genetic progress 中文意思是什麼

genetic progress 解釋
遺傳的進展
  • genetic : adj. 1. 遺傳(學)上的。2. 發生的,發展的;創始的。adv. -ically
  • progress : n 1 前進,進行。2 上進,進步;進度;進展,增長,發展;經過;【生物學】發育,進化。3 〈古語〉(特...
  1. Progress in the research of mutation of genetic intron and retinitis pigmentosa

    基因內含子突變與視網膜色素變性的研究進展
  2. Recent studies show that dna transfer and recombination technology provides great potential for genetic improvement of zoysiagrasses ; molecular linkage maps were constructed from zoysia japonica and its hybrids with zoysia matrella ; the researches on gene cloning and gene resource are in progress

    最近的研究表明,基因轉移與重組技術在結縷草遺傳改良中具有巨大應用潛力;結縷草遺傳連鎖圖譜構建取得重要進展;基因克隆和基因資源研究正在展開。
  3. The idcbp has also funded postgraduate research in china to develop breeding coefficients, which will further enhance genetic progress

    中加奶牛項目還資助在中國開展的研究生研究項目以開發育種系數,以進一步促進遺傳進步。
  4. Research progress of molecular biology and genetic engineering vaccine of enterotoxic escherichia coli

    腸產毒性大腸桿菌分子生物學及基因工程疫苗的研究進展
  5. The study progress of the biosynthesis genetic control of chlorophyll b in chlamydomonas reinhardtii

    生物合成的遺傳控制研究進展
  6. Here we review molecular genetic progress in each of histological subtypes of ovarian carcinoma

    本文對卵巢癌及其不同組織學亞型分子遺傳學改變的研究進展進行綜述。
  7. This review focuses on the progress of cms studies from three aspects : ( 1 ) cms of mitochondria through interference of the energy supply. ( 2 ) the effects of a fertility restorer gene, and ( 3 ) the application of cms in genetic engineering of plant male sterility

    主要以能量為切入點闡述了植物線粒體引起細胞質雄性不育的作用機制,對提出的2種主要假說做了相關分析;從轉錄后調控和翻譯后調控2個層面對育性恢復的機製作了詳細的闡述;綜述了近年來細胞質不育在植物育種上的應用所取得的成就。
  8. As a great progress of science and technology, genetic technology has touched every corner of society, jjicluding the field of law

    基因技術作為科學技術的一個重大突破,將其震撼力撼及了社會的每一個角落,法學領域也不例外。
  9. Research progress on reproductive and genetic toxicity of cigarette smoking in male

    吸煙對男性生殖和遺傳毒性的研究進展
  10. Progress of molecular genetics on genetic dermatoses

    遺傳性皮膚病的分子遺傳學研究進展
  11. This paper reviews the research progress in the area of molecular biology of magnetotactic bacteria, and it focuses on genomes and genetic system of magnetotactic bacteria, genes and protein associating with magnetosomes

    本文對趨磁細菌及其胞內產物磁小體作了介紹,論述了該領域分子生物學方面的研究進展,包括與磁小體相關的基因和蛋白的研究、趨磁細菌遺傳體系及基因組方面的研究等,展望了該領域今後的發展前景。
  12. In the past several decades, all kinds of research work have been carried out on the genetic resources of genus malus species. therefore, much progress has been made concerning the studies of the number of species, geographical distribution, morphology, classification, cytology, cell biology, reproductive biology and resistance characters to various environmental stresses

    在過去的幾十年中,我國的蘋果資源研究工作者對蘋果屬植物的種類、數量、分佈、形態學、系統學、孢粉學、細胞學、生殖生物學和抗逆境生物學特性等眾多方面開展了廣泛、系統和深入細致的研究,取得了許多重要成果,但也存在明顯不足。
  13. With the development of modem biological science and technology, great progress has been made in tissue culthe as an importam means of science study ginkgo is a gymnosperm, so its tissue culture is especially hard. at present, the research aboot ginkgo tissue culture and genetic transformation was limited and it has not been reported abollt its success, so it is very necessary to establish ginkgo regeneration system

