Publications by authors named "Xiyin Wang"

Polyploidization often occurs more than once along an evolutionary lineage to form extant plants. Major core eudicot plants share a whole-genome triplication (ceWGT), through which thousands of simultaneously duplicated genes are retained in extant genomes, providing a valuable starting line to check the difference in their evolutionary paces. Here, by characterizing the synonymous nucleotide substitutions (Ks) between these duplicates from 28 representative plants from 21 families, we checked the various evolutionary rates among plants among plants subjected to different rounds of extra polyploidization events.

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In this paper, the first water-to-ice (W2I) wireless optical communication (WOC) system model is proposed and verified by laboratory and field experiments. The Monte Carlo (MC) approach is used to simulate the optical characteristics of ice and water, resulting in the channel impulse response and received optical power (ROP) distribution. The simulation results demonstrate that the substantial absorption and scattering of the ice and ice-water interface significantly affect the cross-medium communication.

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Dissipative particle dynamics (DPD) simulations is used to study the effect of and H-shaped ()() block copolymers on the interfacial properties of ternary blends. Our simulations show the following: (i) The capacity of block copolymers to diminish interfacial tension is closely linked to their compositions. With identical molecular weights and concentrations, H-shaped block copolymers outperform triblock copolymers in mitigating interfacial tension.

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  • This study provides the first high-quality genome sequence for East Asian grape species, revealing key traits that can enhance grape breeding efforts.
  • The research identifies genetic differences among grape species, including cold resistance and disease resistance traits, contributing to the understanding of biological diversity and innovation.
  • Analysis also uncovers a possible sex-determination region in the genome, offering insights into the genetic factors that influence grape development and breeding strategies.
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  • Zygnematophyceae, a group of filamentous algae, are closely related to land plants, and this study sequenced four of their genomes, creating detailed chromosome-scale assemblies for three strains of Zygnema circumcarinatum.
  • The research identified key traits in their common ancestor with land plants that may have enabled plants to adapt to life on land, including expanded genes for signaling, environmental responses, and multicellular growth.
  • Additionally, the study revealed shared enzymes for cell wall synthesis between Zygnematophyceae and land plants, suggesting a genetic framework that integrates environmental responses with developmental growth over 600 million years of evolution.
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As different taxa evolve, gene order often changes slowly enough that chromosomal 'blocks' with conserved gene orders (synteny) are discernible. The MCScanX toolkit ( https://github.com/wyp1125/MCScanX ) was published in 2012 as freely available software for the detection of such 'colinear blocks' and subsequent synteny and evolutionary analyses based on genome-wide gene location and protein sequence information.

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Lamiales is an order of core eudicots with abundant diversity, and many Lamiales plants have important medicinal and ornamental values. Here, we comparatively reanalyzed 11 Lamiales species with well-assembled genome sequences and found evidence that Lamiales plants, in addition to a hexaploidization or whole-genome triplication (WGT) shared by core eudicots, experienced further polyploidization events, establishing new groups in the order. Notably, we identified a whole-genome duplication (WGD) occurred just before the split of Scrophulariaceae from the other Lamiales families, such as Acanthaceae, Bignoniaceae, and Lamiaceae, suggesting its likely being the causal reason for the establishment and fast divergence of these families.

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Alternative splicing (AS), an important post-transcriptional regulation mechanism in eukaryotes, can significantly increase transcript diversity and contribute to gene expression regulation and many other complicated developmental processes. While plant gene AS events are well described, few studies have investigated the comprehensive regulation machinery of plant AS. Here, we use multi-omics to analyse peanut AS events.

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In this paper, we propose an optical module, consisting of an Erbium/Ytterbium co-doped fiber amplifier (EYDFA) and a cascaded periodically poled lithium niobate (cascaded-PPLN), to bridge the conventional telecommunication and the emerging underwater wireless optical communication (UWOC). Compared with using two discrete crystals to achieve the third harmonic generation (THG), using a cascaded crystal simplifies the optical system. Under a fundamental power of 5 W at 1550 nm, we have generated an optical power of 6.

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Introduction: Endometriosis, a benign inflammatory disease whereby endometrial-like tissue grows outside the uterus, is a risk factor for endometriosis-associated ovarian cancers. In particular, ovarian endometriomas, cystic lesions of deeply invasive endometriosis, are considered the precursor lesion for ovarian clear-cell carcinoma (OCCC).

Methods: To explore this transcriptomic landscape, OCCC from women with pathology-proven concurrent endometriosis ( = 4) were compared to benign endometriomas ( = 4) by bulk RNA and small-RNA sequencing.

