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Genetic Variation and Combining Ability Analysis of Bruising Sensitivity in Agaricus bisporus

机译:双孢蘑菇中青紫挫伤敏感性的遗传变异及配合力分析

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摘要

Advanced button mushroom cultivars that are less sensitive to mechanical bruising are required by the mushroom industry, where automated harvesting still cannot be used for the fresh mushroom market. The genetic variation in bruising sensitivity (BS) of Agaricus bisporus was studied through an incomplete set of diallel crosses to get insight in the heritability of BS and the combining ability of the parental lines used and, in this way, to estimate their breeding value. To this end nineteen homokaryotic lines recovered from wild strains and cultivars were inter-crossed in a diallel scheme. Fifty-one successful hybrids were grown under controlled conditions, and the BS of these hybrids was assessed. BS was shown to be a trait with a very high heritability. The results also showed that brown hybrids were generally less sensitive to bruising than white hybrids. The diallel scheme allowed to estimate the general combining ability (GCA) for each homokaryotic parental line and to estimate the specific combining ability (SCA) of each hybrid. The line with the lowest GCA is seen as the most attractive donor for improving resistance to bruising. The line gave rise to hybrids sensitive to bruising having the highest GCA value. The highest negative SCA possibly indicates heterosis effects for resistance to bruising. This study provides a foundation for estimating breeding value of parental lines to further study the genetic factors underlying bruising sensitivity and other quality-related traits, and to select potential parental lines for further heterosis breeding. The approach of studying combining ability in a diallel scheme was used for the first time in button mushroom breeding.
机译:蘑菇行业需要对机械擦伤不那么敏感的高级纽扣蘑菇品种,在该行业中,自动收割仍不能用于新鲜蘑菇市场。通过不完整的二倍体杂交来研究双孢蘑菇的青枯菌敏感性(BS)的遗传变异,以了解BS的遗传力和所用亲本系的结合能力,并以此估算其育种价值。为此,从野生菌株和栽培品种中回收的十九个同核生物品系以dielel方案相互杂交。在受控条件下生长了51个成功的杂种,并评估了这些杂种的BS。 BS被证明是具有很高遗传力的性状。结果还表明,棕色杂交种通常比白色杂交种对青紫的敏感度低。迪亚尔方案允许估计每个同核亲本系的一般结合能力(GCA),并估计每个杂种的特异性结合能力(SCA)。 GCA最低的品系被认为是提高抗瘀伤性的最有吸引力的供体。该品系产生了对挫伤敏感的杂种,具有最高的GCA值。最高的SCA负值可能表明杂种优势对青枯病具有抵抗力。该研究为估算亲本系的育种价值提供了基础,以便进一步研究青枯敏感性和其他与品质有关的性状的遗传因素,并为进一步的杂种优势育种选择潜在的亲本系。在纽扣菌种育种中首次采用了以二元醇方案研究结合能力的方法。

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