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生物 高校生

同じ種類の制限酵素で切断とありますが、同じ制限酵素で切断できるということは同じ塩基配列が存在しているということでしょうか? そうであれば、なぜ同じ塩基配列が存在しているのでしょうか?🙏 お願いいたします!

ませ,そのDNA断片を増幅させる操作を行うことが多い。 まず, DNAを制限酵素 遺伝子を操作する際には, 特定のDNA断片をベクターに結合して微生物に取り込 A で切断して目的の遺伝子を含むDNA断片を切り出す。 次に,このDNA断片を じ種類の制限酵素で切断したプラスミドなどのベクターにDNAリガーゼを用いて組 み込み、これを微生物に取り込ませる。 プラスミドを取り込んだ微生物が増殖する。 る。このように, 目的の遺伝子断片を単離して増幅させることをクローニングという ともにプラスミドも微生物内で増殖するため、目的の遺伝子を増幅させることができ (図2)。 DNA S -制限酵素 目的の遺伝子を 含む部分 cloning 目的の遺伝子を含むDNA断片 GAATTC GAATTC CTTAA G CTTAA G DNAリガーゼで結合 GAATTC CTTAAG DNAリガーゼで結合 同じ種類の制限酵素で切断 ( ベクター (プラスミド) プラスミドは微生物内で 増殖する。 増殖 図2 ベクターを利用した遺伝子のクローニング DNAリガーゼ MOVIE 微生物に取り 込ませる。

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英語 高校生

promisingの具体的な内容が下のオレンジの部分となっているのですが、上の緑の部分がだめな理由をどなたか教えてください。

20 15 Rothblatt believes that within twenty years, "mind clones*" will be humanity's biggest invention. (2) The concept of cloning human brains and placing them inside robotic bodies has been described in numerous science fiction works. However, Google director Ray Kurzweil believes that our bodies may be replaced by machines 第2段落 P P C ロスプラットは「頭脳 クローン」が人類最大 の発明になると信じて いる。 グーグル社の 人々の身体はやがて様 重役カーツワイルも、 械に置き換わり、デジ タル的に不死身となる。 人間が現れると信じて いる。 彼は著書の中 で、超知的な「トラン スヒューマン」が様々 な問題を解決すると同 時に、通常の人間をご within ninety years and that some people will become digitally immortal*. His 1999 book The Age of Spiritual Machines: When Computers Exceed Human Intelligence describes one possible future in which the boundaries between biological human intelligence and digital artificial intelligence blur*. Kurzweil mentions a possible 流の市民だと見なす future that seems both (3) promising and terrifying. If super intelligent transhumans* become hundreds of times smarter, many problems such as hunger, war, and pollution 【前途有望な未来像】 could be solved. However, (4)there is no guarantee that such computer-based 【恐ろしい未来像①】 ↑ intelligence would act “fairly” by ordinary human standards. According to Kurzweil, during the late 21st century humans who become part of super-intelligent AIsystems* 【恐ろしい未来像②】 来像を描いている。 might start to regard ordinary humans as second-class citizens. At some point, 25 ordinary people simply will not be able to keep up with the super-intelligent 【恐ろしい未来像③】 ↑ "transhumans." If you had the choice and could afford it, would you upload your own consciousness onto a computer? Would you like to purchase a robotic version brofis of yourself?

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英語 高校生

なぜcanでは無いのですか?お願いします

words 1 /skin/ sékfon/ /tifu:/ míərm/ ases 1 ger A be necessary for you to give up any in in the near future. research studies G-A 2 Today, an incredible number been carried out all over the world this field. Scientists a working very hard and competing with one another to come u with faster and safer ways to create tissues such as skin from 3 At this point, one of the leading scientists in this area is D the patient's own body cells. a medica Yamanaka Shinya of Kyoto University. He was first doctor who treated back injuries, broken limbs, damaged joints and such. One day, he saw a woman with a serious disease in her joints. He was so shocked when he saw her swollen scientist. He misshapen joints that he decided to become a went into a basic study in order to find good ways to treat those ords 2 mpí:t/ ses 2 ther rds 3 crí:t/ Səri/ fm/ ant/ on/ on/ s 3 ch iPS Cells 1 If you have badly burned or red your skin, the doct may have to take a section of g skin from your back a Thanks to a growing however, it may no long medi sew it onto the injured area. technology called tissue engineeri: A w Wor sed R 6 The i and injuri damaged were ot 5 doctor very s into i they we 7 Dr 10 tissue cells u meth day t in th 15 Tho patients suffering from serious diseases and injuries. 4 One way to create tissue is to use egg cells, which have the ability to grow into any tissue in the body such as hair or muscle. This method, however, has produced a lot of debate. Many think it is wrong to treat live eggs as objects and then “kill them, even though the purpose is to treat patients. In addition people fear that this method could lead to human cloning. 5 For years, Dr. Yamanaka and his research team worked hard to find a different way to create tissue. Then, in 2007. they finally succeeded in creating heart muscle tissue from skin cells taken from a person's face. They first added four kinds of genes to the skin cells to put them back into their initial state, a state similar to egg cells. Then they made those cells grow into heart muscle tissue. The four genes they found are now called "Yamanaka Factors," and the initialized cells that can grow into any of the 200 cell types are called iPS cells. ma 20 on 18 th r 25時

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