Long Jin
Sichuan Agricultural University
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Featured researches published by Long Jin.
Scientific Reports | 2015
Mingzhou Li; Shilin Tian; Carol K L Yeung; Xuehong Meng; Qianzi Tang; Lili Niu; Xun Wang; Long Jin; Jideng Ma; Keren Long; Chaowei Zhou; Yinchuan Cao; Li Zhu; Lin Bai; Guoqing Tang; Yiren Gu; An’an Jiang; Xuewei Li; Ruiqiang Li
Domesticated organisms have experienced strong selective pressures directed at genes or genomic regions controlling traits of biological, agricultural or medical importance. The genome of native and domesticated pigs provide a unique opportunity for tracing the history of domestication and identifying signatures of artificial selection. Here we used whole-genome sequencing to explore the genetic relationships among the European native pig Berkshire and breeds that are distributed worldwide, and to identify genomic footprints left by selection during the domestication of Berkshire. Numerous nonsynonymous SNPs-containing genes fall into olfactory-related categories, which are part of a rapidly evolving superfamily in the mammalian genome. Phylogenetic analyses revealed a deep phylogenetic split between European and Asian pigs rather than between domestic and wild pigs. Admixture analysis exhibited higher portion of Chinese genetic material for the Berkshire pigs, which is consistent with the historical record regarding its origin. Selective sweep analyses revealed strong signatures of selection affecting genomic regions that harbor genes underlying economic traits such as disease resistance, pork yield, fertility, tameness and body length. These discoveries confirmed the history of origin of Berkshire pig by genome-wide analysis and illustrate how domestication has shaped the patterns of genetic variation.
PLOS ONE | 2013
Jideng Ma; Zhi Jiang; Shen He; Yingkai Liu; Lei Chen; Keren Long; Long Jin; An’an Jiang; Li Zhu; Jinyong Wang; Mingzhou Li; Xuewei Li
MicroRNAs (miRNAs) are non-coding small RNA ∼22 nucleotides in length that can regulate the expression of a wide range of coding genes at the post-transcriptional level. Visceral adipose tissues (VATs) and subcutaneous adipose tissues (SATs), the two main fat compartments in mammals, are anatomically, physiologically, metabolically, and clinically distinct. Various studies of adipose tissues have focused mainly on DNA methylation, and mRNA and protein expression, nonetheless little research sheds directly light on the miRNA transcriptome differences between these two distinct adipose tissue types. Here, we present a comprehensive investigation of miRNA transcriptomes across six variant porcine adipose tissues by small RNA-sequencing. We identified 219 known porcine miRNAs, 97 novel miRNA*s, and 124 miRNAs that are conserved to other mammals. A set of universally abundant miRNAs (i.e., miR-148a-3p, miR-143-3p, miR-27b-3p, miR-let-7a-1-5p, and miR-let-7f-5p) across the distinct adipose tissues was found. This set of miRNAs may play important housekeeping roles that are involved in adipogenesis. Clustering analysis indicated significant variations in miRNA expression between the VATs and SATs, and highlighted the role of the greater omentum in responding to potential metabolic risk because of the observed enrichment in this tissue of the immune- and inflammation-related miRNAs, such as the members of miR-17-92 cluster and miR-181 family. Differential expression of the miRNAs between the VATs and SATs, and miRNA target prediction analysis revealed that the VATs-specific enriched miRNAs were associated mainly with immune and inflammation responses. In summary, the differences of miRNA expression between the VATs and SATs revealed some of their intrinsic differences and indicated that the VATs might be closely associated with increased risk of metabolic disorders.
International Journal of Biological Sciences | 2012
Mingzhou Li; Honglong Wu; Tao Wang; Yudong Xia; Long Jin; Anan Jiang; Li Zhu; Lei Chen; Ruiqiang Li; Xuewei Li
It is well established that the metabolic risk factors of obesity and its comorbidities are more attributed to adipose tissue distribution rather than total adipose mass. Since emerging evidence suggests that epigenetic regulation plays an important role in the aetiology of obesity, we conducted a genome-wide methylation analysis on eight different adipose depots of three pig breeds living within comparable environments but displaying distinct fat level using methylated DNA immunoprecipitation sequencing. We aimed to investigate the systematic association between anatomical location-specific DNA methylation status of different adipose depots and obesity-related phenotypes. We show here that compared to subcutaneous adipose tissues which primarily modulate metabolic indicators, visceral adipose tissues and intermuscular adipose tissue, which are the metabolic risk factors of obesity, are primarily associated with impaired inflammatory and immune responses. This study presents epigenetic evidence for functionally relevant methylation differences between different adipose depots.
