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MicroRNAs (miRNAs) are small regulatory RNAs that play a crucial role in posttranscriptional gene regulation. Over two thousand miRNAs have been identified in humans, and many of them are conserved in other species. miRNAs are implicated in fundamental cellular functions, including development and disease. In the last decade, there has been an overwhelming amount of data contributing to the understanding of miRNA biogenesis and their target genes. Moreover, a significant amount of work has been carried out in developing miRNA biomarkers and therapeutics for various disease conditions. RNA-based markers and therapeutics have been proven to have a clinical impact, and many of these miRNA-based therapies are at various stages of human clinical trials and clinical applications. Notably, miRNAs are also found in exosomes, and are considered to impart intercellular communication and function via several different modalities, including tunneling nanotubes. In spite of our understanding of miRNA biology and function, there are many challenges in effectively using miRNAs as biomarkers and therapeutic agents in clinical applications. In this Special Issue, we are inviting reviews, perspectives, and original research articles to address some of these challenges. Topics will include, but are not limited to, miRNA biogenesis, clinical applications, extracellular function, biomarkers, miRNA immune regulation, signaling pathways, and preclinical models.
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Title in English: Mendel Lectures 2002-2022 This jubilee publication provides a representative overview of twenty years of the world-renowned lecture series and introduces all the speakers - more than 130 scientists, including 15 Nobel Prize laureates. The book details the history of the Mendel Lectures and the significant activity of scientists associated with the so-called "Brno Initiative": Kim A. Nasmyth, Anna Nasmyth, Max Perutz, Paul Nurse, Tim Hunt, James Watson, Eric Wieschaus, Peter Swetly, Jiřina Relichová, Jan Motlík, Emil Paleček, Eva Jiřičná, and Gustav Ammerer - the founders of the series, thanks to whom the lectures regularly take place on the premises, moreover, where the founder of genetics worked 200 years ago.
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Since the discovery of the DNA structure researchers have been highly interested in the molecular basis of genome inheritance. This book covers a wide range of aspects and issues related to the field of DNA replication. The association between genome replication, repair and recombination is also addressed, as well as summaries of recent work of the replication cycles of prokaryotic and eukaryotic viruses. The reader will gain an overview of our current understanding of DNA replication and related cellular processes, and useful resources for further reading.
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Genetics. --- Genomics. --- Medical genetics.
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Genetics --- Genetic Phenomena. --- Genetics.
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This diverse collection of research articles is united by the enormous power of modern molecular genetics. Every author accomplished two objectives: (1) making the field and the research described accessible to a large audience and (2) explaining fully the genetic tools and approaches that were used in the research. One fact stands out - the importance of a genetic approach to addressing a problem. I encourage you to read several chapters. You will feel the excitement of the scientists, and you will learn about an area of research with which you may not be familiar. Perhaps most importantly, you will understand the genetic approaches; and you will appreciate their importance to the research.
Molecular genetics. --- Genetics --- Molecular biology --- Medical genetics
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Plant genomics aims to sequence, characterize, and study the genetic compositions, structures, organizations, functions, and interactions/networks of an entire plant genome. Its development and advances are tightly interconnected with proteomics, metabolomics, metagenomics, transgenomics, genomic selection, bioinformatics, epigenomics, phenomics, system biology, modern instrumentation, and robotics sciences. Plant genomics has significantly advanced over the past three decades in the land of inexpensive, high-throughput sequencing technologies and fully sequenced over 100 plant genomes. These advances have broad implications in every aspect of plant biology and breeding, powered with novel genomic selection and manipulation tools while generating many grand challenges and tasks ahead. This Plant genomics provides some updated discussions on current advances, challenges, and future perspectives of plant genome studies and applications.
Plant genetics. --- Plants --- Genetics --- Medical genetics
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Population genetics is the basis of evolutionary studies, and has been widely used in several researches. This recent field of science has important applications for the management of populations (natural and domesticated), as well as for evolutionary studies of the various factors that affect gene frequencies over time and spatial distribution.In this work, presented in three sections (Population and Quantitative Genetics, Genetic Diversity in Crop Management, Population Genetics for Conservation Studies), the reader will find cutting-edge information in carefully selected and revised works.This book is intended for all researchers, academics, and students who are interested in the intriguing area of population genetics.
Population genetics. --- Genetics --- Heredity --- Medical genetics
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This Special Issue covers current and relevant information about the applied anatomy of domestic animals, new companion animals and wild animals. It includes recent research and review articles on diverse topics based on the use of different diagnostic imaging techniques and more classic anatomical methods, providing a deeper insight into the healthy anatomy of diverse structures, which is crucial in high-quality medicine.
Animal genetics. --- Animal genetics --- Statistical methods. --- Genetics
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