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基于扩增片段长度多态性标记构建遗传连锁图谱,并开发序列标记位点标记,用于辅助选择杏鲍菇(Pleurotus eryngii)无孢子性状。

Construction of a genetic linkage map based on amplified fragment length polymorphism markers and development of sequence-tagged site markers for marker-assisted selection of the sporeless trait in the oyster mushroom (Pleurotus eryngii).

机构信息

Tottori University, Tottori, Japan.

出版信息

Appl Environ Microbiol. 2012 Mar;78(5):1496-504. doi: 10.1128/AEM.07052-11. Epub 2011 Dec 30.

Abstract

A large number of spores from fruiting bodies can lead to allergic reactions and other problems during the cultivation of edible mushrooms, including Pleurotus eryngii (DC.) Quél. A cultivar harboring a sporulation-deficient (sporeless) mutation would be useful for preventing these problems, but traditional breeding requires extensive time and labor. In this study, using a sporeless P. eryngii strain, we constructed a genetic linkage map to introduce a molecular breeding program like marker-assisted selection. Based on the segregation of 294 amplified fragment length polymorphism markers, two mating type factors, and the sporeless trait, the linkage map consisted of 11 linkage groups with a total length of 837.2 centimorgans (cM). The gene region responsible for the sporeless trait was located in linkage group IX with 32 amplified fragment length polymorphism markers and the B mating type factor. We also identified eight markers closely linked (within 1.2 cM) to the sporeless locus using bulked-segregant analysis-based amplified fragment length polymorphism. One such amplified fragment length polymorphism marker was converted into two sequence-tagged site markers, SD488-I and SD488-II. Using 14 wild isolates, sequence-tagged site analysis indicated the potential usefulness of the combination of two sequence-tagged site markers in cross-breeding of the sporeless strain. It also suggested that a map constructed for P. eryngii has adequate accuracy for marker-assisted selection.

摘要

在食用菌栽培过程中,大量的子实体孢子会导致过敏反应和其他问题,包括杏鲍菇(DC.)Quél。一个具有孢子缺陷(无孢子)突变的品种将有助于预防这些问题,但传统的育种需要大量的时间和劳动力。在这项研究中,我们使用了一种无孢子杏鲍菇菌株,构建了一个遗传连锁图谱,以引入类似于标记辅助选择的分子育种计划。基于 294 个扩增片段长度多态性标记、两个交配型因子和无孢子性状的分离,该连锁图谱由 11 个连锁群组成,总长度为 837.2 厘摩(cM)。无孢子性状的基因区域位于连锁群 IX 中,有 32 个扩增片段长度多态性标记和 B 交配型因子。我们还使用基于混池分离分析的扩增片段长度多态性,鉴定了与无孢子位点紧密连锁(1.2 cM 内)的 8 个标记。其中一个扩增片段长度多态性标记被转化为两个序列标签位点标记 SD488-I 和 SD488-II。使用 14 个野生分离株进行序列标签分析表明,两个序列标签标记的组合在无孢子菌株的杂交中具有潜在的用途。它还表明,为杏鲍菇构建的图谱在标记辅助选择中具有足够的准确性。

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