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| 1 | Wheat powdery mildew resistance gene Pm64 derived from wild emmer (Triticum turgidum var.dicoccoides) is tightly linked in repulsion with stripe rust resistance gene Yr5显示文摘Stripe rust and powdery mildew are both devastating diseases for durum and common wheat.Pyramiding of genes conferring resistance to one or more diseases in a single cultivar is an important breeding approach to provide broader spectra of resistances in wheat improvement. A new powdery mildew resistance gene originating from wild emmer(Triticum turgidum var.dicoccoides) backcrossed into common wheat(T. aestivum) line WE35 was identified. It conferred an intermediate level of resistance to Blumeria graminis f. sp. tritici isolate E09 at the seedling stage and a high level of resistance at the adult plant stage. Genetic analysis showed that the powdery mildew resistance in WE35 was controlled by a dominant gene designated Pm64. Bulked segregant analysis(BSA) and molecular mapping indicated that Pm64 was located in chromosome bin 2 BL4-0.50–0.89. Polymorphic markers were developed from the corresponding genomic regions of Chinese Spring wheat and wild emmer accession Zavitan to delimit Pm64 to a 0.55 cM genetic interval between markers WGGBH1364 and WGGBH612, corresponding to a 15 Mb genomic region on Chinese Spring and Zavitan 2 BL, respectively. The genetic linkage map of Pm64 is critical for fine mapping and cloning. Pm64 was completely linked in repulsion with stripe rust resistance gene Yr5. Analysis of a larger segregating population might identify a recombinant line with both genes as a valuable resource in breeding for resistance to powdery mildew and stripe rust. | Deyun Zhang Keyu Zhu Lingli Dong Yong Liang Genqiao Li Tilin Fang Guanghao Guo Qiuhong Wu Jingzhong Xie Yongxing Chen Ping Lu Miaomiao Li Huaizhi Zhang Zhenzhong Wang Yan Zhang Qixin Sun Zhiyong Liu | 2019 | The Crop Journal2019,7,6: | 8 |
| 2 | Metabolism pathways of arachidonic acids:mechanisms and potential therapeutic targets显示文摘The arachidonic acid(AA)pathway plays a key role in cardiovascular biology,carcinogenesis,and many inflammatory diseases,such as asthma,arthritis,etc.Esterified AA on the inner surface of the cell membrane is hydrolyzed to its free form by phospholipase A2 (PLA2),which is in turn further metabolized by cyclooxygenases(COXs)and lipoxygenases(LOXs)and cytochrome P450(CYP)enzymes to a spectrum of bioactive mediators that includes prostanoids,leukotrienes(LTs),epoxyeicosatrienoic acids(EETs),dihydroxyeicosatetraenoic acid(diHETEs),eicosatetraenoic acids(ETEs),and lipoxins(LXs).Many of the latter mediators are considered to be novel preventive and therapeutic targets for cardiovascular diseases(CVD),cancers,and inflammatory diseases.This review sets out to summarize the physiological and pathophysiological importance of the AA metabolizing pathways and outline the molecular mechanisms underlying the actions of AA related to its three main metabolic pathways in CVD and cancer.progression will provide valuable insight for developing new therapeutic drugs for CVD and anti-cancer agents such as inhibitors of EETs or 2J2.Thus,we herein present a synopsis of AA metabolism in human health,cardiovascular and cancer biology,and the signaling pathways involved in these processes.To explore the role of the AA metabolism and potential therapies,we also introduce the current newly clinical studies targeting AA metabolisms in the different disease conditions. | Bei Wang Lujin Wu Jing Chen Lingli Dong Chen Chen Zheng Wen Jiong Hu Ingrid Fleming Dao Wen Wang | 2021 | Signal Transduction and Targeted Therapy2021,6,3: | 7 |
