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Identification of a Novel S-RNase Gene and S-Genotypes of Four Pear (Pyrus pyrifolia) Cultivars

机译:鉴定四种梨(Pyrus Pyrifolia)品种的新型S-RNase基因和S-基因型

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Gametophytic self-incompatibility (GSI) is a genetically controlled mechanism to prevent inbreeding and promote out-crossing. Pyrus pyrifolia is a commercially important fruit tree that exhibits GSI. It is necessary to identify S-genotypes of cultivars for determination of cross-compatible combination prior to performing pear plantation and breeding programs. In this study, an important local cultivar 'Huobali' extensively used as parent in pear breeding programs, and its three progenies 'Mantianhong', 'Hongsucui' and 'Meirensu' were used for S-genotyping analysis by PCR-based molecular method. Agarose gel electrophoresis showed that two fragments were produced in each of the three progenies, while three in the 'Huobali'. After restriction digestion and sequencing analysis, the S-alleles in the four cultivars were determined. The allele of 345 bp from 'Huobali' was determined as a novel S-RNase allele that was tentatively denominated as S44-RNase. RT-PCR revealed that the S44-RNase was expressed specifically in the styles, which is consistent with the expression pattern of S-RNases. Comparison of genomic and cDNA sequences revealed an intron of 148 bp for the S44-RNase. At the amino acid level, it shared 65% to 93% similarity with other Maloideae S-RNases. This study will be helpful in pear production and breeding programs.
机译:配子蛋白自我不相容性(GSI)是一种转基因控制机制,以防止近亲繁殖和促进过交叉。 Pyrus Pyrifolia是一种商业上重要的果树,展示了GSI。有必要在进行梨种植园和育种计划之前鉴定品种的S-基因型,以确定交叉相容组合。在这项研究中,广泛用作梨育种计划的父母的重要局部品种“Huobali”及其三个后代'螳螂',“宏观的”和“Meirensu”用于基于PCR的分子法进行S-基因分型分析。琼脂糖凝胶电泳表明,在三个后代中的每一个中产生了两种碎片,而“Huobali”中的三种碎片。限制消化和测序分析后,测定了四种品种的S-等位基因。从“Huobali”的等位基因为345bp的等位基因被确定为一种新的S-RNase等位基因,暂时以S44-RNase指定。 RT-PCR显示S44-RNase特异性在曲位中表达,这与S-RNase的表达模式一致。基因组和cDNA序列的比较显示了S44-RNase的148bp内含子。在氨基酸水平,它与其他马洛卫S-RNases共用65%至93%。本研究将有助于梨生产和繁殖计划。

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