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151.
Phylogenetic distance among host species represents a proxy for host traits that act as biotic filters to shape host‐associated microbiome community structure. However, teasing apart potential biotic assembly mechanisms, such as host specificity or local species interactions, from abiotic factors, such as environmental specificity or dispersal barriers, in hyperdiverse, horizontally transmitted microbiomes remains a challenge. In this study, we tested whether host phylogenetic relatedness among 18 native Asteraceae plant species and spatial distance between replicated plots in a common garden affects foliar fungal endophyte (FFE) community structure. We found that FFE community structure varied significantly among host species, as well as host tribes, but not among host subfamilies. However, FFE community dissimilarity between host individuals was not significantly correlated with phylogenetic distance between host species. There was a significant effect of spatial distance among host individuals on FFE community dissimilarity within the common garden. The significant differences in FFE community structure among host species, but lack of a significant host phylogenetic effect, suggest functional differences among host species not accounted for by host phylogenetic distance, such as metabolic traits or phenology, may drive FFE community dissimilarity. Overall, our results indicate that host species identity and the spatial distance between plants can determine the similarity of their microbiomes, even across a single experimental field, but that host phylogeny is not closely tied to FFE community divergence in native Asteraceae. 相似文献
152.
[背景] 化脓隐秘杆菌作为一种条件致病菌,常与蓝耳病病毒、猪圆环病病毒、巴氏杆菌等混合感染猪,引起各种非特异性化脓性感染,部分临床症状与副猪嗜血杆菌相似。本试验从江西某猪场一起因呼吸道症状急性死亡病猪的肺脏分离到一株具有β溶血特性、疑似化脓隐秘杆菌的细菌病原。[目的] 鉴定该病原的菌属种类、生物学特性及基因组特征,为该菌疾病的基础研究与临床防控奠定理论基础。[方法] 采用透射电镜、扫描电镜结合PCR鉴定等方法对菌属种类进行鉴定;通过动物实验、药敏试验,分析菌株的生物学特性;借助全基因组测序、生物信息学等技术发掘该菌的基因组特征。[结果] 形态观察、16S rRNA基因鉴定及系统发育分析证实,该分离菌株是化脓隐秘杆菌,命名为JX18;药敏试验表明,该菌株对克林霉素和林可霉素不敏感,对其余所选药物均敏感;动物实验结果显示,对小鼠腹腔攻毒后,小鼠腹部出现明显脓肿病灶,最高剂量组的小鼠全部死亡;全基因组测序结果表明,该菌株携带plo、nanH、nanP、fimA、fimC、fimE等重要毒力基因,并且与其他化脓隐秘杆菌菌株毒力基因的相似性较高;根据同源基因数据库(Cluster of Orthologous Groups,COG)预测,菌株JX18中参与碳水化合物代谢的基因占比最高;通过毒力基因数据库(virulence factor database,VFDB)、UniProtKB/Swiss-Prot等数据库预测,JX18菌株基因组中携带有多个组氨酸激酶、反应调节因子等与细菌双组分调控系统相关基因,以及多种与粘附、侵入及分泌系统相关的毒力基因。[结论] 在江西省分离鉴定出一株猪源强致病性化脓隐秘杆菌,丰富了猪源化脓隐秘杆菌病原信息,为进一步开展猪源化脓隐秘杆菌相关研究与防控奠定了理论依据。 相似文献
153.
154.
