考研英語閱讀真題文章三十篇之十三

雕龍文庫 分享 時間: 收藏本文

考研英語閱讀真題文章三十篇之十三

  From Genes to GMOs

  Today, genes can be isolated, identified, and cloned, then inserted into other organisms to alter their traits. The process is called genetic engineering. For this technology to develop, a few tools were necessary. In the 1970s, scientists isolated bacterial plasmids. These are hula hoop shaped double stranded units of DNA that can be moved easily from one cell to another. They also discovered scissors, called restriction enzymes for cutting the DNA into predictable, reproducible patterns. These enzymes are used to snip apart plasmids at very specific DNA sequences, leaving free ends that can be rejoined as the scientist chooses. Restriction enzymes occur in bacteria as part of a natural defense mechanism to guard against invading viruses. Many different types are now available, each cutting DNA at a different sequence of base pairs.

  Once a plasmid is snipped open, a foreign piece of DNA, cut by the same enzyme scissors, can be taped, end to end, into the plasmid using another enzyme, DNA ligase. This is the glue that sticks all the pieces together. The new plasmid is inserted back into a cell, where numerous copies can be made. Introduction of specific genetic material into rapidly reproducing target bacteria can turn the cells into miniature factories for production of useful substances. For example, when the Exxon Valdez oil freighter ran aground in 1989 and spilled thirty eight million liters of oil, oil eating bacteria, created in just this manner, were used in the cleanup operation. The oil was broken down five times faster with help from the genetically modified organisms .

  Plasmid technology has also been developed for moving targeted genetic material into plants. In this technique, scientists use the plasmid from a bacterium that causes tumors on plants. In nature, this bacterium transfers genetic material into plant tissues by releasing plasmids onto damaged plant cells. The plasmids enter the plant tissue and produce a swelling, or tumor. Because of this special ability to invade plant tissue, these tumor inducing plasmids are now used routinely as taxi cabs to carry target genes into a wide variety of plant cells, including, for example, corn. The European corn borer is a common pest in this economically valuable crop. When pesticides are used against them, timing is critical. If sprayed too late, the corn borer will already have made a home inside the corn stem and will not be killed. CIBA Research was the first company to develop what has become commonly known as Bt corn. It contains genes that allow it to resist infestation by the corn borer. The Bt genes came from a bacterium called Bacillus thuring ensis . It produces a protein called Bt protoxin. When an insect larva eats these bacteria, the toxin contained in the bacterium attaches to the insect s gut and makes holes in it, and the larva starves to death. Bt corn can be grown using less pesticide, and sometimes even no pesticide.

  

  From Genes to GMOs

  Today, genes can be isolated, identified, and cloned, then inserted into other organisms to alter their traits. The process is called genetic engineering. For this technology to develop, a few tools were necessary. In the 1970s, scientists isolated bacterial plasmids. These are hula hoop shaped double stranded units of DNA that can be moved easily from one cell to another. They also discovered scissors, called restriction enzymes for cutting the DNA into predictable, reproducible patterns. These enzymes are used to snip apart plasmids at very specific DNA sequences, leaving free ends that can be rejoined as the scientist chooses. Restriction enzymes occur in bacteria as part of a natural defense mechanism to guard against invading viruses. Many different types are now available, each cutting DNA at a different sequence of base pairs.

  Once a plasmid is snipped open, a foreign piece of DNA, cut by the same enzyme scissors, can be taped, end to end, into the plasmid using another enzyme, DNA ligase. This is the glue that sticks all the pieces together. The new plasmid is inserted back into a cell, where numerous copies can be made. Introduction of specific genetic material into rapidly reproducing target bacteria can turn the cells into miniature factories for production of useful substances. For example, when the Exxon Valdez oil freighter ran aground in 1989 and spilled thirty eight million liters of oil, oil eating bacteria, created in just this manner, were used in the cleanup operation. The oil was broken down five times faster with help from the genetically modified organisms .

  Plasmid technology has also been developed for moving targeted genetic material into plants. In this technique, scientists use the plasmid from a bacterium that causes tumors on plants. In nature, this bacterium transfers genetic material into plant tissues by releasing plasmids onto damaged plant cells. The plasmids enter the plant tissue and produce a swelling, or tumor. Because of this special ability to invade plant tissue, these tumor inducing plasmids are now used routinely as taxi cabs to carry target genes into a wide variety of plant cells, including, for example, corn. The European corn borer is a common pest in this economically valuable crop. When pesticides are used against them, timing is critical. If sprayed too late, the corn borer will already have made a home inside the corn stem and will not be killed. CIBA Research was the first company to develop what has become commonly known as Bt corn. It contains genes that allow it to resist infestation by the corn borer. The Bt genes came from a bacterium called Bacillus thuring ensis . It produces a protein called Bt protoxin. When an insect larva eats these bacteria, the toxin contained in the bacterium attaches to the insect s gut and makes holes in it, and the larva starves to death. Bt corn can be grown using less pesticide, and sometimes even no pesticide.