| 3 | Resolvin-D1 inhibits interleukin-8 and hydrogen peroxide production induced by cigarette smoke extract in 16HBE cells via attenuating NF-κB activation显示文摘 | Dong Jiajia Zhang Mingke Liao Zenglin Wu Wei Wang Tao Chen Lei Yang Ting Guo Lingli Xu Dan Wen Fuqiang | 2014 | Chinese Medical Journal2014,,3: | 6 |
| 4 | Molecular genetic and genomic analysis of wheat milling and end-use traits in China:Progress and perspectives显示文摘Wheat is the most widely cultivated staple food crop, and multiple types of food derivatives are processed and consumed globally. Wheat grain quality(WGQ) is central to food processing and nutritional value, and is a decisive factor for consumer acceptance and commercial value of wheat cultivars. Hence, improvement in WGQ traits is top priority for both conventional and molecular wheat breeding. In this review we will focus on two important WGQ traits, grain milling and end-use, and will summarize recent progress in China. Chinese scientists have invested substantial effort in molecular genetic and genomic analysis of these traits and their effects on end-use properties. The insights and resources generated have contributed to the understanding and improvement of these traits. As high-quality genomics information and powerful genome engineering tools are becoming available for wheat, more fundamental breakthroughs in dissecting the molecular and genomic basis of WGQ are expected. China will strive to make further significant contributions to the study and improvement of WGQ in the genomics era. | Daowen Wang Kunpu Zhang Lingli Dong Zhenying Dong Yiwen Li Abrar Hussain Huijie Zhai | 2018 | The Crop Journal2018,6,1: | 4 |
| 5 | New insights into the significance of the BCR repertoire in B-1 cell development and function显示文摘As an important player of innate immunity,B-1 cells have been characterized by natural antibody production and rapid immune response.Based on their expression or lack of CD5,B-1 cells are further separated into B-1a and B-1b subsets.1 Although extensive studies have demonstrated a pivotal role of conventional B cells in adaptive immunity,there is increasing evidence indicating the close associations of B-1a cells with self-reactivity,autoimmunity,infection,and even leukemia.2–4 Here,we describe recent advances that lead to a clearer understanding of B-1 cell development with a focus on new insights into the significance of the B-cell receptor(BCR)repertoire in B-1a cell biology and discuss the potential strategies for specific targeting of B-1a cells under pathological settings. | Xiaohui Wang Cong Ye Xiang Lin Kongyang Ma Fan Xiao Lingli Dong Liwei Lu | 2019 | Cellular & Molecular Immunology2019,16,9: | 2 |
| 6 | High-temperature wheat leaf rust resistance gene Lr13 exhibits pleiotropic effects on hybrid necrosis显示文摘Dear Editor,Wheat is one of the most important staple food crops.Leaf rust caused by Puccinia triticina Eriks.(Pt)is a destructive foliar disease that threatens world wheat production.Complementary wheat genes Necrosis 1(Ne1)and Necrosis 2(Ne2)on chromosome arms 5BL and 2BS,respectively,cause hybrid necrosis(Caldwell and Compton,1943;Chu et al.,2006).Ne2 shows extremely tight genetic linkage with leaf rust resistance gene Lr13(Zhang et al.,2016).We previously identified a temperature-sensitive leaf rust resistance gene LrZH22 in Chinese wheat cultivar Zhoumai 22(ZM,Figure 1A)that was effective against most Chinese Pt pathotypes(Wang et al.,2016)and shared an overlapping genetic interval with Lr13.In a separate study,a recessive early leaf senescence 1(els1)gene(Figure 1B)shared an overlapping interval with LrZH22/Lr13/Ne2(Chu et al.,2006;Wang et al.,2016;Zhang et al.,2016;Li et al.,2018).However,the function and relationship of LrZH22/Lr13/Ne2/els1 remained unknown for decades.Here,we report the map-based cloning of LrZH22 and els1 and characterize their relationship with Lr13 and Ne2 in conjunction with a companion paper(Hewitt et al.t 2021)studying the same gene. | Xiaocui Yan Miaomiao Li Peipei Zhang Guihong Yin Huaizhi Zhang Takele Weldu Gebrewahid Jianping Zhang Lingli Dong Daqun Liu Zhiyong Liu Zaifeng Li | 2021 | Molecular Plant2021,14,7: | 2 |
