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Biosystematic research in Aegilops and Triticum

机译:盾草和小麦的生物系统研究

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As Kihara had only 1 to 3 accessions of each diploid analyzer species in his germplasm collection, we conclude the genome formulae for Aegilops and Triticum published by him between 1920 and 1960 were largely based on the typological concept applied to cytogenetic research. The same restriction applies to his concept of “modified genomes” in the tetraploid Aegilops species, which therefore may not actually be modified. Genome analysis by itself is not a very fine-tuned experimental technique. A biological species concept based on several different biosystematic studies in Aegilops and Triticum is preferable to a species concept based only on genome analysis in meiocytes of F1 hybrids. Biosystematic studies recognize Aegilopa sharonensis, Ae. peregrinu, and Triticum urartu as valid species distinct from other species. Our attempts tc resynthesize tetraploid wheats using Ae. spelfoides and Ae. searsii as female parents and T. monococcum and T. urartu as male parents met with little success. There may be an embryo lethality mechanism operating in these F1 hybrid combinations. Sterile hybrid plants were obtained with Ae. longissima, Ae. shuronensis, and Ae. bicornis as female parents in crosses with the two Triticum species as males. Amphidiploid seed was obtained with the use of colchicine.
机译:由于Kihara在他的种质收集中每个二倍体分析物种只有1-3种,我们得出的结论是,他在1920年至1960年之间发布的Aegilops和Triticum的基因组公式主要是基于应用于细胞遗传学研究的类型学概念。同样的限制也适用于他在四倍体“节肢动物”物种中“修饰的基因组”的概念,因此实际上可能没有被修饰。基因组分析本身并不是一种非常精细的实验技术。基于仅在Aegilops和Triticum中进行的几种不同生物系统研究的生物物种概念比仅基于F1杂种的减数分裂细胞基因组分析的物种概念更为可取。生物系统学研究认识到Aeilopa sharonensis,Ae。 peregrinu和Triticum urartu是与其他物种不同的有效物种。我们尝试使用Ae重新合成四倍体小麦。 spelfoides和Ae。希瑟斯(Searsii)作为女性父母,而丁香球菌(T. monococcum)和乌拉尔丁(T. urartu)作为男性父母,收效甚微。在这些F1杂种组合中可能存在胚胎致死机制。用Ae获得了不育杂种植物。 A. Longissima。 shuronensis和Ae。雌性双角兽与男性的两个普通小麦杂交。利用秋水仙碱获得了二倍体种子。

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