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31.
无源蓄冷控温运输箱设计与试验   总被引:1,自引:0,他引:1  
针对蓄冷运输箱信息化程度低、控温时间短、控温困难等问题,设计了一款集控温、远程监控、定位、故障诊断等功能于一体的蓄冷运输箱。以脐橙为试验对象,结合能耗模型,对蓄冷控温箱控温性能进行了研究。结果表明,箱内各截面温度不均匀系数分别为0.38、0.47、0.78,温度极差最大值为2.8℃,均匀性较好;当蓄冷剂用量为180 kg,预冷脐橙660 kg,在外部环境平均温度26.39℃的条件下,总控温时长为122 h,风机共执行控温21次,且随着蓄冷量减少,风机开启控温所用时间呈指数上升趋势,决定系数不小于0.928 0;结合能耗模型分析得出,该箱体在广州夏季高温环境下可控温5 d以上,能够满足远距离运输要求。  相似文献   
32.
Increasingly, weeds have been taking on global distributions. With the proliferation of invasive weeds has come the challenge of managing these species over broad geographical regions, with diverse habitats and political jurisdictions. Here, we review the management of Mikania micrantha Kunth (Asteraceae; mile‐a‐minute) throughout its invaded range, extending through most of the Pacific islands and southern and south‐east Asia. Context matters when determining the best course of action for managing M. micrantha, as it has invaded a large variety of agricultural and natural systems. In Queensland, Australia and Florida, USA, M. micrantha has been targeted in relatively successful eradication campaigns, highlighting the importance of early detection and rapid response methods, while elsewhere in its invaded range, populations are either still increasing or showing limited signs of decline. An inter‐regional approach to research and management should incorporate successful management strategies employed throughout the invaded range including, but not limited to, chemical and cultural control practices, manual and mechanical control, classical biological control using the rust fungus Puccinia spegazzinii, plant–plant competition and integrated approaches utilising two or more control methods concurrently. Additional knowledge of M. micrantha genetics is required to determine if management approaches could be fine‐tuned for particular populations. Countries bordering the Mekong River formed a network in 2011 to co‐ordinate the management of invasive species such as M. micrantha. Expanding such a collaborative approach to other regions could further reduce populations of M. micrantha and limit its spread.  相似文献   
33.
DGAT基因包括二酰基甘油酰基转移酶1(DGAT1)基因和二酰基甘油酰基转移酶2(DGAT2)基因,前者属于酰基辅酶A胆固醇酰基转移酶(ACAT)基因家族,后者属于单酰甘油酰基转移酶(MGAT)基因家族,分别编码微粒体酶DGAT1和DGAT2,这两种酶控制着甘油三酯的合成,均是定位于内质网的跨膜蛋白,其膜拓扑结构具有与其他蛋白质和细胞器相互作用的能力,影响脂肪代谢及脂类在组织中的沉积,参与调节动物机体的能量合成和分解代谢,影响心脏和肝脏中甘油三酯的代谢;同时DGAT基因的多态性影响着牛乳中脂肪的含量及泌乳量。因此,了解DGAT基因的结构和生物学功能对畜禽生长发育和生产等相关研究具有重要的意义。文章简述了DGAT基因的基本结构和生物学功能及相关的作用机制,分析了其在畜牧生产中的基础应用,如参与哺乳动物生产调控的脂肪沉积、乳脂含量等方面的研究进展。  相似文献   
34.