| 7 | Update on classification,diagnosis,and management of immunoglobulin G4-related disease显示文摘Immunoglobulin G4-related disease(IgG4-RD)is a newly recognized chronic fibro-inflammatory autoimmune disease,and its recognition has been constantly increasing worldwide over the last few years.A correct and timely recognition,as well as appropriate intervention,is crucial for the treatment of IgG4-RD.For certain subtypes of IgG4-RD,organ-specific criteria are formulated to make the diagnosis more accurate.New biomarkers have emerged in the recent years to aid the disease diagnosis,its prognosis prediction,as well as therapy response monitoring.Although recurrence is very common in IgG4-RD,glucocorticoid is still the first-line treatment for the majority of patients.The factors that affect the likelihood of disease relapse are multifaceted.The selection strategy of various steroid-sparing agents is still being explored.Besides,when patients have special sites involvement leading to severe clinical conditions,surgical operation or interventional therapy should also be considered.An update on classification,diagnosis,and management of IgG4-RD is provided in the current study to fully elucidate the recommended clinical practice of this mysterious disease. | Yu Chen Shaozhe Cai Lingli Dong Hisanori Umehara | 2022 | Chinese Medical Journal2022,,4: | 2 |
| 8 | Divergence in homoeolog expression of the grain length-associated gene GASR7 during wheat allohexaploidization显示文摘Hexaploid wheat has triplicated homoeologs for most of the genes that are located in subgenomes A, B, and D. GASR7, a member of the Snakin/GASA gene family, has been associated with grain length development in wheat. However, little is known about divergence of its homoeolog expression in wheat polyploids. We studied the expression patterns of the GASR7 homoeologs in immature seeds in a synthetic hexaploid wheat line whose kernels are slender like those of its maternal parent(Triticum turgidum, AABB, PI 94655) in contrast to the round seed shape of its paternal progenitor(Aegilops tauschii, DD, AS2404). We found that the B homoeolog of GASR7 was the main contributor to the total expression level of this gene in both the maternal tetraploid progenitor and the hexaploid progeny, whereas the expression levels of the A and D homoeologs were much lower. To understand possible mechanisms regulating different GASR7 homoeologs, we firstly analyzed the promoter sequences of three homoeologous genes and found that all of them contained gibberellic acid(GA) response elements, with the TaG ASR7 B promoter(pT aG ASR7B) uniquely characterized by an additional predicted transcriptional enhancer. This was confirmed by the GA treatment of spikes where all three homoeologs were induced, with a much stronger response for TaG ASR7 B. McrB C enzyme assays showed that the methylation status at pT aG ASR7 D was increased during allohexaploidization, consistent with the repressed expression of TaG ASR7 D. For pT aG ASR7 A, the distribution of repetitive sequence-derived 24-nucleotide(nt) small interfering RNAs(siR NAs) were found which suggests possible epigenetic regulation because 24-nt siR NAs are known to mediate RNA-dependent DNA methylation. Our results thus indicate that both genetic and epigenetic mechanisms may be involved in the divergence of GASR7 homoeolog expression in polyploid wheat. | Dongdong Zhang Bingnan Wang Junmin Zhao Xubo Zhao Lianquan Zhang Dengcai Liu Lingli Dong Daowen Wang Long Mao Aili Li | 2015 | The Crop Journal2015,3,1: | 2 |
