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格雷戈尔·孟德尔与物种增殖论。

Gregor Mendel and the theory of species multiplication.

机构信息

Keygene N.V., Agro Business Park 90, The Netherlands.

Department of Biochemistry and Metabolism, John Innes Centre, Norwich Research Park, Norwich, NR4 7UH, UK.

出版信息

Genetics. 2023 May 26;224(2). doi: 10.1093/genetics/iyad046.

DOI:10.1093/genetics/iyad046
Abstract

According to the revisionist interpretation of Mendel's pea crosses, his primary aim was not to study the inheritance of traits. Instead, he was interested in the question raised by Linnaeus as to whether new species could arise from the hybridization of existing species. The genetic interpretation is therefore seen as ahistorical by the revisionists. This view goes back to the 1979 article "Mendel no Mendelian?" by the historian of science R.C. Olby. A closer analysis shows that Olby implicitly assumed Mendel adhered to the unusual strictest species definition for Pisum. However, we argue that Mendel only mentions the hypothetical application of this strict definition in his 1866 paper. Like most of his contemporaries, Mendel accepted variation within species where the differences between varieties and species were a matter of degree. After researching variable hybrids in peas (Pisum; 1854-1863), Mendel also studied constant hybrids in hawkweeds (Hieracium; 1866-1873), which he considered to be new species. There is no debate about the latter, but the matter becomes muddled because Olby lumps Pisum and Hieracium together, despite their having completely different reproduction systems. Based on newly discovered historical sources, we also dispute several other assumptions made by Olby. We do not consider Olby's claim that Mendel conducted the Pisum experiments to investigate species multiplication to be tenable.

摘要

根据对孟德尔豌豆杂交实验的修正解释,他的主要目的不是研究性状的遗传。相反,他对林奈提出的问题很感兴趣,即新物种是否可以从现有物种的杂交中产生。因此,遗传解释被修正主义者视为非历史的。这种观点可以追溯到 1979 年科学史学家 R.C.奥尔比的文章《孟德尔不是孟德尔?》。更仔细的分析表明,奥尔比含蓄地假设孟德尔坚持豌豆的最严格的特殊物种定义。然而,我们认为孟德尔只在他 1866 年的论文中提到了这种严格定义的假设应用。与他的大多数同时代人一样,孟德尔接受了物种内的变异,其中品种和物种之间的差异只是程度上的问题。在研究豌豆(豌豆;1854-1863)中的可变性杂种之后,孟德尔还研究了 Hawkweeds(Hieracium;1866-1873)中的恒定性杂种,他认为这是新物种。后者没有争议,但由于奥尔比将 Pisum 和 Hieracium 混为一谈,尽管它们具有完全不同的繁殖系统,因此事情变得混乱。基于新发现的历史资料,我们还对奥尔比提出的其他几个假设提出了质疑。我们不认为奥尔比声称孟德尔进行豌豆实验是为了研究物种繁殖是站得住脚的。

相似文献

1
Gregor Mendel and the theory of species multiplication.格雷戈尔·孟德尔与物种增殖论。
Genetics. 2023 May 26;224(2). doi: 10.1093/genetics/iyad046.
2
The Full Breadth of Mendel's Genetics.孟德尔遗传学的全貌
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Seeds of doubt: Mendel's choice of Hieracium to study inheritance, a case of right plant, wrong trait.怀疑的种子:孟德尔选择山柳菊来研究遗传,选对了植物,选错了性状。
Theor Appl Genet. 2016 Dec;129(12):2253-2266. doi: 10.1007/s00122-016-2788-x. Epub 2016 Oct 1.
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How did Mendel arrive at his discoveries?孟德尔是如何得出他的发现的?
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Mendelism: New Insights from Gregor Mendel's Lectures in Brno.孟德尔主义:来自格雷戈尔·孟德尔在布尔诺讲座的新见解。
Genetics. 2017 Sep;207(1):1-8. doi: 10.1534/genetics.117.201434.
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Mendel's pea crosses: varieties, traits and statistics.孟德尔的豌豆杂交实验:品种、特征和统计学。
Hereditas. 2019 Oct 31;156:33. doi: 10.1186/s41065-019-0111-y. eCollection 2019.
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From Mendel's discovery on pea to today's plant genetics and breeding : Commemorating the 150th anniversary of the reading of Mendel's discovery.从孟德尔的豌豆杂交实验到今天的植物遗传学和育种:纪念孟德尔发现 150 周年。
Theor Appl Genet. 2016 Dec;129(12):2267-2280. doi: 10.1007/s00122-016-2803-2. Epub 2016 Oct 7.
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How Mendel's Interest in Inheritance Grew out of Plant Improvement.孟德尔对遗传的兴趣如何源于植物改良。
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Mendel's controlled pollination experiments in Mirabilis jalapa confirmed his discovery of the gamete theory of inheritance in Pisum.孟德尔在马利筋属植物上进行的有控制的授粉实验证实了他在豌豆中发现的配子理论遗传。
Hereditas. 2022 Mar 26;159(1):19. doi: 10.1186/s41065-022-00232-1.
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Experiments on Plant Hybrids by Gregor Mendel.格雷戈尔·孟德尔的《植物杂交实验》
Genetics. 2016 Oct;204(2):407-422. doi: 10.1534/genetics.116.195198.

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