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朱作言文集(全二冊)

作者:汪亞平等
出版社:科學出版社出版時間:2019-03-01
開本: 27cm 頁數(shù): 2冊(20,1404
中 圖 價:¥484.0(5.5折) 定價  ¥880.0 登錄后可看到會員價
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朱作言文集(全二冊) 版權信息

朱作言文集(全二冊) 本書特色

  朱作言先生研究團隊于20 世紀80 年代初期首創(chuàng)農業(yè)動物基因工程研究,在1985 年發(fā)表了世界**篇魚類基因轉移研究文章,享有世界聲譽!吨熳餮晕募ㄈ2冊)》從該團隊發(fā)表的200 多篇文章中,選取了100 篇編輯成冊,分上卷和下卷出版!吨熳餮晕募ㄈ2冊)》的主線是基于轉基因魚理論模型的建立、轉基因鯉研制及品系選育、轉植基因功能,以及轉基因魚食用和生態(tài)安全研究。內容共包括7 個部分:**部分和第二部分建立了轉基因魚研究的完整理論模型,并以此為基礎成功研制轉“全魚”生長激素基因黃河鯉家系,系統(tǒng)揭示了轉植基因的整合、表達和遺傳規(guī)律。第三部分從攝食、代謝、生長、免疫和游泳行為等方面,詳細描述了轉基因黃河鯉與野生黃河鯉的生物學特性。第四部分系統(tǒng)評估了轉基因魚在實驗室及模擬自然環(huán)境條件下的生態(tài)學效應。第五部分系統(tǒng)研究了魚類生長激素對性腺發(fā)育的調控作用、育性控制技術及研制不育轉基因魚的策略。第六部分包括草魚全基因組草圖繪制、草魚病原病毒分子生物學和抗病草魚基因工程育種的基礎研究。第七部分主要以斑馬魚為模型,對魚類基因工程的生物學原理、技術拓展和應用進行了全方位的探討。為了便于廣大讀者閱讀,英文文章后面均附有中文摘要。

朱作言文集(全二冊) 內容簡介

朱作言先生主要從事魚類遺傳發(fā)育生物學及生物技術方面的研究。本書為其多年著作的合集,分別從魚類基因轉移模型建立、魚類外源基因的整合與表達、外源基因表達的生理功能、轉基因黃河鯉的生態(tài)安全研究、魚類生殖調控與轉基因魚的育性控制研究、抗病草魚基因工程技術育種研究、魚類基因轉移育種技術展望這幾個部分進行整理。