| 9 | Effects of exogenic chloride on oxidative degradation of chlorinated azo dye by UV-activated peroxodisulfate显示文摘Recently,the degradation of organic compounds in saline dye wastewater by sulfate radicals(SO4·-)-based advanced oxidation processes(AOPs) have attracted much attention.However,previous studies on these systems have selected non-chlorinated dyes as model compounds,and little is known about the transformation of chlorinated dyes in such systems.In this study,acid yellow 17(AY-17) was selected as a model of chlorinated contaminants,and the degradation kinetics and evolution of oxidation byproducts were investigated in the UV/PDS system.AY-17 can be efficiently degraded(over 98% decolorization)under 90 min irradiation at pH 2.0-3.0,and the reaction follows pseudo-first order kinetics.Cl-accelerated the degradation of AY-17,but simultaneously led to an undesirable increase of absorbable organic halogen(AOX).Several chlorinated byproducts were identified by liquid chromatography-mass spectrometry(LC-MS/MS) in the UV/PDS system.It indicates that endogenic chlorine and exogenic Cl-reacted with SO_(4)·- to form chloride radicals,which are involved in the dechlorination and rechlorination of AY-17 and intermediates.The possible degradation mechanisms of AY-17 photooxidative degradation are proposed.This work provides valuable information for further studies on the role of exogenic chloride in the degradation of chlorinated azo dyes and the kinetic parameters in the PDS-based oxidation process. | Wenya Peng Yu Fu Lingli Wang Yifan Wang Yongxia Dong Ying Huang Zhaohui Wang | 2021 | Chinese Chemical Letters2021,32,8: | 1 |
| 10 | Identification of Immune Genes of the Agamaki Clam (Sinonovacula constricta) by Sequencing and Bioinformatic Analysis of ESTs显示文摘 | Bingbing Feng Lingli Dong Donghong Niu Shanshan Meng Bing Zhang Dabo Liu Songnian Hu Jiale Li | 2010 | Marine Biotechnology2010,,3: | 1 |
| 11 | Association of cancer prevention awareness with liver cancer screening participation rates among a high-risk population:results from rural Anhui Province显示文摘To the Editor:Liver cancer(LC)is one of the most commonly diagnosed cancers and the leading cause of cancer mortality in the world,with approximately 905,677 new cases and 830,180 deaths in 2020.[1]Clearly,the huge burden exerted by LC highlights the need to effectively decrease the incidence and mortality of LC.Unfortunately,survival rates of LC have been maintained at a low level to date.A recent meta-analysis showed that the age-standardized 5-year LC survival rate in China was 10.1%in 2003 to 2005 and 12.1%in 2012 to 2015.[2]The poor prognosis of LC may be partly attributed to the advanced stages once diagnosed for most patients,suggesting that early detection,early diagnosed,and early treatment of LC are warranted.[3] | Zhenqiu Zha Yili Lyu Lingli Liu Tengfei Dong Beijing Cheng Linsheng Yang Zhirong Liu | 2022 | Chinese Medical Journal2022,,4: | 1 |
| 12 | Effects of flavonoids from Rosa laevigata Michx fruit against high-fat diet-induced non-alcoholic fatty liver disease in rats显示文摘 | Shuai Zhang Lingli Zheng Deshi Dong Lina Xu Lianhong Yin Yan Qi Xu Han Yuan Lin Kexin Liu Jinyong Peng | 2013 | Food Chemistry2013,,3: | 1 |
| 13 | Nitric Oxide-Releasing Poly(L-glutamic acid)Hybrid Hydrogels for Accelerating Diabetic Wound Healing显示文摘Comprehensive Summary,Diabetic wound healing is threatening worldwide and challenging in wound dressings.Aiming to inhibit heavy inflammation and bacterial infection in diabetic wounds,herein,we facilely construct a kind of NO-releasing poly(L-glutamic acid)(PGA)based graphene oxide(GO)hybrid hydrogel of HDGS at a lower solid percentage,presenting large microporous size of about 20μm,mild photothermal conversion property,and good biocompatibility.Besides improving hemostasis performance,the less amount of GO endowed the hydrogel with near