选取毛竹销钉替代木榫在1 500 r/min的情况下与榉木基材进行旋转摩擦焊接,对其抗拉强度和焊接机理进行研究。重点研究不同形状的预钻孔和不同榫径与孔径比值下的竹销钉焊接抗拉拔强度,并将其与木榫焊接和PVAc胶接的抗拉强度进行对比。结果表明:1)当采用恒定直径孔10/9、10/8、10/7、10/6 4种榫径/孔径比的焊接强度均高于PVAc胶接强度,但低于木荷榫和榉木榫的焊接强度,其中10/8的榫径/孔径比的焊接强度相对最高,达到了5.54 MPa;2)当采用渐变直径孔,竹销钉的焊接强度得到明显提高。其中10/8-6的榫径/渐变孔径比值取得了最高的焊接强度,达到6.42 MPa,比10/8比值的强度提高了15.6%,超过了木荷榫的焊接强度,但不及榉木榫的焊接强度;通过对竹销钉的焊接界面温度进行监测,发现焊接界面能在2 s内达到300℃以上的峰值高温,且维持了一定的高温时间(通常约2~3 s),随后随着竹销停止旋转摩擦,温度逐步下降;不同的榫径与孔径比值下,焊接界面的升温速率、峰值温度和高温持续的时间不同,它们是产生强度差异的主要原因;SEM观察结果显示,竹销旋转摩擦焊接界面由竹销或基材中的胞间层物质软化、熔化和流动并与作为增强材料的竹纤维包裹,形成了犹如“钢筋水泥土”结构般的致密、连续和坚固的焊接界面;FTIR分析结果表明,摩擦产生的高温会导致竹销中半纤维素发生一定程度的降解,纤维素的降级十分有限,木质素发生一定程度的缩合反应,木质素的含量相对提高。试验结果表明,将竹销钉代替木榫用于木材的旋转摩擦焊接是可行的。  相似文献   
35.
 由西瓜嗜酸菌(Acidovorax citrulli)引起的瓜类果斑病,是危害西瓜和甜瓜等葫芦科作物的一种典型的种传细菌性病害。已有文章报道西瓜嗜酸菌在铜离子诱导下可进入“有活力但不可培养”(viable but non-culturable,VBNC)状态,并在适当条件下复苏,成为生产中潜在的病害初侵染来源。本文结合实际生产中的种子温汤浸种和低温储藏等条件,分别设定了50℃、55℃高温和4℃低温对西瓜嗜酸菌AAC00-1进行处理,通过流式细胞术(flow cytometry,FCM)和平板培养法分别检测菌体活性和可培养性。结果显示,不适宜的温度条件能够诱导西瓜嗜酸菌AAC00-1进入VBNC状态,其中55℃高温20和30 min的两个处理,所有活菌均进入VBNC状态。将处理后的AAC00-1接种西瓜子叶,接种植株未表现出果斑病症状,且不能从接种部位分离得到可培养菌体。表明本诱导条件下的VBNC状态A. citrulli菌体不能通过短时间活体接种复苏。本研究分析了西瓜嗜酸菌在不适宜温度条件下进入VBNC状态的能力,为解析病害可能的初侵染来源提供了理论依据,对葫芦科作物果斑病防控具有重要的生产实践意义。  相似文献   
36.
辣椒细菌性果实条斑病菌生物学特性及抑菌药剂筛选   总被引:1,自引:0,他引:1  
研究辣椒细菌性果实条斑病菌的生物学特性,对病原菌进行室内药剂筛选,旨在为田间病害规律研究和病害防治提供依据。采用紫外分光光度计测定病原菌在不同温度、pH、NaCl浓度下的生长速率。采用滤纸片抑菌圈法对病原菌进行室内药剂筛选试验。结果表明,辣椒细菌性果实条斑病菌最适生长温度为28℃,最适pH 7.0,病原菌的耐盐性为12%。18种供试药剂在药剂推荐使用剂量范围内,四霉素、乙蒜素、77%志信、氯溴异氰尿酸4种药剂对病原菌有抑菌效果,对这4种药剂进行毒力测定,结果表明四霉素的毒力较强,EC50值为11.75 mg/L,毒力强于其他3种试剂,四霉素可作为田间防治药剂的首选。  相似文献   
37.
In order to analyze the effect of listeriolysin S (LLS) llsB gene deletion on the biological characteristics of Listeria monocytogenes (LM),this study used homologous recombination to construct the llsB gene deletion strain LM90-ΔllsB,and the biological characteristics of growth characteristics,median lethal dose (LD50) and organ-borne bacteria were studied in healthy Kunming male mice at 8 weeks old and weighing 40 g±5 g.The llsB gene deletion strain was successfully constructed,and the deletion strain had good genetic stability through continuous passage to 20 generations in vitro.Based on its growth curve examination,we found that the growth rate of the mutant strain was slightly higher than that of the parent strain.The results of mice infection test showed that the LD50 of the parent strain and the deletion strain were 106.17 and 106.50 CFU,respectively.Compared with the parent strain,the amount of bacteria load of the deletion strain in the liver and spleen of the mice was extremely significantly decreased (P<0.01),the results showed that the infection ability of the mutant strain on mice was obviously weakened.No Listeria monocytogenes was detected in the brain.The results suggested that llsB gene might have direct or indirect regulatory effect on some biological characteristics of LM90,and it would provide a theoretical basis for further understanding of the pathogenic mechanism of LLS,prevention and control of listeriosis.  相似文献   
38.
