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81.
Dendrolimus spp. are important destructive pests of conifer forests, and Dendrolimus punctatus Walker (Lepidoptera; Lasiocampidae) is the most widely distributed Dendrolimus species. During periodic outbreaks, this species is said to make “fire without smoke” because large areas of pine forest can be quickly and heavily damaged. Yet, little is known about the molecular mechanisms that underlie the unique ecological characteristics of this forest insect. Here, we combined Pacific Biosciences (PacBio) RSII single‐molecule long reads and high‐throughput chromosome conformation capture (Hi‐C) genomics‐linked reads to produce a high‐quality, chromosome‐level reference genome for D. punctatus. The final assembly was 614 Mb with contig and scaffold N50 values of 1.39 and 22.15 Mb, respectively, and 96.96% of the contigs anchored onto 30 chromosomes. Based on the prediction, this genome contained 17,593 protein‐coding genes and 56.16% repetitive sequences. Phylogenetic analyses indicated that D. punctatus diverged from the common ancestor of Hyphantria cunea, Spodoptera litura and Thaumetopoea pityocampa ~ 108.91 million years ago. Many gene families that were expanded in the D. punctatus genome were significantly enriched for the xenobiotic biodegradation system, especially the cytochrome P450 gene family. This high‐quality, chromosome‐level reference genome will be a valuable resource for understanding mechanisms of D. punctatus outbreak and host resistance adaption. Because this is the first Lasiocampidae insect genome to be sequenced, it also will serve as a reference for further comparative genomics.  相似文献   
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Fluid in interstitial spaces accounts for ~20% of an adult body weight and flows diffusively for a short range. Does it circulate around the body like vascular circulations? This bold conjecture has been debated for decades. As a conventional physiological concept, interstitial space is a micron‐sized space between cells and vasculature. Fluid in interstitial spaces is thought to be entrapped within interstitial matrix. However, our serial data have further defined a second space in interstitium that is a nanosized interfacial transport zone on a solid surface. Within this fine space, fluid along a solid fibre can be transported under a driving power and identically, interstitial fluid transport can be visualized by tracking the oriented fibres. Since 2006, our data from volunteers and cadavers have revealed a long‐distance extravascular pathway for interstitial fluid flow, comprising at least four types of anatomic distributions. The framework of each extravascular pathway contains the longitudinally assembled and oriented fibres, working as a fibrorail for fluid flow. Interestingly, our data showed that the movement of fluid in a fibrous pathway is in response to a dynamic driving source and named as dynamotaxis. By analysis of previous studies and our experimental results, a hypothesis of interstitial fluid circulatory system is proposed.  相似文献   
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该研究基于番茄基因组数据库SGN(Sol Genomic Network)信息,利用RT PCR从栽培番茄‘M82’(Solanum lycopersicum)中成功克隆到番茄SlWRKY6基因(登录号:Solyc02g080890),通过qRT PCR方法和原核表达初步验证其生物学功能。结果表明:(1)生物信息学分析显示,番茄SlWRKY6基因ORF全长1 653 bp,编码550个氨基酸,其蛋白结构含有1个WRKYGQK保守结构域和C2H2锌指结构域,属于IIb类;其基因启动子上游1 500 bp含有多个激素响应元件和非生物胁迫响应元件。(2)进化树分析显示,SlWRKY6与潘那利番茄SpWRKY31 X1(NP_001352691.1)的相似性最高,且定位于细胞核内。(3)qRT PCR结果显示,SlWRKY6基因在番茄根、茎、叶中均有表达,在叶中的表达量最高,且受盐和干旱诱导表达。(4)SDS PAGE及Western blot结果显示,pET 30a SlWRKY6重组蛋白的大小约66 kDa,与预期大小一致。(5)原核表达分析显示,重组菌E. coli BL21∷pET 30a SlWRKY6在不同浓度盐(NaCl)和干旱(Mannitol)胁迫下生长速度显著低于对照菌E. coli BL21∷pET 30a,且在400 mmol/L NaCl、800 mmol/L甘露醇胁迫条件下最为显著;滴板实验初步验证SlWRKY6转录因子能提高重组菌E. coli BL21∷pET 30a SlWRKY6在ABA和pH 9(NaOH)胁迫的耐受性;在400 mmol/L NaCl、pH 5(HCl)、800 mmol/L甘露醇胁迫条件下耐受能力降低。研究表明,SlWRKY6转录因子可能通过参与ABA途径来响应非生物胁迫。  相似文献   
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Huang  Xing-Qi  Wang  Lin-Juan  Kong  Meng-Juan  Huang  Na  Liu  Xin-Ya  Liang  Han-Yu  Zhang  Jia-Xin  Lu  Shan 《Protoplasma》2021,258(2):371-378

Chloroplasts are semi-autonomous organelles, with more than 95% of their proteins encoded by the nuclear genome. The chloroplast-to-nucleus retrograde signals are critical for the nucleus to coordinate its gene expression for optimizing or repairing chloroplast functions in response to changing environments. In chloroplasts, the pentatricopeptide-repeat protein GENOMES UNCOUPLED 1 (GUN1) is a master switch that senses aberrant physiological states, such as the photooxidative stress induced by norflurazon (NF) treatment, and represses the expression of photosynthesis-associated nuclear genes (PhANGs). However, it is largely unknown how the retrograde signal is transmitted beyond GUN1. In this study, a protein GUN1-INTERACTING PROTEIN 1 (GIP1), encoded by At3g53630, was identified to interact with GUN1 by different approaches. We demonstrated that GIP1 has both cytosol and chloroplast localizations, and its abundance in chloroplasts is enhanced by NF treatment with the presence of GUN1. Our results suggest that GIP1 and GUN1 may function antagonistically in the retrograde signaling pathway.

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肺部微生物组存在于呼吸道和实质组织中,通过菌群紊乱、代谢产物、炎症反应、免疫反应、基因毒性等方面介导肺部损伤。随着肺部微生物组的深入研究,发现肺部微生物组的相关活动与慢性阻塞性肺疾病(chronic obstructive pulmonary disease, COPD)和肺癌息息相关,能够促使COPD向肺癌的转变。本文主要介绍了肺部微生物组稳态及其通过炎症反应导致COPD和肺癌,重点探讨了肺部微生物组如何通过炎症反应介导COPD转化为肺癌,以期为COPD和肺癌的临床预防、优化治疗以及新型药物设计提供新的理论依据。  相似文献   
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Zhong  Yujie  Jin  Chengni  Han  Jiahui  Zhu  Jiachang  Liu  Qi  Sun  Dianjun  Xia  Xiaodong  Peng  Xiaoli 《Cell biology and toxicology》2021,37(5):795-809
Cell Biology and Toxicology - 3-Chloro-1, 2-propanediol (3-MCPD) is a food-borne toxic substance well-known for more than 40 years that is mainly associated with nephrotoxicity. A better...  相似文献   
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