Calvo-Bado L, Noble R, Challen M, Dobrovin-Pennington A, Elliott T
Horticulture Research International, Wellesbourne, Warwickshire CV35 9EF, United Kingdom.
Appl Environ Microbiol. 2000 Feb;66(2):728-34. doi: 10.1128/AEM.66.2.728-734.2000.
Twelve wild collections and one commercial strain were used to characterize breeding systems and to develop molecular identities in the Arvenses section of the genus Agaricus, which includes the "horse mushroom" A. arvensis. Two morphotypes were identified based on macro- and micromorphological features. However, not all collections could be delimited by conventional taxonomic characters. Sequencing of the small subunit intergenic spacer (ITS) region (368 to 370 bp) of the rRNA genes clearly resolved the 13 collections into two clusters consistent with the identified morphotypes. Single-spore progenies and mating type testers were established and used to test intra- and interstock compatibility. The two compatibility groups identified were consistent with ITS clusters. Compatibility group I stocks readily interbred within the constraints of a unifactorial heterothallic system with a multiallelic mating type factor. Compatibility group II had a more restricted breeding pattern, and interactions were difficult to predict on the basis of mating type. Morphological data, ITS sequences, and the ability to interbreed suggest that these collections are part of a complex of interrelated species. Single-spore, homokaryotic isolates from both compatibility groups were able to fruit in compost culture, and two of the collections may represent natural homokaryotic fruiting. We conclude that species from the section Arvenses have versatile unifactorial heterothallic life cycles that permit both interbreeding and homokaryotic fruiting.
利用12个野生菌株和1个商业菌株对蘑菇属田生组(包括“马勃”田头菇)的育种系统进行表征,并开发分子识别特征。根据宏观和微观形态特征鉴定出两种形态型。然而,并非所有菌株都能通过传统分类学特征来界定。对rRNA基因的小亚基基因间隔区(ITS)区域(368至370 bp)进行测序,清楚地将13个菌株分为两个簇,与鉴定出的形态型一致。建立了单孢子后代和交配型测试菌株,并用于测试株内和株间的相容性。鉴定出的两个相容性组与ITS簇一致。相容性组I的菌株在单因子异宗配合系统和多等位基因交配型因子的限制下很容易杂交。相容性组II的育种模式更为受限,基于交配型难以预测其相互作用。形态学数据、ITS序列以及杂交能力表明,这些菌株是一个相关物种复合体的一部分。来自两个相容性组的单孢子、同核体分离物能够在堆肥培养中出菇,其中两个菌株可能代表天然同核体出菇。我们得出结论,田生组的物种具有通用的单因子异宗配合生命周期,既允许杂交也允许同核体出菇。