    隨著現代生物技術的發展,植物組織培養作為一種重要的研究手段取得了可喜的進步,裸子植物銀杏組織培養尤其困難。但目前銀杏組織培養和遺傳轉化的研究並不多,成功的例子還沒有。建立一個銀杏的高頻高效再生體系已是刻不容緩的事。
  14. Abstract : robertsonian translocation is important in the study of evolution biology. current progress, contents, technology and methods about robertsonian translocation studies are introduced in the article. the usefulness in improving the breeds of pasturages and molecular genetic aspect are also discussed

    摘要本文總結了羅伯遜易位研究的現狀、內容和技術方法,並對它在畜牧品種的改良、分子遺傳學方面的應用作了探討,指出了它在研究進化生物學方面的重要意義。
  15. Abstract : techniques of apple genetic transformation can improve apple trees and shorten the breeding cycle by molecular methods. in the last years, great progress has been made in this field, which involves a number of important apple genotypes developed. so far, apple genetic ransformation mainly adopts agrobacterium - mediated technique, involving infection and transgenic tissue regeneration, which are important steps to affect the transformation efficiency. the initial work to the date is to know and to search for the factors which can increase the efficiency

    摘要蘋果的遺傳轉化技術通過分子手段改良蘋果,有助於縮短其育種周期.最近十年,在該領域的研究取得很大進展,涉及到一些重要的蘋果基因型及有用的外源基因.迄今,蘋果的遺傳轉化主要採用農桿菌介導法,侵染與轉化材料的再生是影響其轉化效率的關鍵過程,了解其影響因素,尋找有利因素以提高轉化效率是目前蘋果遺傳轉化研究的重點。
  16. Progress of heat resistance in vegetables was reviewed incl uding the identification ways, genetic regularity, introducing and screening of he at resistance materials, breeding ways and cultivation techniques of heat resistanc e. suggestions for future research were also proposed

    從蔬菜耐熱性鑒定方法、耐熱性遺傳規律、耐熱材料的引進與篩選、耐熱性育種方法以及耐熱栽培技術的研究等方面介紹了蔬菜耐熱性的研究進展,並對今後的蔬菜耐熱性研究提出了建議。
  17. For its advantages over traditional breeding technologies, genetic engineering has made a rapid progress in flower color breeding of ornamental plants

    基因工程技術在觀賞植物花色育種上可彌補傳統育種技術的缺陷,因此它在花色育種方面的研究和應用發展迅速。
  18. A review with 37 references is given on the recent progress of selenium species analysis with emphases to the methods of separation and examination technology, e. g, chromatography, the hydride genetic method, inductive coupling plasma mass spectrum, the atomic spectrum

    摘要對近年來有關硒的形態分析的發展作了綜述,對新的分離方法如色譜法、氫化物發生法、毛細管電泳和新的檢測技術如電感藕合等離子體質譜、原子光譜給予較多的關注。
  19. This dissertation proposes a new and effective optimization - - immune genetic algorithm ( iga ) on the analysis of the drawbacks of traditional ga ' s and developing the useful and discarding the useless of existing immune theories. this dissertation aims to make the designed algorithm resolve the contradiction of local search capability and global search capability effectively and keep the population diversity during the evolving progress so as to remedy the demerits of traditional ga ' s

    本文在分析了傳統遺傳演算法的缺陷機理和揚棄了已有免疫理論的基礎上,提出了一種新型有效的優化演算法? ?免疫遺傳演算法( immunegeneticalgorithm , iga ) ,旨在通過對生物體實際免疫行為的模擬,使設計的優化演算法能夠有效解決全局搜索能力和局部搜索能力的矛盾、維持演化過程中種群的多樣性,從而彌補傳統遺傳演算法的缺陷。
  20. Donoghue attributes the progress to revolutions in molecular biology and computer technology that allow scientists to see at the genetic level how species are related to each other

    多納將這進展歸功于分子工程學與計算機技術,它們使科學家們可以在基因層面上分析物種之間的相互聯系。
分享友人