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121.
Tie‐Yuan Liu Nenghui Ye Xinyu Wang Debatosh Das Yuxiang Tan Xiangkai You Mingxiu Long Tianming Hu Lei Dai Jianhua Zhang Mo‐Xian Chen 《植物学报(英文版)》2021,63(10):1753-1774
The rhizosheath, a layer of soil grains that adheres firmly to roots, is beneficial for plant growth and adaptation to drought environments. Switchgrass is a perennial C4 grass which can form contact rhizosheath under drought conditions. In this study, we characterized the microbiomes of four different rhizocompartments of two switchgrass ecotypes (Alamo and Kanlow) grown under drought or well-watered conditions via 16S ribosomal RNA amplicon sequencing. These four rhizocompartments, the bulk soil, rhizosheath soil, rhizoplane, and root endosphere, harbored both distinct and overlapping microbial communities. The root compartments (rhizoplane and root endosphere) displayed low-complexity communities dominated by Proteobacteria and Firmicutes. Compared to bulk soil, Cyanobacteria and Bacteroidetes were selectively enriched, while Proteobacteria and Firmicutes were selectively depleted, in rhizosheath soil. Taxa from Proteobacteria or Firmicutes were specifically selected in Alamo or Kanlow rhizosheath soil. Following drought stress, Citrobacter and Acinetobacter were further enriched in rhizosheath soil, suggesting that rhizosheath microbiome assembly is driven by drought stress. Additionally, the ecotype-specific recruitment of rhizosheath microbiome reveals their differences in drought stress responses. Collectively, these results shed light on rhizosheath microbiome recruitment in switchgrass and lay the foundation for the improvement of drought tolerance in switchgrass by regulating the rhizosheath microbiome. 相似文献
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本研究分析肺炎肺实变患儿支气管肺泡灌洗液病原谱构成,旨在为临床经验性抗感染治疗提供指导。收集2019年1月-2020年1月复旦大学附属儿科医院纤维支气管镜室诊治的住院肺炎病例临床资料,其中肺实变的诊断基于影像学证据,依托国家儿童医学中心病原学检测平台,并参考感染传染科医生解读,本研究对肺炎伴肺实变患儿支气管肺泡灌洗液标本的病原学检测结果进行回顾性分析。结果显示,286例肺炎患儿的286份支气管肺泡灌洗液标本被纳入研究,平均年龄5.5(5.8±3.1)岁,其中195例(68.2%)存在肺炎伴肺实变。总病原体检出率为76.6%(219/286),肺实变和无肺实变肺炎患儿病原体检出率分别为77.9%(152/195)和73.6%(67/91),差异无统计学意义;检出的前5种病原体均为肺炎支原体、腺病毒、鼻病毒、呼吸道合胞病毒和副流感病毒3型。5周岁及以上患儿肺炎支原体检出率达最高77.0%(127/165),肺实变病例和无肺实变病例肺炎支原体检出率分别为67.2%(131/195)和61.5%(56/91),差异无统计学意义。本研究结果提示,肺炎支原体、腺病毒、鼻病毒、呼吸道合胞病毒和副流感病毒3型是导致本研究目标人群患病的主要病原体;病原体检出率高低与是否肺实变无关。 相似文献
123.
虾类和果蝇同属节肢动物.果蝇的相关研究表明自噬与免疫关系密切,而虾类自噬机制研究鲜少.微管相关蛋白1轻链3 (microtubule-associated protein 1 light chain 3,Lc3)与自噬基因Atg8同源,其与自噬体的形成密切相关,是自噬活性的标志分子.本研究利用RACE技术克隆了罗氏沼虾的MrLc3a基因的全长cDNA,用RT-qPCR检测了该基因在罗氏沼虾主要组织中的表达量;并研究了正常和副溶血弧菌感染两种情况下MrLc3a基因和免疫基因Relish的表达变化情况,为其在病害防御方面的应用提供了前期数据.试验结果表明:MrLc3a基因全长653 bp,其中包括195 bp的5'-UTR、378 bp的ORF开放阅读框和80 bp的3'-UTR,共编码126个氨基酸;序列比对结果显示,其编码的氨基酸序列和南美白对虾Lc3a编码的氨基酸序列具有较高的同源性,并在系统发育树上聚为一支;RT-qPCR结果显示,MrLc3a基因在罗氏沼虾各个组织均有表达,其中在脑、鳃、胃中的表达量较高,在肝胰腺和性腺中的表达量较少;副溶血弧菌感染罗氏沼虾后显著影响了MrLc3a和Relish基因在罗氏沼虾肝胰腺组织中的转录情况,MrLc3a和Relish基因随时间变化都呈现出先上升后下降的趋势,表明MrLc3a基因通过参与细胞自噬过程而参与了免疫反应. 相似文献
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126.