朱作言文集(全二冊) 目錄

目 錄上 卷**部分 魚類基因轉移模型建立Novel Gene Transfer into the Fertilized Eggs of Goldfish (Carassius auratus L 1758) 3人生長激素基因在泥鰍受精卵顯微注射轉移后的生物學效應 8Introduction of Novel Genes into Fish 11轉基因魚模型的建立 23第二部分 外源基因的整合與表達The β-Actin Gene of Carp (Ctenopharyngodon idella) 35Isolation and Characterization of β-Actin Gene of Carp (Cyprinus carpio) 37Primary-Structural and Evolutionary Analyses of the Growth-Hormone Gene from GrassCarp (Ctenopharyngodon idellus) 54Time Course of Foreign Gene Integration and Expression in Transgenic Fish Embryos 64Transgenes in F4 pMThGH-Transgenic Common Carp (Cyprinus carpio L ) are HighlyPolymorphic 73Sequences of Transgene Insertion Sites in Transgenic F4 Common Carp 84Characterization of Transgene Integration Pattern in F4 hGH-Transgenic Common Carp(Cyprinus carpio L ) 87Integration of Double-Fluorescence Expression Vectors into Zebrafish Genome for theSelection of Site-Directed Knockout/Knockin 101Site-Directed Gene Integration in Transgenic Zebrafish Mediated by Cre RecombinaseUsing A Combination of Mutant Lox Sites 114Inhibition of No Tail (ntl) Gene Expression in Zebrafish by External Guide Sequence(EGS) Technique 128Non-Homologous End Joining Plays A Key Role in Transgene Concatemer Formation inTransgenic Zebrafish Embryos 137Integration Mechanisms of Transgenes and Population Fitness of GH Transgenic Fish 157Gene Transfer and Mutagenesis Mediated by Sleeping Beauty Transposon in Nile Tilapia(Oreochromis niloticus) 172Targeted Expression in Zebrafish Primordial Germ Cells by Cre/LoxP and Gal4/UASSystems 189Inheritable and Precise Large Genomic Deletions of Non-Coding RNA Genes inZebrafish Using TALENs 211Efficient Ligase 3-Dependent Microhomology-Mediated End Joining Repair of DNADouble-Strand Breaks in Zebrafish Embryos 225第三部分 外源基因表達的生理功能Hormonal Replacement Therapy in Fish: Human Growth Hormone Gene Function inHypophysectomized Carp 249Food Consumption and Energy Budget in MThGH-Transgenic F2 Red Carp (Cyprinuscarpio L red var ) 263Whole-Body Amino Acid Pattern of F4 Human Growth Hormone Gene-Transgenic RedCommon Carp (Cyprinus carpio) Fed Diets with Different Protein Levels 269Transgene for Growth Hormone in Common Carp (Cyprinus carpio L ) Promotes ThymusDevelopment 276Effects of the “All-Fish” Growth Hormone Transgene Expression on Non-SpecificImmune Functions of Common Carp, Cyprinus carpio L 287Rapid Growth Cost in “All-Fish” Growth Hormone Gene Transgenic Carp: ReducedCritical Swimming Speed 298Growth and Energy Budget of F2 ‘All-Fish’ Growth Hormone Gene Transgenic CommonCarp 307Fast-Growing Transgenic Common Carp Mounting Compensatory Growth 321Metabolism Traits of ‘All-Fish’ Growth Hormone Transgenic Common Carp (Cyprinuscarpio L ) 334Enzyme-Linked Immunosorbent Assay of Changes in Serum Levels of GrowthHormone (cGH) in Common Carps (Cyprinus carpio) 350The Hematological Response to Exhaustive Exercise in ‘All-Fish’ GrowthHormone Transgenic Common Carp (Cyprinus carpio L ) 362Acute and Chronic Un-Ionized Ammonia Toxicity to ‘All-Fish’ Growth HormoneTransgenic Common Carp (Cyprinus carpio L ) 376Effects of Growth Hormone (GH) Transgene and Nutrition on Growth and BoneDevelopment in Common Carp 386Increased Food Intake in Growth Hormone-Transgenic Common Carp (Cyprinus carpio L )May Be Mediated by Upregulating Agouti-Related Protein (AgRP) 401第四部分 轉基因黃河鯉的生態(tài)安全研究Progress in the Evaluation of Transgenic Fish for Possible Ecological Risk and ItsContainment Strategies 423Reduced Swimming Abilities in Fast-Growing Transgenic Common Carp Cyprinus carpioAssociated with Their Morphological Variations 433Elevated Ability to Compete for Limited Food Resources by ‘All-Fish’ GrowthHormone Transgenic Common Carp Cyprinus carpio 446Increased Mortality of Growth-Enhanced Transgenic Common Carp (Cyprinus carpio L )Under Short-Term Predation Risk 462Behavioral Alterations in GH Transgenic Common Carp May Explain EnhancedCompetitive Feeding Ability 471Risk-Taking Behaviour May Explain High Predation Mortality of GH-TransgenicCommon Carp Cyprinus carpio 489Transgenic Common Carp Do Not Have the Ability to Expand Populations 506Rapid Growth Increases Intrinsic Predation Risk in Genetically Modified Cyprinus carpio:Implications for Environmental Risk 518第五部分 魚類生殖調控與轉基因魚的育性控制研究A Perspective on Fish Gonad Manipulation for Biotechnical Applications 535Cloning and Expression Analysis in Mature Individuals of Two Chicken Type-II GnRH(cGnRH-II) Genes in Common Carp (Cyprinus carpio) 546Identification and Characterization of A Novel Splice Variant of Gonadotropin αSubunit in the Common Carp Cyprinus carpio 560Antisense for Gonadotropin-Releasing Hormone Reduces Gonadotropin
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