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Peanut (Arachis) is a key oil and protein crop worldwide with large genome. The genomes of diploid and tetraploid peanuts have been sequenced, which were compared to decipher their genome structures, evolutionary, and life secrets. Genome sequencing efforts showed that different cultivars, although Bt homeologs being more privileged in gene retention and gene expression.

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  • Triple negative breast cancer (TNBC) is a highly aggressive form of breast cancer, making it essential to understand its biology and develop new treatments.
  • Estrogen receptor beta (ERβ), found in about 20% of TNBC tumors, acts as a tumor suppressor and is linked to better patient outcomes by inhibiting growth-promoting genes.
  • Research using modified TNBC cells shows that when ERβ can't bind DNA, it loses its ability to regulate key genes and suppress cancer cell growth, highlighting how ERβ's DNA interaction is crucial for its cancer-fighting properties.
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The filamentous and unicellular algae of the class Zygnematophyceae are the closest algal relatives of land plants. Inferring the properties of the last common ancestor shared by these algae and land plants allows us to identify decisive traits that enabled the conquest of land by plants. We sequenced four genomes of filamentous Zygnematophyceae (three strains of and one strain of ) and generated chromosome-scale assemblies for all strains of the emerging model system .

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  • The rubber tree (Hevea brasiliensis) is the primary source of natural rubber and has seen a sixfold increase in latex yield over the past century through traditional breeding methods.
  • A comprehensive genome analysis revealed genetic signatures linked to rubber yield improvement and indicated that H. brasiliensis may share species status with six related rubber tree species.
  • The study identified 155 significant traits related to latex yield and pinpointed key genes involved in sugar metabolism and ethylene signaling, offering insights for future breeding and the enhancement of rubber production.
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Introduction: Legume crops are an important source of protein and oil for human health and in fixing atmospheric N for soil enrichment. With an objective to accelerate much-needed genetic analyses and breeding applications, draft genome assemblies were generated in several legume crops; many of them are not high quality because they are mainly based on short reads. However, the superior quality of genome assembly is crucial for a detailed understanding of genomic architecture, genome evolution, and crop improvement.

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Evidence of whole-genome duplications (WGDs) and subsequent karyotype changes has been detected in most major lineages of living organisms on Earth. To clarify the complex resulting multi-layered patterns of gene collinearity in genome analyses, there is a need for convenient and accurate toolkits. To meet this need, we developed WGDI (Whole-Genome Duplication Integrated analysis), a Python-based command-line tool that facilitates comprehensive analysis of recursive polyploidization events and cross-species genome alignments.

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Celery ( L.), a plant from Apiaceae, is one of the most important vegetables and is grown worldwide. Carotenoids can capture light energy and transfer it to chlorophyll, which plays a central role in photosynthesis.

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A hallmark of adaptive evolution is innovation in gene function, which is associated with the development of distinct roles for genes during plant evolution; however, assessing functional innovation over long periods of time is not trivial. Tartary buckwheat (Fagopyrum tataricum) originated in the Himalayan region and has been exposed to intense UV-B radiation for a long time, making it an ideal species for studying novel UV-B response mechanisms in plants. Here, we developed a workflow to obtain a co-functional network of UV-B responses using data from more than 10,000 samples in more than 80 projects with multi-species and multi-omics data.

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  • The research focuses on the Flueck tree from the Burseraceae family, which produces frankincense, by examining its genome, which is about 667.8 Mb and contains 18,564 high-confidence genes.
  • The study found a significant gene assembly with over 97% completeness, as well as evidence of recent gene duplications and an ancient shared hexaploidy with other eudicots.
  • The findings also highlighted the activation of specific biological pathways related to wounding, resulting in the production of boswellic acid, a crucial marker for identifying frankincense, and laid out a basis for future studies on the genetics of resin-producing plants.
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The genomes of Gramineae plants have been preferentially sequenced owing to their economic value. These genomes are often quite complex, for example harboring many duplicated genes, and are the main source of genetic innovation and often the result of recurrent polyploidization. Deciphering these complex genome structures and linking duplicated genes to specific polyploidization events are important for understanding the biology and evolution of plants.

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Pectin methylesterase (PME) plays a vital role in the growth and development of plants. Their genes can be classified into two types, with Type-1 having an extra domain, PMEI. PME genes in foxtail millet (Setaria italica L.

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Triple Negative Breast Cancer (TNBC) accounts for 15-20% of all breast cancer cases, yet is responsible for a disproportionately high percentage of breast cancer mortalities. Thus, there is an urgent need to identify novel biomarkers and therapeutic targets based on the molecular events driving TNBC pathobiology. Estrogen receptor beta (ERβ) is known to elicit anti-cancer effects in TNBC, however its mechanisms of action remain elusive.

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