infrared(NIR)responsivity to control fast and pulsatile NO release for killing bacteria and inhibiting heavy inflammation to proheal diabetic wound,in which a broad spectrum of antibacterial activities toward killing S.aureus,E.coli and MRSA was achieved via a combined effect of photothermia and NO release.In vivo effective hemostasis was attained in a rat liver bleeding model with short hemostatic time of~20 s and lower blood loss of 1.5%—2.0%.Moreover,the treatment of HDGS plus 4 times of mild NIR irradiation(10 min,808 nm,1 W/cm^(2)per time)performed superior full diabetic wound healing within 11—14 d,in which the regenerated skins were characteristic of thick epidermis/dermis,dense blood vessels,some hair follicles-embedding,and high level of collagens. | Lin Teng Yingying Song Lingli Hu Qian Bai Xueliang Zhang Chang-Ming Dong | 2023 | Chinese Journal of Chemistry2023,41,17: | 0 |
| 14 | Functional characterization of powdery mildew resistance gene MIIW172,a new Pm60 allele and its allelic variation in wild emmer wheat显示文摘Wild emmer wheat(Triticum dicoccoides,WEW)is an immediate progenitor of both the cultivated tetraploid and hexaploid wheats and it harbors rich genetic diversity against powdery mildew caused by Blumeria graminis f.sp.tritici(Bgt).A powdery mildew resistance gene Ml I^(W172)originated from WEW accession I^(W172)(G-797-M)is fine mapped in a 0.048 centimorgan(c M)genetic interval on 7 AL,corresponding to a genomic region spanning 233 kb,1 Mb and 800 kb in Chinese Spring,WEW Zavitan,and T.urartu G1812,respectively.Ml I^(W172)encodes a typical NLR protein NLRI^(W172)and physically locates in an NBS-LRR gene cluster.NLRI^(W172)is subsequently identified as a new allele of Pm60,and its function is validated by EMS mutagenesis and transgenic complementation.Haplotype analysis of the Pm60 alleles reveals diversifications in sequence variation in the locus and presence and absence variations(PAV)in WEW populations.Four common single nucleotide variations(SNV)are detected between the Pm60 alleles from WEW and T.urartu,indicative of speciation divergence between the two different wheat progenitors.The newly identified Pm60 alleles and haplotypes in WEW are anticipated to be valuable for breeding powdery mildew resistance wheat cultivars via marker-assisted selection. | Qiuhong Wu Yongxing Chen Beibei Li Jing Li Panpan Zhang Jingzhong Xie Huaizhi Zhang Guanghao Guo Ping Lu Miaomiao Li Keyu Zhu Wenling Li Tzion Fahima Eviatar Nevo Hongjie Li Lingli Dong Zhiyong Liu | 2022 | Journal of Genetics and Genomics2022,49,8: | 0 |
| 15 | Reactions of Triticum urartu accessions to two races of the wheat yellow rust pathogen显示文摘Triticum urartu(AA,2n=2x=14),a wild grass endemic to the Fertile Crescent(FC),is the progenitor of the A subgenome in common wheat.It belongs to the primary gene pool for wheat improvement.Here,we evaluated the yellow rust(caused by Puccinia striiformis f.sp.tritici,Pst)reactions of 147 T.urartu accessions collected from different parts of the FC.The reactions varied from susceptibility to strong resistance.In general,there were more accessions with stronger resistance to race CYR33 than to CYR 32.In most cases the main form of defense was a moderate resistance characterized by the presence of necrotic/chlorotic lesions with fewer Pst uredinia on the leaves.Forty two accessions displayed resistance to both races.Histological analysis showed that Pst growth was abundant in the compatible interaction but significantly suppressed by the resistant response.Gene silencing mediated by Barley stripe mosaic virus was effective in two T.urartu accessions with different resistance responses,indicating that this method can expedite future functional analysis of resistance genes.Our data suggest that T.urartu is a valuable source of resistance to yellow rust,and represents a model for studying the genetic,genomic and molecular basis underlying interaction between wheat and Pst. | Jibin Xiao Lingli Dong Huaibing Jin Juncheng Zhang Kunpu Zhang Na Liu Xinyun Han Hongyuan Zheng Wenming Zheng Daowen Wang | 2018 | The Crop Journal2018,6,5: | 0 |
