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Nashiki, A.

Publications and source records attributed to Nashiki, A..

2 recordsLinked to original sources

Identification of major quantitative trait loci for parthenocarpic ability in East Asian melon

Natural (genetic) parthenocarpy contributes to fruit yield and quality under unfavorable environmental conditions where there are no effective pollinators or fertile pollen grains. Several old melon cultivars and weedy melon in East Asia are known to have strong parthenocarpic ability, but there has been little progress in intentionally introducing this ability into current F1 hybrid cultivars. Here, we examined its inheritance and confirmed the selection accuracy of DNA markers linked to it. We conducted QTL analysis using three F2 populations derived from crosses between a non-parthenocarpic cultivar and three parthenocarpic accessions, and detected two major QTLs on chromosomes 2 (par2.1) and 3 (par3.1). The parthenocarpic parent allele at both QTLs enhanced parthenocarpic ability. Phenotypic segregation was well explained by par2.1 and par3.1 in two F2 populations derived from Japanese weedy melon and an old Korean cultivar and by par3.1 in one from an old Japanese cultivar. This difference suggests that the effects of par2.1 and par 3.1 depend on genetic background. Both QTL regions contain several phytohormone-related genes, so we randomly selected SNPs in auxin- and ethylene-related genes to confirm the accuracy of selection for parthenocarpic ability. These SNP markers proved sufficient, though not perfect, to select plants with strong parthenocarpic ability. These results provide new insights into the molecular mechanisms of parthenocarpic ability in melon and will contribute to the development of new cultivars with high parthenocarpic ability. Key messageSeveral oriental melons have strong parthenocarpic ability controlled by one or two loci. DNA markers linked to these loci can select individuals with this ability.

plant biology↗

Identification of novel sex determination loci in Japanese weedy melon

Sex expression contributes to fruit quality and yield in the Cucurbitaceae. In melon, orchestrated regulation by sex determination genes explains the mechanism of sex expression, resulting in a great variety of sexual morphologies. In this study, we examined the Japanese weedy melon UT1, which does not follow the reported model of sex expression. We conducted QTL analysis using F2 plants for flower sex on the main stem and the lateral branch and mapped a "femaleness" locus on Chr. 3 (Fem3.1) and a "type of flower femaleness" (female or bisexual) locus on Chr. 8 (tff8.1). Fem3.1 included the known sex determination gene CmACS11. Sequence comparison of CmACS11 between parental lines revealed three nonsynonymous SNPs. A CAPS marker developed from one of the SNPs was closely linked to femaleness in two F2 populations with different genetic backgrounds. The femaleness allele was dominant in F1 lines from crosses between UT1 and diverse cultivars and breeding lines. This study suggests that the identity of tff8.1 is CmCPR5, a recently reported bisexual flower control gene. We found that the Japanese weedy melon UT1 does not follow the conventional sex expression model because of the interaction of the loci Fem3.1 and tff8.1 with the previously reported sex determination genes. The results of this study provide new insights into the molecular mechanisms of sex determination in melons and considerations for the application of femaleness in melon breeding. Key messageJapanese weedy melon exhibits unique sex expression with interactions between previously reported sex determination genes and two novel loci.

plant biology↗