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871.
Lin Zhang Xiong Zhu Xuexia Hou Huan Li Xiaona Yang Ting Chen Xiaoying Fu Guangqing Miao Qin Hao Sha Li 《PLoS neglected tropical diseases》2021,15(3)
Lyme disease (LD) is one of the most important vector-borne diseases worldwide. However, there is limited information on the prevalence and risk analysis using correlated factors in the tropical areas. A total of 1583 serum samples, collected from five hospitals of Hainan Province, were tested by immunofluorescence assay (IFA) and western blot (WB) analyses using anti-Borrelia burgdorferi antibodies. Then, we mapped the distribution of positive rate (by IFA) and the spread of confirmed Lyme patients (by WB). Using ArcGIS, we compiled host-vector-human interactions and correlated data as risk factor layers to predict LD risk in Hainan Province. There are three LD hotspots, designated hotspot I, which is located in central Hainan, hotspot II, which contains Sanya district, and hotspot III, which lies in the Haikou-Qiongshan area. The positive rate (16.67% by IFA) of LD in Qiongzhong, located in hotspot I, was higher than that in four other areas. Of confirmed cases of LD, 80.77% of patients (42/52) whose results had been confirmed by WB were in hotspots I and III. Hotspot II, with unknowed prevalence of LD, need to be paid more attention considering human-vector interaction. Wuzhi and Limu mountains might be the most important areas for the prevalence of LD, as the severe host-vector and human-vector interactions lead to a potential origin site for LD. Qiongzhong is the riskiest area and is located to the east of Wuzhi Mountain. In the Sanya and Haikou-Qiongshan area, intervening in the human-vector interaction would help control the prevalence of LD. 相似文献
872.
Yuchen Wang Jie Wu Wenjie Luo Hailiang Zhang Guohai Shi Yijun Shen Yao Zhu Chunguang Ma Bo Dai Dingwei Ye Yiping Zhu 《Cell death & disease》2021,12(7)
Bladder cancer is one of the most common malignant tumors in the urinary system. The development and improvement of treatment efficiency require the deepening of the understanding of its molecular mechanism. This study investigated the role of ALPK2, which is rarely studied in malignant tumors, in the development of bladder cancer. Our results showed the upregulation of ALPK2 in bladder cancer, and data mining of TCGA database showed the association between ALPK2 and pathological parameters of patients with bladder cancer. In vitro and in vivo experiments demonstrated that knockdown of ALPK2 could inhibit bladder cancer development through regulating cell proliferation, cell apoptosis, and cell migration. Additionally, DEPDC1A is identified as a potential downstream of ALPK2 with direct interaction, whose overexpression/downregulation can inhibit/promote the malignant behavioral of bladder cancer cells. Moreover, the overexpression of DEPDC1A can rescue the inhibitory effects of ALPK2 knockdown on bladder cancer. In conclusion, ALPK2 exerts a cancer-promoting role in the development of bladder cancer by regulating DEPDC1A, which may become a promising target to improve the treatment strategy of bladder cancer.Subject terms: Cancer models, Bladder cancer 相似文献
873.
Liqing Ma Heping Jiang Weihua Li Hua Qin Zhi Lv Jiujiu Huang Xuewen Hou Weijun Wang 《Biochemistry and Biophysics Reports》2021
N-glycosylation plays critical roles in protein secretion, sorting, stability, activity modulation, and interactions to other molecules in the eukaryotic organisms. Fungal β-1,4-mannanases have been widely used in the agri-food industry and contribute to the pathogenesis on plants. However, the information on N-glycosylation of a specific fungal carbohydrate-active enzyme (CAZyme) is currently limited. Herein, a cDNA was cloned from Aspergillus aculeatus QH1, displaying a full length of 1302 bp with an open reading frame of 1134 bp encoding for a GH5 subfamily 7 β-1, 4-mannanase, namely AacMan5_7A. The enzyme was purified and exhibited an optimal activity at pH 4.6 and 60 °C, hydrolyzing glucomannan and galactomannan, but not yeast mannan. AacMan5_7A is an N-glycosylated protein decorated with a high-mannose type glycan. Further through UPLC-ESI-MS/MS analysis, one of the four predicted N-glycosylation sites at N255 position was experimentally verified. The present study expands the information of N-glycosylation in fungal CAZymes, providing scientific bases for enhancing the production of fungal enzymes and their applications in food, feed, and plant biomass conversions. 相似文献
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以花苜蓿(Medicago ruthenica Trautv.)为材料,在内蒙古克什克腾旗建立两个25 m×50 m的样方(山谷YF1和山坡YF2),采集该范围内的所有个体,利用8对SSR分子标记对其遗传变异特性进行分析。结果显示,克什克腾旗花苜蓿居群遗传多样性较高。两个居群个体的空间自相关分析结果表明,9 m内的个体间为非随机邻近交配,且在同距离范围内,山谷居群的个体间遗传相似性更低,推测此区域可能是历史和地理因素塑造了花苜蓿丰富的遗传多样性,两个小尺度空间格局的个体间基因流模式主要受地形影响。 相似文献
879.
稻飞虱是我国及亚洲各水稻产区的重大害虫,在我国成灾危害的种类主要为白背飞虱Sogatella furcifera、褐飞虱Nilaparvata lugens、灰飞虱Laodelphax striatellus.稻飞虱不仅通过韧皮部吸取汁液而且传播多种水稻病毒,对我国水稻每年产量巨大损失.目前,稻飞虱对多种常用化学杀虫剂产生了较高的抗性.因此,急需寻找新的绿色防治方法.当前,"反向化学生态"是化学防治的理想替代方案之一,即通过研究昆虫重要的嗅觉基因功能,揭示嗅觉感受机制,从而找到对昆虫具有吸引作用的小分子化合物,制备诱芯进行田间诱集的绿色防控方法.已有研究证实,嗅觉感受在稻飞虱对水稻植株的定位及危害中发挥重要作用,近年有关稻飞虱嗅觉感受分子机制研究方面也取得不少进展.本文对此进行综述和展望,以期为推动基于嗅觉感受的稻飞虱绿色防控技术的研发提供参考. 相似文献
880.
[目的]通过分析中华蜜蜂Apis cerana cerana气味受体基因AcerOR58编码蛋白的理化性质、结构特征,明确AcerOR58时空表达特性,为该基因后续的功能研究奠定基础.[方法]利用多种生物信息学软件预测分析AcerOR58序列及其编码蛋白的结构特性,采用邻接法构建系统进化树.利用实时荧光定量PCR技术分析AcerOR58在不同发育阶段工蜂触角及采集蜂不同组织的表达差异.[结果]AcerOR58基因的开放阅读框(ORF)长1 230 bp,编码409个氨基酸,成熟蛋白分子量为47.147 ku,理论等电点8.46,无信号肽,含有6个跨膜结构且N端位于胞内,31个潜在的磷酸化位点,在第80-405位氨基酸之间存在一个昆虫气味受体家族7tm_6 superfamily保守结构域.AcerOR58与西方蜜蜂Apis mellifera的AmelOR58亲缘关系最近,核苷酸序列一致性高达96.67%,氨基酸序列一致性高达97.31%.AcerOR58在采集蜂(15-25日龄)阶段的表达量较高,且在触角中的表达量极显著高于其他组织(P<0.01).[结论]AcerOR58具有昆虫气味受体的结构特征,该基因特异性高表达于中华蜜蜂采集蜂触角中,推测其功能与识别外界蜜粉源的花香气味物质有关. 相似文献