Scientific Reports | 2017
Yi Luo; Pengjun Wang; Xun Wang; Yuhao Wang; Zhiping Mu; Qingzhi Li; Yuhua Fu; Juan Xiao; Guojun Li; Yao Ma; Yiren Gu; Long Jin; Jideng Ma; Qianzi Tang; Anan Jiang; Xuewei Li; Mingzhou Li
MicroRNAs are a class of small RNAs that are important in post-transcriptional gene regulation in animals and plants. These single-stranded molecules are widely distributed in organisms and influence fundamental biological processes. Interestingly, recent studies have reported that diet-derived plant miRNAs could regulate mammalian gene expression, and these studies have broadened our view of cross-kingdom communication. In the present study, we evaluated miRNA levels in cooked maize-containing chow diets, and found that plant miRNAs were resistant to the harsh cooking conditions to a certain extent. After feeding fresh maize to pigs (7 days), maize-derived miRNAs could be detected in porcine tissues and serum, and the authenticity of these plant miRNAs was confirmed by using oxidization reactions. Furthermore, in vivo and in vitro experiments demonstrated that dietary maize miRNAs could cross the gastrointestinal tract and enter the porcine bloodstream. In the porcine cells, we found that plant miRNAs are very likely to specifically target their endogenous porcine mRNAs and influence gene expression in a fashion similar to that of mammalian miRNAs. Our results indicate that maize-derived miRNAs can cross the gastrointestinal tract and present in pigs, and these exogenous miRNAs have the potential to regulate mammalian gene expression.
PLOS ONE | 2012
Long Jin; Mingwang Zhang; Jideng Ma; Jie Zhang; Chaowei Zhou; Yingkai Liu; Tao Wang; An’an Jiang; Lei Chen; Jinyong Wang; Zhongrong Jiang; Li Zhu; Surong Shuai; Ruiqiang Li; Mingzhou Li; Xuewei Li
Previous studies have indicated two main domestic pig dispersal routes in East Asia: one is from the Mekong region, through the upstream region of the Yangtze River (URYZ) to the middle and upstream regions of the Yellow River, the other is from the middle and downstream regions of the Yangtze River to the downstream region of the Yellow River, and then to northeast China. The URYZ was regarded as a passageway of the former dispersal route; however, this assumption remains to be further investigated. We therefore analyzed the hypervariable segements of mitochondrial DNA from 513 individual pigs mainly from Sichuan and the Tibet highlands and 1,394 publicly available sequences from domestic pigs and wild boars across Asia. From the phylogenetic tree, most of the samples fell into a mixed group that was difficult to distinguish by breed or geography. The total network analysis showed that the URYZ pigs possessed a dominant position in haplogroup A and domestic pigs shared the same core haplotype with the local wild boars, suggesting that pigs in group A were most likely derived from the URYZ pool. In addition, a region-wise network analysis determined that URYZ contains 42 haplotypes of which 22 are unique indicating the high diversity in this region. In conclusion, our findings confirmed that pigs from the URYZ were domesticated in situ.
Genome Research | 2017
Mingzhou Li; Lei Chen; Shilin Tian; Yu Lin; Qianzi Tang; Xuming Zhou; Diyan Li; Carol K L Yeung; Tiandong Che; Long Jin; Yuhua Fu; Jideng Ma; Xun Wang; Anan Jiang; Jing Lan; Qi Pan; Yingkai Liu; Zonggang Luo; Zongyi Guo; Haifeng Liu; Li Zhu; Surong Shuai; Guoqing Tang; Jiugang Zhao; Yanzhi Jiang; Lin Bai; Shunhua Zhang; Miaomiao Mai; Changchun Li; Dawei Wang
Uncovering genetic variation through resequencing is limited by the fact that only sequences with similarity to the reference genome are examined. Reference genomes are often incomplete and cannot represent the full range of genetic diversity as a result of geographical divergence and independent demographic events. To more comprehensively characterize genetic variation of pigs (Sus scrofa), we generated de novo assemblies of nine geographically and phenotypically representative pigs from Eurasia. By comparing them to the reference pig assembly, we uncovered a substantial number of novel SNPs and structural variants, as well as 137.02-Mb sequences harboring 1737 protein-coding genes that were absent in the reference assembly, revealing variants left by selection. Our results illustrate the power of whole-genome de novo sequencing relative to resequencing and provide valuable genetic resources that enable effective use of pigs in both agricultural production and biomedical research.
Mitochondrial DNA | 2016
Mingzhou Li; Long Jin; Jideng Ma; Shilin Tian; Ruiqiang Li; Xuewei Li
Abstract Selection in genomic regions is prevalent in mammals; however, the effects of selection on the mitogenome are not clearly understood. We determined the complete mitochondrial DNA (mtDNA) sequences from six wild Tibetan pigs from the Tibetan plateau and four domestic pig breeds from the lowland of neighboring southwest China. Nucleotide diversity analysis using the sliding window method showed that the nucleotide diversity of wild Tibetan pigs in most regions of the mitogenome was higher than that of domestic pigs. The 12 s ribosomal RNA showed relatively lower nucleotide diversity in Tibetan pigs, suggesting purifying selection of these genes during high-altitude adaptation. More non-synonymous nucleotide substitutions in the ATP6 were found in wild Tibetan pigs, indicating adaptive selection in Tibetan pigs. The results suggested distinct impacts of natural selection and artificial selection upon the mitogenome, especially the mitochondrial signatures of adaptive evolution in wild Tibetan pigs under natural selection.
