検索ワード: journal (ヒンズー語 - 英語)

コンピュータによる翻訳

人が翻訳した例文から、翻訳方法を学びます。

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Hindi

journal

English

 

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人による翻訳

プロの翻訳者、企業、ウェブページから自由に利用できる翻訳レポジトリまで。

翻訳の追加

ヒンズー語

英語

情報

ヒンズー語

aap ka journal

英語

your business is ready

最終更新: 2018-09-04
使用頻度: 1
品質:

参照: 匿名

ヒンズー語

ड्राफ्ट@ item journal is in final form

英語

draft@item journal is in final form

最終更新: 2018-12-24
使用頻度: 1
品質:

参照: 匿名

ヒンズー語

प्रक्रिया में@ item journal is in draft form

英語

in-process@item journal is in draft form

最終更新: 2018-12-24
使用頻度: 1
品質:

参照: 匿名

ヒンズー語

mera research paper apke journal mein accept hua hai

英語

today is my paper.

最終更新: 2023-09-14
使用頻度: 1
品質:

参照: 匿名

ヒンズー語

काउन्टर@ item event, to- do or journal declined

英語

counter proposaldecline invitation

最終更新: 2018-12-24
使用頻度: 1
品質:

参照: 匿名

ヒンズー語

[स्वीकृत] @ item event, to- do or journal declined

英語

[accept]@item event, to-do or journal declined

最終更新: 2018-12-24
使用頻度: 1
品質:

参照: 匿名

ヒンズー語

क्रिया की आवश्यकता@ item event, to- do or journal accepted

英語

needs action@item event, to-do or journal accepted

最終更新: 2018-12-24
使用頻度: 1
品質:

参照: 匿名

ヒンズー語

क्रिया की आवश्यकता@ item event orto- do is canceled; journal is removed

英語

needs-action@item event orto-do is canceled; journal is removed

最終更新: 2018-12-24
使用頻度: 1
品質:

参照: 匿名

ヒンズー語

अज्ञात स्थिति:% 1@ item event, to- do, journal or freebusy posting

英語

unknown status: %1@item event, to-do, journal or freebusy posting

最終更新: 2018-12-24
使用頻度: 1
品質:

参照: 匿名

ヒンズー語

bjeloruski aktivisti su napravili klonove youtube-a i live journal-a gde su objavili svoje stvari, veoma smijšna videa i karikature o predsjedniku lukašenku.

英語

so the belarusian activists made a clone of youtube and live journal and published their stuff, very funny videos and humorous cartoons about president luchenko

最終更新: 2019-07-06
使用頻度: 4
品質:

参照: 匿名

ヒンズー語

duchenne muscular dystrophy, a severe type of muscle weakness that usually begins at an early age and worsens quickly, may soon have a new strategy of treatment through genetic regulation. there is no known cure for duchenne muscular dystrophy. treatments usually aim to control symptoms to improve quality of life. sandeep eswarappa, assistant professor indian institute of science (iisc), bengaluru one of the 21 recipients of this year’s swarnajayanti fellowship of the department of science and technology (dst), government of india proposes to supress the disease-causing premature stop codon or the genetic process that initiates these diseases. he is trying to bring about the suppression through translational readthrough, a gene regulatory principle found in humans, yeasts, bacteria and drosophila which takes place with the variation of the genetic code. prof. sandeep’s group has been developing strategies to induce translational readthrough across genetic diseases caused by non-sense mutations --a change in dna that causes a protein to terminate or end its translation earlier than expected. they were successful in achieving this in vitro in case of thalassemia and are working on other disease models. this research work has been published in the scientific journal ‘biochemistry’ recently. with the swarna jayanti fellowship, they will extend it to duchenne muscular dystrophy. if successful, this project may lead to novel therapeutics for the treatment of genetic diseases like thalassemia, duchenne muscular dystrophy, haemophilia. in case of any protein formation genetic information present in the genome is first transcribed into an mrna, which in turn is translated into a protein. protein synthesis or translation is executed by macromolecular machinery called ribosomes. ribosomes start this process at a specific location on an mrna called ‘start codon’ and terminate at a stop signal called ‘stop codon’. in case of diseases with nonsense mutations, such mutations result in premature stop signal in mrna often resulting in non-functional truncated protein. prof. sandeep eswarappa’s laboratory at iisc has shown that in certain mrnas, under certain conditions, translating ribosomes misread the stop signal and continue till they encounter another stop signal. in this translational readthrough process, a longer protein is synthesized with an extension. this extension might change the properties of the protein. the experiments carried out by his group have revealed that such long prote “the knowledge we have already gained from our experiment have opened an unexpected avenue to treat genetic diseases caused by non-sense mutations like duchenne muscular dystrophy, haemophilia and so on,” said prof. sandeep.

英語

duchenne muscular dystrophy, a severe type of muscle weakness that usually begins at an early age and worsens quickly, may soon have a new strategy of treatment through genetic regulation. there is no known cure for duchenne muscular dystrophy. treatments usually aim to control symptoms to improve quality of life. sandeep eswarappa, assistant professor indian institute of science (iisc), bengaluru one of the 21 recipients of this year’s swarnajayanti fellowship of the department of science and technology (dst), government of india proposes to supress the disease-causing premature stop codon or the genetic process that initiates these diseases. he is trying to bring about the suppression through translational readthrough, a gene regulatory principle found in humans, yeasts, bacteria and drosophila which takes place with the variation of the genetic code. prof. sandeep’s group has been developing strategies to induce translational readthrough across genetic diseases caused by non-sense mutations --a change in dna that causes a protein to terminate or end its translation earlier than expected. they were successful in achieving this in vitro in case of thalassemia and are working on other disease models. this research work has been published in the scientific journal ‘biochemistry’ recently. with the swarna jayanti fellowship, they will extend it to duchenne muscular dystrophy. if successful, this project may lead to novel therapeutics for the treatment of genetic diseases like thalassemia, duchenne muscular dystrophy, haemophilia. in case of any protein formation genetic information present in the genome is first transcribed into an mrna, which in turn is translated into a protein. protein synthesis or translation is executed by macromolecular machinery called ribosomes. ribosomes start this process at a specific location on an mrna called ‘start codon’ and terminate at a stop signal called ‘stop codon’. in case of diseases with nonsense mutations, such mutations result in premature stop signal in mrna often resulting in non-functional truncated protein. prof. sandeep eswarappa’s laboratory at iisc has shown that in certain mrnas, under certain conditions, translating ribosomes misread the stop signal and continue till they encounter another stop signal. in this translational readthrough process, a longer protein is synthesized with an extension. this extension might change the properties of the protein. the experiments carried out by his group have revealed that such long proteins can have different localization, stability and function. “the knowledge we have already gained from our experiment have opened an unexpected avenue to treat genetic diseases caused by non-sense mutations like duchenne muscular dystrophy, haemophilia and so on,” said prof. sandeep.

最終更新: 2021-03-15
使用頻度: 1
品質:

参照: 匿名

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