| 16 | Identification and validation of stable quantitative trait loci for yield component traits in wheat显示文摘Grain weight and grain number are important yield component traits in wheat and identification of underlying genetic loci is helpful for improving yield.Here,we identified eight stable quantitative trait loci(QTL)for yield component traits,including five loci for thousand grain weight(TGW)and three for grain number per spike(GNS)in a recombinant inbred line population derived from cross Yangxiaomai/Zhongyou 9507 across four environments.Since grain size is a major determinant of grain weight,we also mapped QTL for grain length(GL)and grain width(GW).QTGW.caas-2D,QTGW.caas-3B,QTGW.caas-5A and QTGW.caas-7A.2 for TGW co-located with those for grain size.QTGW.caas-2D also had a consistent genetic position with QGNS.caas-2D,suggesting that the pleiotropic locus is a modulator of trade-off effect between TGW and GNS.Sequencing and linkage mapping showed that TaGL3-5A and WAPO-A1 were candidate genes of QTGW.caas-5A and QTGW.caas-7A.2,respectively.We developed Kompetitive allele specific PCR(KASP)markers linked with the stable QTL for yield component traits and validated their genetic effects in a diverse panel of wheat cultivars from the Huang-Huai River Valley region.KASP-based genotyping analysis further revealed that the superior alleles of all stable QTL for TGW but not GNS were subject to positive selection,indicating that yield improvement in the region largely depends on increased TGW.Comparative analyses with previous studies showed that most of the QTL could be detected in different genetic backgrounds,and QTGW.caas-7A.1 is likely a new QTL.These findings provide not only valuable genetic information for yield improvement but also useful tools for marker-assisted selection. | Lingli Li Yingjie Bian Yan Dong Jie Song Dan Liu Jianqi Zeng Fengju Wang Yong Zhang Zhonghu He Xianchun Xia Yan Zhang Shuanghe Cao | 2023 | The Crop Journal2023,11,2: | 0 |
| 17 | A 36 Mb terminal deletion of chromosome 2BL is responsible for a wheat semi-dwarf mutation显示文摘Reduced plant height is one of the most important traits related to lodging resistance and crop yield. The use of reduced height genes has been one of the main features in breeding modern high-yielding wheat varieties with less lodging. A spontaneous dwarf mutant DD399 was identified in a high yielding, gibberellic acid(GA)-insensitive, lodging-resistant variety Nongda 399(ND399). Significant differences in upper internode lengths between mutant DD399 and wild type ND399 were caused by reduced cell elongation. The plant height of ND399 × DD399 F_(1) hybrids was intermediate between the parents, indicating incomplete dominance or a dose–response effect of a reduced height gene. Plant height showed continuous distribution in the F_(2) population, and segregation distortion was observed among the 2292 F_(2:3) progenies. The reduced height mutation was characterized by Illumina 90 K iSelect SNP genotyping and bulked segregant RNA-Seq(BSR-Seq) analysis of the segregating population. A concentrated cluster of polymorphic SNPs associated with the reduced height phenotype was detected in the distal region of chromosome arm 2 BL. Co-segregation of reduced height phenotype with the clustered markers revealed a 36 Mb terminal deletion of chromosome 2 BL in mutant DD399. | Qiuhong Wu Yongxing Chen Jingzhong Xie Lingli Dong Zhenzhong Wang Ping Lu Rongge Wang Chengguo Yuan Yan Zhang Zhiyong Liu | 2021 | The Crop Journal2021,9,4: | 0 |