Gene | 2015
Qianzi Tang; Wenyao Huang; Jiuqiang Guan; Long Jin; Tiandong Che; Yuhua Fu; Yaodong Hu; Shilin Tian; Dawei Wang; Zhi Jiang; Xuewei Li; Mingzhou Li
Domestic goats are distributed in a wide range of habitats and have acclimated to their local environmental conditions. To investigate the gene expression changes of goats that are induced by high altitude stress, we performed RNA-seq on 27 samples from the three hypoxia-sensitive tissues (heart, lung, and skeletal muscle) in three indigenous populations from distinct altitudes (600 m, 2000 m, and 3000 m). We generated 129Gb of high-quality sequencing data (~4Gb per sample) and catalogued the expression profiles of 12,421 annotated hircine genes in each sample. The analysis showed global similarities and differences of high-altitude transcriptomes among populations and tissues as well as revealed that the heart underwent the most high-altitude induced expression changes. We identified numerous differentially expressed genes that exhibited distinct expression patterns, and nonsynonymous single nucleotide variant-containing genes that were highly differentiated between the high- and low-altitude populations. These genes have known or potential roles in hypoxia response and were enriched in functional gene categories potentially responsible for high-altitude stress. Therefore, they are appealing candidates for further investigation of the gene expression and associated regulatory mechanisms related to high-altitude acclimation.
Gene | 2016
Yingying Wei; Xuelian Tao; Huaming Xu; Yan Chen; Li Zhu; Guoqing Tang; Mingzhou Li; Anan Jiang; Surong Shuai; Jideng Ma; Long Jin; Anxiang Wen; Qin Wang; Guangxiang Zhu; Meng Xie; Jiayun Wu; Tao He; Yanzhi Jiang; Xuewei Li
Accumulating evidence has indicated that microRNAs (miRNAs) and endoplasmic reticulum (ER) stress play critical roles in myoblast differentiation. However, the regulation roles of miRNAs and ER stress in myogenic differentiation have not been fully revealed and need to be further studied. Here, we discovered that the expression levels of miR-181a-5p were strongly upregulated during C2C12 cell differentiation. miR-181a-5p overexpression promoted ER stress and differentiation of C2C12 cells, which was accompanied by increasing expression levels of marker genes related to ER stress-mediated apoptosis and myogenic differentiation. Opposite results were observed after inhibition of the miR-181a-5p expression. The gain- and loss-of-function experiments on C2C12 cells showed that miR-181a-5p affected the development of muscle fiber type, but had no significant influence on C2C12 cell proliferation. In the ER-stressed C2C12 cells induced by thapsigargin (Tg), the expression levels of both miR-181a-5p and marker genes related to ER stress and myogenesis were upregulated. In the ER-stressed C2C12 cells and porcine muscle fibroblast (PMF) cells pretreated with Tg, we found that miR-181a-5p targeted glucose-regulated protein, 78kDa/binding immunoglobulin protein (GRP78/BIP), and influenced cell apoptosis. In conclusion, these results indicate that miR-181a-5p and ER stress have positive synergistic effects on myogenic differentiation by increasing the expression levels of myogenic differentiation key genes and activating the ER stress-mediated apoptosis signaling pathway.
Scientific Reports | 2017
Jideng Ma; Chengdong Wang; Keren Long; Hemin Zhang; Jinwei Zhang; Long Jin; Qianzi Tang; Anan Jiang; Xun Wang; Shilin Tian; Li Chen; Dafang He; Desheng Li; Shan Huang; Zhi Jiang; Mingzhou Li
The physiological role of miRNAs is widely understood to include fine-tuning the post-transcriptional regulation of a wide array of biological processes. Extensive studies have indicated that exosomal miRNAs in the bodily fluids of various organisms can be transferred between living cells for the delivery of gene silencing signals. Here, we illustrated the expression characteristics of exosomal miRNAs in giant panda breast milk during distinct lactation periods and highlighted the enrichment of immune- and development-related endogenous miRNAs in colostral and mature giant panda milk. These miRNAs are stable, even under certain harsh conditions, via the protection of extracellular vesicles. These findings indicate that breast milk may facilitate the dietary intake of maternal miRNAs by infants for the regulation of postnatal development. We also detected exogenous plant miRNAs from the primary food source of the giant panda (bamboo) in the exosomes of giant panda breast milk that were associated with regulatory roles in basic metabolism and neuron development. This result suggested that dietary plant miRNAs are absorbed by host cells and subsequently secreted into bodily fluids as potential cross-kingdom regulators. In conclusion, exosomal miRNAs in giant panda breast milk may be crucial maternal regulators for the development of intrinsic ‘slink’ newborn cubs.