单选题 .  During the Second World War, doctors tried to save severely burned pilots: with grafts of donated skin. The grafted skin looked good for a few days, but then withered and died. Studies led by Peter Medawar—who won a 1960 Nobel Prize for his work—found that grafts of an individual's own skin did work, while those of a donor did not. We now know that the donor skin grafts failed because the recipient's immune system recognized the grafted skin as foreign and killed it. The same process leads to the rejection of donated organs. But how does our immune system learn what is self and what is foreign?
    As immunologist Daniel Davis explains in The Compatibility Gene, it is all down to specific genes—formally known as the major histocompatibility complex genes. Although our appearance, lifestyle and career path may make us feel unique, we are actually always one of a group: it is only our compatibility genes that define us as true individuals. Davis provides a well-written and easy-to-read account of the sometimes complicated biology behind the crucial genes that affect our lives so profoundly.
    From early on in the evolution of life, individual cells—and later multicellular organisms developed the ability to recognize that which was the same as them, and that which was different. Davis recounts how, when we are growing as fetuses, our compatibility genes train the immune system to recognize our own cells and tissues as "self" and so, in healthy people, they know what not to attack. Our cells are identified by the presence of unique surface molecules, coded for by the compatibility genes.
    Meanwhile, our immune systems make antibodies. These are randomly generated in a kind of lottery, which means they will be able to attack a great diversity of molecules, especially those of pathogens. By chance, though, a few of these antibodies will also match the compatibility-gene molecules on our own cells. Leaving such antibodies around would be suicide—literally. To stop this, Darwinian-style selection comes into play within the immune system, eliminating any cells that produce antibodies matching "self".11.  Why did the grafted skin wither and die after a few days? ______
【正确答案】 A
【答案解析】 第二次世界大战期间,医生们试图用移植捐赠者的皮肤挽救严重烧伤的飞行员,刚开始几天,移植的皮肤看上去还好,但后来却萎缩、坏死。免疫学家Daniel Davis在《亲和基因》中解释说,这都是因为一种特定的基因,医学上称为主要组织相容性复合体基因。我们的免疫系统会产生抗体。这些都是随机产生的,这意味着它们将能够攻击多种多样的分子,尤其是病原体的分子。然而,偶然情况下,这些抗体也与我们自己的细胞上的亲和基因分子匹配。让这些抗体到处存在就相当于自杀。为了阻止这一情况发生,免疫系统出现了达尔文式的选择,任何细胞如果产生了与“自我”匹配的抗体,都会被消灭。
   细节理解题。根据题干可以定位至文章第一段,第一段指出,人体免疫系统将捐赠者的皮肤视作异物,故而这样的皮肤会被消灭,故答案为A,A中的identifies是文中recognized的同义替换。B、C、D是对文章相关信息的曲解。