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51.
Kurt E. Richardson Nelson A. Cox Doug E. Cosby Mark E. Berrang Nicole L. Holcombe Cheryl E. Weller 《Journal of environmental science and health. Part. B》2019,54(4):313-316
The pH of Salmonella pre-enrichment media can become acidic (pH 4.0–5.0) when feeds/ingredients are incubated for 24?h. Salmonella in feed that have been stressed by heat and desiccation exhibit different pH tolerances than non-stressed cultures. Acidic conditions can result in cell injury/death and affect biochemical pathways. In this study, eight serotypes of Salmonella were grown in sterile meat and bone meal that was subjected to desiccation and heat stress. Cultures of non-stressed and stressed isolates were subsequently exposed to acidic pH from 4.0 to 7.0 in 0.5?pH increments (3 replicates/pH increment) in citrate buffer. At 6 and 24?h, serial dilutions were plated in duplicate on XLT-4 (xylose lysine tergitol-4) agar. Four serotypes showed an impaired ability to decarboxylate lysine on XLT-4. This inability to decarboxylate lysine was dependent on isolate, stress status, and incubation time. When the isolates’ ability to decarboxylate lysine was examined using biochemical tests, cultures were found to be able to decarboxylate lysine with the exception of S. Infantis. This suggests that XLT-4 contains a biochemical stressor(s) which affects the rate of decarboxylation by these Salmonella. These results suggest that acidic conditions may influence the detection and confirmation of Salmonella in feed. 相似文献
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Jiachuang Shao Penghui Shao Mingming Peng Min Li Ziwei Yao Xiuqin Xiong Caiting Qiu Yufan Zheng Liming Yang Xubiao Luo 《Frontiers of Environmental Science & Engineering》2023,17(3):33
53.
火焰原子吸收法测定苹果中波尔多液的农药残留 总被引:1,自引:0,他引:1
通过原子吸收法测定苹果果皮、果肉上波尔多液的农药残留铜的含量,结果表明:喷洒了波尔多液的苹果果皮上铜含量明显大于果肉,在果皮上有一定的农药残留;而未喷洒波尔多液的苹果果皮和果肉中铜的含量的差异很小。 相似文献
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机电系统的可靠性是衡量其使用性能的重要指标之一,机电系统软件的高可靠性是实现机电设备自动化控制的关键.本文对机电系统的出错形式和容错过程进行了分析,对常用的软件容错技术进行了初步探讨. 相似文献
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The continuing conundrum of the LEA proteins 总被引:9,自引:0,他引:9
Research into late embryogenesis abundant (LEA) proteins has been ongoing for more than 20 years but, although there is a strong association of LEA proteins with abiotic stress tolerance particularly dehydration and cold stress, for most of that time, their function has been entirely obscure. After their initial discovery in plant seeds, three major groups (numbered 1, 2 and 3) of LEA proteins have been described in a range of different plants and plant tissues. Homologues of groups 1 and 3 proteins have also been found in bacteria and in certain invertebrates. In this review, we present some new data, survey the biochemistry, biophysics and bioinformatics of the LEA proteins and highlight several possible functions. These include roles as antioxidants and as membrane and protein stabilisers during water stress, either by direct interaction or by acting as molecular shields. Along with other hydrophilic proteins and compatible solutes, LEA proteins might also serve as “space fillers” to prevent cellular collapse at low water activities. This multifunctional capacity of the LEA proteins is probably attributable in part to their structural plasticity, as they are largely lacking in secondary structure in the fully hydrated state, but can become more folded during water stress and/or through association with membrane surfaces. The challenge now facing researchers investigating these enigmatic proteins is to make sense of the various in vitro defined functions in the living cell: Are the LEA proteins truly multi-talented, or are they still just misunderstood? 相似文献
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碎米莎草(Cyperus iria L.)作为铀的超耐受植物,它的发现为探讨铀污染环境的植物修复和铀在植物体中的吸收和耐受机理提供了一种新的资源. 在Hoagland's营养液中加入铀标准溶液模拟铀污染水环境,以及直接在铀尾沙条件分析不同铀供应水平下碎米莎草对铀的耐受性能和富集特征. 结果表明:①碎米莎草对铀的富集特征依赖于生长介质中铀的供应水平和植物生长期等多重因素. 碎米莎草不同生长期各部位w(U)均高于生长介质中的铀供应水平,根系和地上部分w(U)最高可分别达(48 605±1 266)和(824±856)mg/kg. 根、茎和叶中w(U)基本随着铀供应水平的升高而增加,在开花期时较低,根系吸收的铀有1/10~1/5能转移至茎、叶、花籽部位,ρ(U)<250 mg/L的铀溶液对碎米莎草的生长无抑制作用. ②碎米莎草对铀尾沙具有很强的耐受性,但地上部分的富集系数在某些条件下可大于1;地上部分的w(U)在开花期相对较高,至成熟期时下降;在成熟期添加柠檬酸有助于碎米莎草根、茎和叶将铀转移至籽部位. 相似文献
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高盐分是导致很多工业废水生物处理效率下降的主要因素之一。探讨在生物处理系统中添加渗透保护剂提高活性污泥耐盐能力的可行性。结果表明:添加海藻糖、谷氨酸、甜菜碱和钾离子能提供有效的渗透保护作用,减轻盐分对污泥降解活性的抑制,其中以甜菜碱的渗透保护效果最好。对于未经盐分驯化的非耐盐污泥,当NaCl质量分数为3%时,添加20 mg/L的甜菜碱可使其耗氧速率从9.5 mg/h提高到29.5 mg/h;对于经过盐分驯化的耐盐污泥,当NaCl质量分数为6%时,添加50 mg/L的甜菜碱可使其耗氧速率从10.5 mg/h提高到24.9 mg/h。当生物处理系统受到瞬时盐分冲击时,活性污泥中的微生物细胞可以快速吸收添加的甜菜碱而平衡外界渗透压,从而缩短活性污泥对高盐环境的适应期,减轻盐分对活性污泥的毒害。 相似文献