2018年硕士研究生招生测试大纲及样题Biology-exam-program-Nanobiotech.pdf
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- 深圳北理莫斯科大学
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1、PROGRAM OF ENTRANCE EXAMS IN “GENERAL AND PHYSICOCHEMICAL BIOLOGY” FOR MASTERS DEGREE IN NANOBIOTECHNOLOGY Mycology, algology and higher plants Algae: general description. Cell and thallus structure. Major types of thallus organization in algae. Algal pigments, their role in systematics and adaptati
2、on to environment. Reproduction and lifecycles of algae. Brief description of major divisions of algae. Distribution of algae and their role in environment. Structure of algae from different ecological groups. Role of algae in nature and their practical application. Fungi and fungaceous organisms. G
3、eneral description. Fungi and fungaceous organisms: similarity and major differences. Mycelial cell structure and feeding. Reproduction and lifecycle. Brief description of major taxa. Distribution and role in environment. Role of fungi in cycle of matter and economy. Lichens. Thallus structure. Syst
4、ematic position of algae and symbiotic fungi in lichens. Relationships between lichen components. Reproduction of lichens. Role of lichens in nature and their practical application. Myxomycetes. General description. Major divisions; their brief description. General description of higher plants. Life
5、cycle of higher plants. Asexual and sexual reproduction. Types of sexual reproduction process in higher plants and their evolutionary relationships. General body plan in higher plants. Leaf structural components and descriptive morphology. Morphology of shoots and shoot systems. Evolutionary origin
6、of root. Morphology of roots and root systems. General description of bryophytes. Divisions of Marchantiophyta, Anthocerotophyta and mosses. Spermaphyta. General description. Gymnosperms. Comparative description of major groups (coniferous, gnetaceous, cycades and Ginkgoaceae). General description o
7、f angiosperms (flowering plants). Flower. Structure of male and female gametophytes. Dicots vs monocots. Zoology System Eukaryota and major groups of Protozoa. Modern views on origin of eukaryotic cell: role of Archaea and Eubacteria, symbiotic origin of organelles, diversity of plastids; flagellar
8、apparatus. Six superkingdoms of Eukaryotes, general description. Lower multicellular organisms. Superphylum Sponges. Modern classification; general description and structure of Bilateria: supertypes Trochozoa, Lophophora, Ecdysozoa and Deuterostomia. System of phylum Chordata, its organization. Syst
9、em of subphylum Tunicata, general description. Ostracoderms as evolutionary innovation, formation of bone tissue. Morphology of Gnathostomata. Morphofunctional and physiological adaptations to aquatic habitat (based on class of bony fishes). Amphibians as first class of terrestrial vertebrates. Tran
10、sformation of locomotor and breathing systems, prey catching, blood circulation, water and salt metabolism and sensory organs, due to aerial habitat and gravitation. Reproduction. Anamnia and Anamniota. Morphobiology of reptiles. Morphobiology of birds. Homeothermia. Morphobiology of mammals. Mechan
11、isms of thermoregulation; breathing, digestive and excretory systems and blood circulation. Reproduction. Anthropology Origin of man. Systematics and description of Primates. Archeological evidence on early hominids; their description and diversity. Early humans. Archanthropos as first human. Cultur
12、e of early humans. Homo heidelbergensis: history of studies, description and distribution. Neanderthals; hypotheses about their extinction. Origin of modern humans: location and timing. Cromanion as the oldest European Homo sapiens. Role of isolation, crossbreeding, adaptation, genetic drift and sex
13、ual selection in human evolution and formation of modern anthropological variations. Ethnic anthropology. Cytology Cell theory and its provisions. Notion of cell. Methods of cell biology. Methods of microscopy (light, fluorescent, phase-contrast, electronic and video-microscopy). Immunocytochemical
14、and cytochemical staining. Radiography. Molecular hybridization. Cell and tissue culture. Structure and function of cell nucleus. Structure of chromatin. Structure of chromosomes. Cell cycle and its phases; chromosome cycle. Levels of chromatin and chromosome packaging. Euchromatin and heterochromat
15、in. Role of histones and non-histone proteins in chromatin packaging. Histone modifications. Karyotype. Chromosome structure. Types of differential staining of chromosomes. Nuclear protein matrix. Nuclear subdomains. Nucleolus and nucleolar organizer; its components, ultrastructure, proteins and rol
16、e in ribosomal RNA synthesis and formation of ribosomal subunits. Cajal bodies, (speckles) and PML. Chromosome territories in interphase nucleus. Nuclear membrane. Nuclear-cytoplasmic transport. Cell membrane components. Structure and properties of biological membranes. Plasmatic membranes. Chemical
17、 composition, structure and functions. Transport of low-molecular and high-molecular compounds. Endocytosis. Transcytosis. Cellular interactions. Cell adhesion. Cell adhesion proteins. Specialized cell contacts. Protein synthesis and topogenesis. Structure of ribosomes. Polysomes. Structure of granu
18、lar ER. Synthesis of secretory, membrane and lysosome proteins in granular ER. Signal sequences. SRP particles. Mechanism of co-translational protein transport to ER membranes and cisterns. Protein modification, folding and targeting. Golgi apparatus. Organization of Golgi apparatus. Protein modific
19、ation and targeting. Role in glycosaminoglycan synthesis. Proteoglycans. Vacuolar pathways and mechanisms of vesicle targeting and fusion with membrane components. Anterograde and retrograde transport. Exocytosis. Smooth ER. Morphology and role in synthesis of lipids, steroid hormones, glycogen, cal
20、cium storage and detoxification (role of cytochrome -450). Cellular digestive system. Lysosomes. Classification, Patterns of formation. Mechanism of autophagosome and autolysosome formation. Cellular power supply. Mitochondria. Chemical composition, structure and functions. Mitochondrial biogenesis.
21、 Origin of mitochondria. Photosynthesis. Chloroplast structure and functions. Cytoskeleton components. Actin microfilaments. Actin monomers and isoforms; polymerization in vitro. Structure of actin filament. Localization and functions of actin filaments. Actin filament-associated proteins. Myosins:
22、structure, functions, localization and role in muscle and non-muscle mobility. Intermediate filaments: classification, properties, organization and localization. Structure and function of microtubules, centrosome, centrioles, basal bodies and axonem. Tubulin polymerization. MAPs. Families of kinesin
23、s and dyneins. Centriolar cycle. Two ways of centriole formation. Non-centrosomal microtubule-organizing centers. Cilia and flagella. Mitosis. Phases of mitosis. Changes in chromosome structure; role of condensines and cohesins. Mitotic spindle; its structure, composition, organization and formation
24、. Kinetochore; its structure and protein composition. Mechanism of chromosome movement. Anaphase A and anaphase B. Telophase. Cytokinesis. Pathology of mitosis. Evolution of mitosis. Meiosis. Formation of sex cells. Phases of meiosis. Prophase I of meiosis. Synaptonemal comples. Mechanism of crossin
25、g-over. Chiasms. Lampbrush chromosomes. First meiotic division, reduction of allele number. Second meiotic division, separation of homologous chromatids reduction of chromosome number. Maturation of sex cells. Cell cycle regulation. Phases of cell cycle. Models and methods for study of cell cycle. G
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