plant genetics 中文意思是什麼

plant genetics 解釋
植物遺傳學
  • plant : n 1 植物,草木 (opp animal); 草本;〈商用語〉樹秧,苗木。2 莊稼,作物,收獲;(植物的)生育。3 ...
  • genetics : n. 遺傳學。
  1. For example, in genetics, if a heterozygous plant is selfed, the probability of finding the double recessive is 1 in 4, or 25 %

    例如在遺傳學上,一個雜合的植物體為自花受精,發現雙隱性性狀的概率為1 / 4或25 % 。
  2. Ssr markers and their application in plant genetics

    標記技術及其在植物遺傳學中的應用
  3. The progress of fluorescence qpcr and its application in plant genetics and breeding

    技術研究進展及其在植物遺傳育種中的應用
  4. These will lay a foundation for students to learn plant taxonomy, plant physiology, plant ecology, plant resources, genetics, cytology, molecular biology, etc. in the future

    這將為學生以後學習植物分類學、植物生理學、植物生態學、植物資源學、遺傳學、細胞學、分子生物學等打下基礎。
  5. The interactive catalogue covers a wide spectrum of fao subjects including agriculture, genetics, plant production and protection, animal production and health, forestry, fisheries, land and water development, statistics, trade, biotechnology and food and nutrition

    相互作用的目錄覆蓋糧農組織廣泛的業務領域,如農業、遺傳、植物生產和保護、家畜生產和衛生、林業、漁業、水土開發、統計、貿易、生物技術、食品和營養。
  6. Al toxicity is a major limited factor for crop production and quality in acid soil, and it has become the focus of ongoing research in the area of plant stress physiology and genetics

    鋁毒是酸性土壤影響作物生長的主要原因,已成為植物脅迫生理學與遺傳學的重要研究內容。
  7. Southern cross university has a dynamic research profile, participating in seven national co - operative research centres, leading the way in disciplines as diverse as plant genetics and cetacean research

    南十字星大學的研究實力雄厚,參與了全國七個合作研究中心,在植物遺傳學和鯨類研究科目上引領著發展潮流。
  8. Cold spring harbor laboratory has research programs focusing on cancer, neurobiology, plant genetics, genomics and bioinformatics, and a broad educational mission

    冷泉港實驗室有專注在癌癥,神經生物學,植物基因學,基因體和生物資訊,和廣泛教育任務的研究計劃。
  9. Without question, 《 molecular plant breeding 》 is important magazine in bioscience field, it published research report, novel technology and invited review of botany, genetics, breeding, biotechnology, biochemistry and molecular biology in annually, 《 molecular plant breeding 》 has became important platform of breeding and practice

    毫無疑問,我們已成為生物科學領域的一份重要期刊,每年刊登植物學、遺傳學、育種學、生物技術及生化與分子生物學等領域的大量的研究報告、技術創新和專題評述,名副其實地成為廣大遺傳育種家展示遺傳育種理論與實踐的重要平臺。
  10. Issr and its application in plant breeding and genetics

    分子標記及其在植物遺傳育種中的應用
  11. Examples would include professors leaving the universities of wisconsin, iowa state and purdue and forming companies in the new bio - genetics areas, performing gene splitting, and producing new products in animal and plant life, and pharmaceuticals as well

    成功的例子包括離開威斯康星大學、愛荷華州立大學和普渡大學的教授們成立了生物技術公司,進行基因分離,新動植物產品的生產,以及制藥等。
  12. Provides a range of notes including landmarks, basic terms and rules, chromosomes and genes, population genetics, viral and bacterial genetics, and plant genetics

    -含基因知識基因是非說基因應用基因與倫理人類基因組計劃等。
  13. Some recent developments in research and education are discussed as a means of pointing out how established practices and principles need to be continually re - examined in light of changing plant genetics and higher yield potentials

    討論了研究和教育的近期發展,指出怎樣建立按照變化的植物遺傳性狀和更高的產量潛勢,需要不斷重新檢驗措施和理論的方法。
  14. Proteome techniques have widely been applied to the fields of plant genetics, plant development, and plant physiology and ecology to investigate plant genetic diversity, plant development such as seed maturation and germination processes, differentiation of plant tissue and organ, separation and functional identification of novel component of various organells, mechanisms of plant adapted to abiotic or biotic stresses including high temperature, low temperature, high salt, drought, and pathogens and insects, and interaction of plant with microbe

    摘要蛋白質組技術已廣泛應用於植物遺傳、發育和生理生態等諸多生物學領域,主要研究植物的遺傳多樣性、植物發育(如種子成熟與發芽過程) 、組織器官的分化過程、不同亞細胞結構的新蛋白組分的發現及其功能鑒定、植物對非生物逆境(包括高溫、低溫、高鹽和乾旱等)和生物逆境(病蟲害)的適應機制和植物與微生物(根瘤共生體)相互作用機制。
  15. This so - called " biotechnology revolution " has spawned new industries focused on manipulating human, animal, plant, and microbial genetics to create heretofore unattainable products and services, primarily in the medical area

    所謂的"生物工程革命"已經大量產生了新興工業,這些工業通過控制人類、動植物以及微生物的遺傳現象來提供前所未有的產品和服務,主要用於醫藥領域。
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