Chen Ping Dai Chun-Hua Shi Zhi-Hao Wang Yi Wu Jian-Nong Chen Kang Su Jin-Yu Li Jian 《Apoptosis : an international journal on programmed cell death》2021,26(11-12):639-656
Apoptosis - Resistance to epidermal growth factor receptor-tyrosin kinase inhibitors (TKIs, e.g. icotinib) remains a major clinical challenge. Non-small cell lung cancer patients with wild-type... 相似文献
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128.
Jibing Li Chunling Luo Dayi Zhang Xuan Zhao Yeliang Dai Xixi Cai Gan Zhang 《Environmental microbiology》2021,23(11):7042-7055
Rhizoremediation is a potential technique for polycyclic aromatic hydrocarbon (PAH) remediation; however, the catabolic pathways of in situ rhizosphere PAH degraders and the main factors driving PAH rhizoremediation remain unclear. To address these issues, stable-isotope-probing coupled with metagenomics and molecular ecological network analyses were first used to investigate the phenanthrene rhizoremediation by three different prairie grasses in this study. All rhizospheres exhibited a significant increase in phenanthrene removal and markedly modified the diversity of phenanthrene degraders by increasing their populations and interactions with other microbes. Of all the active phenanthrene degraders, Marinobacter and Enterobacteriaceae dominated in the bare and switchgrass rhizosphere respectively; Achromobacter was markedly enriched in ryegrass and tall fescue rhizospheres. Metagenomes of 13C-DNA illustrated several complete pathways of phenanthrene degradation for each rhizosphere, which clearly explained their unique rhizoremediation mechanisms. Additionally, propanoate and inositol phosphate of carbohydrates were identified as the dominant factors that drove PAH rhizoremediation by strengthening the ecological networks of soil microbial communities. This was verified by the results of rhizospheric and non-rhizospheric treatments supplemented with these two substances, further confirming their key roles in PAH removal and in situ PAH rhizoremediation. Our study offers novel insights into the mechanisms of in situ rhizoremediation at PAH-contaminated sites. 相似文献
129.
Rui Bai Cheng Yuan Wenjie Sun Jianguo Zhang Yuan Luo Yanping Gao Yangyi Li Yan Gong Conghua Xie 《International journal of biological sciences》2021,17(8):1995
Abnormal expression and dysfunction of Never-in-mitosis-A-related kinase 2 (NEK2) result in tumorigenesis. High levels of NEK2 are related to malignant progression, drug resistance, and poor prognosis. However, the relationship between NEK2 levels and the occurrence of non-small cell lung cancer (NSCLC) remains unknown. This study aimed to explore the impacts of NEK2 on the oncogenesis of NSCLC and the tumor microenvironment. Downregulation of NEK2 inhibited A549 and H1299 cell proliferation, migration, and invasion, blocking cell cycle at the G0/G1 phase. Loss of NEK2 inhibited the release of IL-10 from tumor cells, M2-like polarization of macrophages, angiogenesis, and vascular endothelial cell migration. Furthermore, NEK2 deficiency inhibited tumor growth in vivo. Taken together, NEK2 knockdown inhibited the occurrence and development of NSCLC, M2 polarization of macrophages, and angiogenesis. The abnormal expression of NEK2 might not only indicate tumor progression and patient prognosis but also serve as a potential molecular therapeutic target with great development prospects. 相似文献
130.
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