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基因编码区的一个14核苷酸缺失突变与“早酥红”梨(白梨组)的红色果皮相关:基因中的一个缺失与梨的红色果皮相关。

A 14 nucleotide deletion mutation in the coding region of the gene is associated with the red skin of "Zaosu Red" pear ( White Pear Group): a deletion in the gene is associated with the red skin of pear.

作者信息

Ou Chunqing, Zhang Xiaoli, Wang Fei, Zhang Liyi, Zhang Yanjie, Fang Ming, Wang Jiahong, Wang Jixun, Jiang Shuling, Zhang Zhihong

机构信息

1College of Horticulture, Shenyang Agricultural University, Shenyang, 110161 Liaoning PR China.

Key Laboratory of Horticultural Crops Germplasm Resources Utilization, Ministry of Agriculture, Research Institute of Pomology, Chinese Academy of Agricultural Sciences, Xingcheng, 125100 Liaoning PR China.

出版信息

Hortic Res. 2020 Apr 1;7(1):39. doi: 10.1038/s41438-020-0259-7. eCollection 2020.

Abstract

Red skin is an important quality trait for pear fruits and is determined by the concentration and composition of anthocyanins. The regulatory mechanism underlying anthocyanin accumulation is a popular topic in fruit research. Red mutants are ideal materials for studying the molecular mechanism of color diversity in pear. Although several red pear mutants have been cultivated and are in production, no exact locus containing the responsible genetic mutation has been identified. In this study, by combining the bulked segregant analysis with whole-genome sequencing, we identified a 14 nucleotide deletion mutation in the coding region of the gene from the red pear mutant "Zaosu Red". We further verified that the deletion was present only in the red mutant of "Zaosu" and in its red offspring, which was different from that which occurred in other red pear fruits. This deletion results in a coding frame shift such that there is an early termination of the gene and loss of key NLS and VP domains from PpBBX24. The lost domains may reduce or alter the normal function of PpBBX24. In addition, we found that the transcript levels of the and genes in red samples were significantly higher than those in green samples, whereas the results for the normal-type gene were the opposite. We ultimately revealed that the 14 nucleotide deletion mutation in the coding region of the gene is associated with the red skin of the "Zaosu Red" pear. This finding of somatic mutational events will be helpful for breeding new red pear cultivars and for understanding the regulatory mechanisms involved in pear skin pigmentation.

摘要

红色果皮是梨果实的一个重要品质性状,由花青素的浓度和组成决定。花青素积累的调控机制是果实研究中的一个热门话题。红色突变体是研究梨颜色多样性分子机制的理想材料。虽然已经培育出了几个红色梨突变体并投入生产,但尚未确定包含相关基因突变的确切位点。在本研究中,通过将混合分离群体分析法与全基因组测序相结合,我们在红色梨突变体“早酥红”的基因编码区鉴定出一个14个核苷酸的缺失突变。我们进一步验证了该缺失仅存在于“早酥”的红色突变体及其红色后代中,这与其他红色梨果实中发生的情况不同。这种缺失导致编码框移位,使得基因提前终止,并且PpBBX24失去了关键的NLS和VP结构域。失去的结构域可能会降低或改变PpBBX24的正常功能。此外,我们发现红色样本中基因和基因的转录水平显著高于绿色样本,而正常类型基因的结果则相反。我们最终揭示,基因编码区的14个核苷酸缺失突变与“早酥红”梨的红色果皮有关。这一体细胞突变事件的发现将有助于培育新的红色梨品种,并有助于理解梨果皮色素沉着所涉及的调控机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2077/7109114/0b3d02c83d09/41438_2020_259_Fig1_HTML.jpg

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