蜂时,不同温度下其生长发育和繁殖均存在显著差异,雌蜂平均寿命随温度的升高呈下降趋势,在20℃条件下,雌蜂平均寿命为1.44 d,显著长于其它温度,当温度为30~33℃时,雌蜂寿命最短,平均为0.59 d。在温度为20℃和25℃时,稻螟赤眼蜂的羽化率显著高于温度较高的30℃和33℃,平均为94.73%。在25℃条件下,黏虫卵繁育的稻螟赤眼蜂的净生殖力(R 0)最大,达到31.9176,单雌寄生卵数最多,为32.88个,表现出最强的繁殖能力,而在30℃条件下,瞬时增长率r m和周限增长率λ达到最大值。综合生命表参数、单雌寄生黏虫卵数、寿命、羽化率等指标,利用黏虫卵工厂化繁殖稻螟赤眼蜂的最佳温度为25℃。本研究为利用黏虫卵大量繁殖稻螟赤眼蜂提供了有价值的参考。  相似文献   
102.
柑橘木虱Diaphorina citri Kuwayama是柑橘黄龙病(huanglongbing,HLB)的重要传播媒介。为了利用灯光诱控技术防治柑橘木虱,本实验于室内条件下研究柑橘木虱对波长为360 nm、400 nm、440 nm、480 nm、520 nm、560 nm和600 nm的LED光源和不同光照强度趋光行为反应。结果表明:柑橘木虱对7种单色光都有正趋向性。其中雌雄混合存在时对400 nm的紫光趋向性最强,其次是560 nm的绿光;单独处理时,雌成虫对400 nm的紫光趋性最强,其次是520 nm的绿光,雄成虫则是对520 nm的绿光趋性最强,其次是400 nm的紫光。在200μw/cm 2到1000μw/cm 2的光照强度范围内,随着光照强度的增大,柑橘木虱雄成虫趋光行为逐渐增强,在光照强度为1000μw/cm 2时趋光行为最强,但雌成虫趋光行为变化不明显。该研究表明:柑橘木虱雌雄成虫具有明显的正趋光性,且对光谱和光强的反应存在差异。这一结果可为柑橘木虱田间的灯光诱控提供实验依据。  相似文献   
103.
豆天蛾Clanis bilineata tsingtauica Mell幼虫,是一种食用昆虫,富含蛋白质、维生素和矿质元素,具有很高的营养、药用和经济价值。了解适宜豆天蛾幼虫生长发育的大豆品种(品系)和种植密度,可为豆天蛾幼虫规模化饲养提供理论基础。研究通过设置两因素裂区实验,在10个品种(品系)大豆和2个种植密度水平下,测定豆天蛾幼虫生物学参数,明确适宜豆天蛾幼虫养殖的大豆品种(品系)和种植密度。结果表明,不同大豆品种(系)和种植密度对豆天蛾幼虫存活及生长发育均有显著影响;其中使用连151、淮豆9号、东辛3号和H0573大豆饲养的豆天蛾幼虫产量和存活率较高,虫体长度较长,发育历期较短;大青豆饲养的豆天蛾幼虫产量较低,幼虫发育整齐度较差,发育历期长。当种植密度为40 cm×30 cm时,豆天蛾幼虫存活和发育历期整齐度均显著高于种植密度40 cm×15 cm。综上所述,较适宜豆天蛾幼虫养殖的大豆品种(品系)为连151、淮豆9号、东辛3号和H0573,种植密度为40 cm×30 cm。  相似文献   
104.
大多数物种的卵母细胞在减数分裂前都要经历长时间停滞,其中cAMP对卵母细胞减数分裂停滞具有重要作用,本研究关注c AMP对卵母细胞减数分裂的影响及其机制。本研究通过将卵母细胞与cAMP预孵育,再用胰岛素刺激研究胰岛素诱导的卵母细胞成熟的影响,接着本研究通过显微注射和Zeiss 100TV显微镜分析cAMP对PKA在卵母细胞中定位的影响,并且本研究用Western blotting的方法研究cAMP/PKA对mos蛋白的表达和MAPK蛋白磷酸化的影响。结果显示,本研究通过亲和层析得到了高纯度的PKA蛋白,且cAMP/PKA能够抑制卵母细胞的成熟,而PKA的热稳定抑制剂PKI能够解除PKA对卵母细胞减数分裂的抑制,cAMP/PKA也能够影响mos的积累以及MAPK的磷酸化。cAMP能够影响PKA在卵母细胞中的定位,cAMP/PKA能够通过影响mos积累抑制卵母细胞的减数分裂,这可能与cAMP能够抑制MAPK磷酸化有关。  相似文献   
105.