Finger millet [Eleusine coracana (L.) Gaertn.] is an important coarse cereal crop grown in the arid and semi‐arid regions and often experiences high temperature (HT) stress. The objectives of this research were (i) to quantify effects of season‐long HT stress on physiological and yield traits, (ii) to identify the developmental stages most sensitive to HT stress and (iii) to quantify the genetic variability for HT stress tolerance in finger millet. Research was conducted in controlled environment conditions. HT stress decreased the chlorophyll index, photosystem II activity, grain yield and harvest index. Maximum decrease in number of seeds per panicle and grain yield per plant was observed when stress was imposed during booting, panicle emergence or flowering stages. Maximum genotypic variation was explained by panicle width and number of seeds per panicle at optimum temperature (OT) and grain yield per plant at HT and number of seeds at HT. Based on the stress response and grain yield, tolerant or susceptible genotypes were identified. Finger millet is sensitive to HT stress during reproductive stages, and there was genotypic variability among the finger millet genotypes for number of seeds per panicle and grain yield under HT, which can be exploited to enhance stress tolerance.  相似文献   
39.
Carp (Cyprinus carpio L.) is a pest species in Australian waterways, and cyprinid herpesvirus 3 (CyHV‐3) is being considered as a potential biological control (biocontrol) agent. An important consideration for any such agent is its target specificity. In this study, the susceptibility to CyHV‐3 of a range of non‐target species (NTS) was tested. The NTS were as follows: 13 native Australian, and one introduced, fish species; a lamprey species; a crustacean; two native amphibian species (tadpole and mature stages); two native reptilian species; chickens; and laboratory mice. Animals were exposed to 100–1000 times the approximate minimum amount of CyHV‐3 required to cause disease in carp by intraperitoneal and/or bath challenge, and then examined clinically each day over the course of 28 days post‐challenge. There were no clinical signs, mortalities or histological evidence consistent with a viral infection in a wide taxonomic range of NTS. Furthermore, there was no molecular evidence of infection with CyHV‐3, and, in particular, all RT‐PCRs for viral mRNA were negative. As a consequence, the results encourage further investigation of CyHV‐3 as a potential biocontrol agent that is specific for carp.  相似文献   
40.
  1. The Calapooia River in western Oregon supports a small winter steelhead trout (Oncorhynchus mykiss) population and historically supported spring Chinook salmon (Oncorhynchus tshawytscha). Early timber harvesting removed the riparian forest, and log transportation practices simplified the channel. Those disturbance legacies continue to affect fish habitat by limiting shade and channel complexity, complicating conservation efforts.
  2. To evaluate juvenile salmonid rearing potential, macroinvertebrate drift, thermal regime and physical habitat were measured at eight sites in 24 km of the upper river during late summer baseflow.
  3. Overall physical habitat was simple, with few functioning instream structures or pools. During the 22‐day drift study, flows declined and maximum site stream temperatures ranged from 23.1°C at the lower end to 16.4°C 24 km upstream.
  4. Macroinvertebrate drift concentrations ranged from 0.7–13.7 ind. m?3 with biomasses from 0.02–1.23 mg m?3. Drift concentration biomass was higher upstream (P  = 0.006) than downstream and declined overall (P  < 0.001) during the study. Drift biomass was dominated by five taxon groups – Baetis tricaudatus, Calineuria californica, Hesperoperla pacifica, Simulium spp., and Chironomidae, which were 65% of total biomass. During twilight, total biomass and biomass of B. tricaudatus, Simulium spp., and Chironomidae (both larvae and adults) were higher.
  5. Total drift declined dramatically over the study period owing to decreases in drift concentration and a 58% decline in discharge, greatly reducing overall drift and available food resources for juvenile‐rearing salmonids.
  6. The upper catchment, both with cooler temperatures and higher food availability, provided the best conditions for juvenile anadromous salmonids to survive late summer conditions. Conservation consequences of climate change‐induced alterations in flow and temperature may further affect habitat quality for juvenile salmonids in this catchment in the coming decades.
  相似文献   
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