【目的】探析双叉犀金龟Trypoxylus dichotomus表皮蛋白的序列特征及生化性质。【方法】利用RT-PCR克隆双叉犀金龟表皮蛋白基因,利用生物信息学方法分析表皮蛋白的结构特征及系统发育;采用大肠杆菌Escherichia coli表达系统对双叉犀金龟表皮蛋白进行重组表达,并通过金属离子鳌合层析的方法对重组蛋白进行纯化;采用体外结合实验检测双叉犀金龟表皮蛋白与α-几丁质(α-chitin)、β-几丁质(β-chitin)、壳聚糖(chitosan)和胶体几丁质(colloidal chitin)的结合能力;观察确定蛋白液液相分离(liquid-liquid phase separation, LLPS)性质。【结果】克隆获得双叉犀金龟表皮蛋白基因TdCPR12611(GenBank登录号: MT813021)和TdCPR7854(GenBank登录号: MT813022)。系统进化分析结果表明,TdCPR12611与食粪金龟Onthophagus taurus OtCP-1的亲缘关系最近;TdCPR7854与食粪金龟的OtCP-acp20-1, OtCP-acp20-2和OtCP-acp20-3的亲缘关系最为接近,它们均属于CPR_RR-2家族。原核表达和纯化获得重组表皮蛋白TdCPR12611和TdCPR7854。两重组表皮蛋白与4种类型的几丁质具有不同结合能力,其中有41.4%的TdCPR12611与壳聚糖结合,而有62.3%的TdCPR7854与β-几丁质结合。TdCPR12611具有内部较为无序的结构,并能够在室温条件下自发团聚形成液液相分离现象,而TdCPR7854不能。【结论】本研究测定分析了双叉犀金龟CPR_RR-2家族表皮蛋白TdCPR12611与TdCPR7854的序列特征和与几丁质的结合特性。研究结果有利于加深人们对于昆虫表皮装配机制的了解,为蛋白仿生材料开发提供思路。 相似文献
155.
【目的】本研究旨在揭示内蒙古草原新害虫沙葱萤叶甲Galeruca daurica专性夏滞育相关的重要基因以及代谢通路。【方法】应用RNA-Seq技术,对沙葱萤叶甲成虫不同夏滞育阶段[滞育前期(PD)、滞育期(D)及滞育后期(TD)]进行转录组测序、分析及基因功能预测,基于RNA-Seq数据筛选夏滞育不同阶段差异表达基因;利用qPCR对基于RNA-Seq数据筛选的10个差异表达基因的表达水平进行验证。【结果】从9个文库中获得202 770 198 clean reads,将12 078 060条转录本组装获得82 292 条unigene,平均长度为783.59 bp,N50为1 545 bp。沙葱萤叶甲D vs PD和TD vs D 比较组分别有2 395(2 119上调和277下调)和62(59上调和3下调)个差异基因。KEGG分析表明,D vs PD和TD vs D比较组差异表达基因分别显著富集于糖孝解/糖异生通路和脂肪酸生物合成通路;此外,许多与钙离子信号转导相关的基因在滞育期间差异表达。10个差异表达基因的qPCR分析表明,RNA-Seq与qPCR结果高度一致。【结论】糖孝解/糖异生、脂肪酸生物合成及钙离子信号通路可能在沙葱萤叶甲滞育调节中起着重要的作用。本研究为进一步研究沙葱萤叶甲成虫专性夏滞育的分子机理奠定了基础。 相似文献
156.
Ji Ruiqin Gao Shiqi Bi Qing Wang Yilian Lv Mingcan Ge Wenjie Feng Hui 《Journal of Plant Growth Regulation》2021,40(1):405-422
Journal of Plant Growth Regulation - Clubroot disease, caused by Plasmodiophora brassicae Woronin infection, leads to significant yield and economic losses in cruciferous vegetables. However, the... 相似文献
157.
Shou-Yin Li Cong Chen Zhi-Yi Jia Qing Li Zhi-Zhen Tang Man-Fang Zhong Han Zhu De-Jun Hao 《Journal of Applied Entomology》2021,145(6):530-542
The weevil Pagiophloeus tsushimanus Morimoto (Coleoptera: Curculionidae), native to Eastern Asia, is a wood-boring pest that causes severe damage to camphor trees (Cinnamomum sp.) in Shanghai, China. Other Lauraceae tree species that grew sympatrically with this pest in close proximity could face a potential threat. To assess the potential risks of host shift, we explored the phenotypic associations between preference and performance in P. tsushimanus reared on three Lauraceae tree species. In a no-choice experiment offering branches of each plant as diet material and oviposition sites, we found that individuals reared on Cinnamomum camphora (L.) Presl (Laurales: Lauraceae) exhibited the strongest performance with shorter development time, higher survival and growth rate in the immature stage, longer longevity and greater fecundity in adults. In contrast, those on novel Lauraceae tree species (Cinnamomum chekiangensis Nakai and Phoebe chekiangensis Shang) had difficulty completing their whole life cycle due to significantly lower survival and reproduction. In a multiple-choice experiment, C. camphora was established as the preferred host. However, we found that the larval experiences on the non-preferred host plants contributed to an increased preference for that plant species. These results indicated that both the preference-performance hypothesis and the Hopkins’ host selection principle are applicable in this weevil under experimental conditions. It is possible that although the weevil performed poorly on two novel Lauraceae tree species, under favourable conditions their surviving offspring could evolve into a new host-specific population. Consequently, this weevil pest needs to be monitored on these novel Lauraceae tree species. 相似文献
158.