Understanding changes in terrestrial carbon balance is important to improve our knowledge of the regional carbon cycle and climate change. However, evaluating regional changes in the terrestrial carbon balance is challenging due to the lack of surface flux measurements. This study reveals that the terrestrial carbon uptake over the Republic of Korea has been enhanced from 1999 to 2017 by analyzing long‐term atmospheric CO2 concentration measurements at the Anmyeondo Station (36.53°N, 126.32°E) located in the western coast. The influence of terrestrial carbon flux on atmospheric CO2 concentrations (ΔCO2) is estimated from the difference of CO2 concentrations that were influenced by the land sector (through easterly winds) and the Yellow Sea sector (through westerly winds). We find a significant trend in ΔCO2 of ?4.75 ppm per decade (p < .05) during the vegetation growing season (May through October), suggesting that the regional terrestrial carbon uptake has increased relative to the surrounding ocean areas. Combined analysis with satellite measured normalized difference vegetation index and gross primary production shows that the enhanced carbon uptake is associated with significant nationwide increases in vegetation and its production. Process‐based terrestrial model and inverse model simulations estimate that regional terrestrial carbon uptake increases by up to 18.9 and 8.0 Tg C for the study period, accounting for 13.4% and 5.7% of the average annual domestic carbon emissions, respectively. Atmospheric chemical transport model simulations indicate that the enhanced terrestrial carbon sink is the primary reason for the observed ΔCO2 trend rather than anthropogenic emissions and atmospheric circulation changes. Our results highlight the fact that atmospheric CO2 measurements could open up the possibility of detecting regional changes in the terrestrial carbon cycle even where anthropogenic emissions are not negligible.  相似文献   
106.
107.
The purpose of this study was to investigate the biological effect of miR‐16 on myocarditis and the underlying molecular mechanism. H9c2 cells were treated with 10 µg/mL lipopolysaccharide (LPS) for 12 hours to form a myocarditis injury model. We observed that LPS treatment distinctly decreased the level of miR‐16 in H9c2 cells. Upregulation of miR‐16 increased cell proliferation and reduced cell apoptosis. Then, CD40 was predicted and verified as a target gene of miR‐16 by TargetScan and luciferase reporter assay, respectively. Furthermore, the messenger RNA and protein expression of CD40 are negatively regulated by miR‐16. The relative expression of inflammatory factors was dramatically decreased by the miR‐16 mimic. Cells cotransfected with miR‐16 mimic and si‐CD40 could significantly abolish the injury of cardiomyocytes caused by myocarditis. Our study illustrated that the upregulation of miR‐16 has a protective effect on LPS‐damaged H9c2 cells, which may be achieved by regulating CD40 and the nuclear factor kappa B pathway.  相似文献   
108.
In the Loess Plateau region, soil erosion is a serious problem. Vegetation restoration is an effective approach to control soil erosion and improve ecosystems. The soil seed bank generally plays an important role in vegetation restoration after disturbance. Thus, we reviewed soil seed bank studies to reveal the soil seed bank characteristics and its role in vegetation restoration in three vegetation types (forest, forest‐steppe, and steppe). We selected 38 seed bank studies and analyzed several seed bank characteristics, such as seed density, species composition, and the relationship between seed size and seed bank. We also assessed the role of the soil seed bank in vegetation restoration. The soil seed bank density ranged from 2,331 ± 1,993 to 6,985 ± 4,047 seeds/m2 among the different vegetation types. In the soil seed bank, perennial herbs and grasses accounted for 51.5% of the total species. Native species that were dominant or common in the standing vegetation usually had relatively high seed bank densities. Moreover, species with smaller seeds generally had higher soil seed bank densities. The present study indicates that the soil seed bank plays a significant role in spontaneous vegetation restoration, especially during the early successional stages in abandoned slope farmlands and grazing‐excluded grasslands. However, species with large seeds or transient soil seed banks should be reintroduced through seeding to accelerate target species restoration. More studies on soil seed banks need to be conducted to comprehensively reveal their characteristics.  相似文献   
109.
为探究谷胱甘肽和没食子酸对紫淮山花色苷的辅色作用,本文研究了谷胱甘肽和没食子酸对紫淮山花色苷降解率、热稳定性及色差的影响。试验表明,谷胱甘肽和没食子酸能有效抑制花色苷的降解,且最佳添加量分别为0.03%和0.2%。在此添加量条件下,紫淮山花色苷在50、70、90℃水浴中的热降解均符合一级降解反应动力学规律。添加谷胱甘肽和没食子酸的紫淮山花色苷降解速率常数(k)小于对照组,半衰期(t 1/2)和活化能(Ea)高于对照组,说明谷胱甘肽和没食子酸能够增强花色苷的热稳定性。色差测定结果表明,经谷胱甘肽和没食子酸辅色后的紫淮山花色苷,其明度指数(L*)和色品指数(a*、b*)较对照组变化缓慢,颜色的稳定性增强。  相似文献   
110.
西番莲(Passiflora caerulea)是一种营养丰富的热带亚热带特色水果,采后易发生果实品质劣变现象,是制约采后西番莲果实保鲜期的重要因素。本文就西番莲采后果实褶皱及失重、果皮色泽变化、营养物质含量减少和采后病害发生等品质劣变机理,及其低温、热处理、包装、1-MCP、多糖和化学保鲜剂等西番莲果实采后保鲜技术的国内外相关研究进行综述,以期为维持西番莲果实贮藏品质、延长果实保鲜期提供指导。  相似文献   
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