  

信息流廣告 周易 易經(jīng) 代理招生 二手車 網(wǎng)絡(luò)營銷 旅游攻略 非物質(zhì)文化遺產(chǎn) 查字典 社區(qū)團(tuán)購 精雕圖 戲曲下載 抖音代運營 易學(xué)網(wǎng) 互聯(lián)網(wǎng)資訊 成語 成語故事 詩詞 工商注冊 注冊公司 抖音帶貨 云南旅游網(wǎng) 網(wǎng)絡(luò)游戲 代理記賬 短視頻運營 在線題庫 國學(xué)網(wǎng) 知識產(chǎn)權(quán) 抖音運營 雕龍客 雕塑 奇石 散文 自學(xué)教程 常用文書 河北生活網(wǎng) 好書推薦 游戲攻略 心理測試 石家莊人才網(wǎng) 考研真題 漢語知識 心理咨詢 手游安卓版下載 興趣愛好 網(wǎng)絡(luò)知識 十大品牌排行榜 商標(biāo)交易 單機(jī)游戲下載 短視頻代運營 寶寶起名 范文網(wǎng) 電商設(shè)計 免費發(fā)布信息 服裝服飾 律師咨詢 搜救犬 Chat GPT中文版 經(jīng)典范文 優(yōu)質(zhì)范文 工作總結(jié) 二手車估價 實用范文 古詩詞 衡水人才網(wǎng) 石家莊點痣 養(yǎng)花 名酒回收 石家莊代理記賬 女士發(fā)型 搜搜作文 石家莊人才網(wǎng) 鋼琴入門指法教程 詞典 圍棋 chatGPT 讀后感 玄機(jī)派 企業(yè)服務(wù) 法律咨詢 chatGPT國內(nèi)版 chatGPT官網(wǎng) 勵志名言 河北代理記賬公司 文玩 語料庫 游戲推薦 男士發(fā)型 高考作文 PS修圖 兒童文學(xué) 買車咨詢 工作計劃 禮品廠 舟舟培訓(xùn) IT教程 手機(jī)游戲推薦排行榜 暖通,電地暖, 女性健康 苗木供應(yīng) ps素材庫 短視頻培訓(xùn) 優(yōu)秀個人博客 包裝網(wǎng) 創(chuàng)業(yè)賺錢 養(yǎng)生 民間借貸律師 綠色軟件 安卓手機(jī)游戲 手機(jī)軟件下載 手機(jī)游戲下載 單機(jī)游戲大全 免費軟件下載 石家莊論壇 網(wǎng)賺 手游下載 游戲盒子 職業(yè)培訓(xùn) 資格考試 成語大全 英語培訓(xùn) 藝術(shù)培訓(xùn) 少兒培訓(xùn) 苗木網(wǎng) 雕塑網(wǎng) 好玩的手機(jī)游戲推薦 漢語詞典 中國機(jī)械網(wǎng) 美文欣賞 紅樓夢 道德經(jīng) 標(biāo)準(zhǔn)件 電地暖 網(wǎng)站轉(zhuǎn)讓 鮮花 書包網(wǎng) 英語培訓(xùn)機(jī)構(gòu) 電商運營
主站蜘蛛池模板: 好湿好紧好痛a级是免费视频| 精品午夜久久网成年网| 日韩欧美一区黑人vs日本人| 国产第一页福利| 亚洲AV无码专区亚洲AV不卡| 怡红院在线观看视频| 欧美在线视频网| 国产真实强被迫伦姧女在线观看| 亚洲乱码一二三四区乱码| 手机看片福利在线| 最近中文字幕免费完整| 国产日韩在线观看视频| 久久精品无码一区二区www| 麻豆国产尤物av尤物在线观看| 日韩中文在线观看| 国产乱人伦app精品久久| 中文字幕无码免费久久 | 精品一区二区三区在线播放视频| 小雪校花的好大的奶好爽| 北条麻妃久久99精品| jizz日本黄色| 欧美精品国产综合久久| 国产精品久久久久久一区二区三区| 亚洲午夜久久久精品影院| 久久综合热88| 日本三级在线视频| 国产99久久亚洲综合精品| 天天做天天摸天天爽天天爱| 欧美巨大xxxx做受中文字幕| 99精品国产在热久久| 人人狠狠综合久久亚洲| 国产成人vr精品a视频| 日日碰狠狠添天天爽爽爽| 狠狠精品久久久无码中文字幕| 日本免费电影一区| 午夜影院一区二区| eeuss影院eeuss天堂| 欧美成人亚洲高清在线观看| 国产成人精品免高潮在线观看| 丰满少妇高潮惨叫久久久一| 精品一区精品二区|