Chunyan Luo Decheng Wang Weifeng Huang Yinhong Song Lisha Ge Xinyue Zhang Lixue Yang Jiao Lu Xiancong Tu Qiuyun Chen Jian Yang Chengqi Xu Qing Wang 《生物化学与生物物理学报:疾病的分子基础》2021,1867(7):166130
A high level of low-density lipoprotein cholesterol (LDL) is one of the most important risk factors for coronary artery disease (CAD), the leading cause of death worldwide. However, a low concentration of LDL may be protective. Genome-wide association studies revealed that variation in ADTRP gene increased the risk of CAD. In this study, we found that a low concentration of oxidized-LDL induced the expression of ADTRP. Further analyses showed that knockdown of the expression of LDL receptor genes LDLR, CD36, or LOX-1 significantly downregulated ADTRP expression, whereas overexpression of LDLR/CD36/LOX-1 markedly increased ADTRP expression through the NF-κB pathway. Like ADTRP, LDLR, CD36 and LOX-1 were all involved in endothelial cell (EC) functions relevant to the initiation of atherosclerosis. Downregulation of LDLR/CD36/LOX-1 promoted monocyte adhesion to ECs and transendothelial migration of monocytes by increasing expression of ICAM-1, VCAM-1, E-selectin and P-selectin, decreased EC proliferation and migration, and increased EC apoptosis, thereby promoting the initiation of atherosclerosis. Opposite effects were observed with the overexpression of ADTRP and LDLR/CD36/LOX-1 in ECs. Interestingly, through the NF-κB and AKT pathways, overexpression of ADTRP significantly upregulated the expression of LDLR, CD36, and LOX-1, and knockdown of ADTRP expression significantly downregulated the expression of LDLR, CD36, and LOX-1. These data suggest that ADTRP and LDL receptors LDLR/CD36/LOX-1 positively regulate each other, and form a positive regulatory loop that regulates endothelial cell functions, thereby providing a potential protective mechanism against atherosclerosis. Our findings provide a new molecular mechanism by which deregulation of ADTRP and LDLR/CD36/LOX-1 promote the development of atherosclerosis and CAD. 相似文献
159.
160.
黄河三角洲滨海湿地微生物多样性及其驱动因子 总被引:1,自引:0,他引:1
微生物在湿地的生物地球化学循环和生态功能调节中发挥着重要作用,对全球气候变化具有重大影响,对维持全球生态系统的健康至关重要。以黄河三角洲滨海湿地为研究对象,通过采集代表性植被群落的土壤表层和部分植物根系,探究土壤微生物群落组成、根际微生物、环境因子及其内在的关联性和影响机制。研究结果表明不同植被覆盖地区微生物多样性存在差异,芦苇区和柽柳区微生物丰度高于泥滩区、碱蓬区和棉田,海漫滩微生物丰度高于河漫滩地和泥滩。土壤微生物菌群结构和多样性显著高于根际:土壤细菌的香农指数约为4-5.5,根际微生物的香农指数约为0-4。土壤细菌主要为厚壁菌门、变形菌门、拟杆菌门和放线菌门,占样品总数的90%以上;而根际细菌主要是蓝藻门、变形菌门和放线菌门,二者在属水平上的菌群结构差异更加明显。环境因子的含量与生境类型有关,SO42-和NO3-的相关性最高,植被覆盖区土壤中Mn4+、Fe3+和水解氮的含量低于滩涂裸地。冗余分析(RDA)表明,pH值在小空间尺度上对湿地土壤中细菌群落的影响较小,环境因子在门和属水平的解释率分别为89.7%和86.8%,其中K(23.4%)、NO2-(11.8%)、Mn4+(9.8%)和Na(8.0%)是解释门水平微生物区系结构变化和组成的主要因子。研究为理解湿地微生物多样性与湿地生态系统功能之间的影响机制提供了一个生态学视角,有助于了解黄河三角洲滨海湿地土壤和植物根际的细菌分布特征,对黄河三角洲退化滨海湿地的生物修复具有重要的指导意义。 相似文献