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作 者:Lu Yang Minghui Li Min Shen Sijia Bu Bo Zhu Feng He Xiaoping Zhang Xuan Gao Jiaxin Xiao
机构地区:[1]Key Laboratory for the Conservation and Utilization of Important Biological Resources,College of Life Sciences,Anhui Normal University,Wuhu 241000,Anhui,China [2]School of Marine and Biological Engineering,Yancheng Teachers University,Yancheng 224007,Jiangsu,China
出 处:《Fruit Research》2022年第1期71-84,共14页果树研究(英文)
基 金:supported by Anhui Provincial Natural Science Foundation(2008085QC129 and 2008085MC77);the 17th Huo Yingdong Education Fund Project(171022);Key Research and Development Program in Anhui Province(202204c06020029).
摘 要:Vaccinium bracteatum Thunb.,an important native Chinese wild blueberry species,is widely used as a rootstock and in blueberry cultivar breeding,as well as in traditional medicine and local food.We report here the genome sequence of V.bracteatum using a combination of Oxford Nanopore Technologies long-read and Illumina HiSeq short-read sequencing technologies to obtain 65.30 Gb of clean data,achieving 114.60-fold genome coverage.The assembled genome has a total sequence length of 569.81 Mb and consists of 36,756 predicted genes.Repetitive DNA sequences represent 57.78%of the genome sequence.Comparative genomic analysis revealed that a total of 336 gene families had expanded and that 298 candidate genes had undergone positive selection during evolution in V.bracteatum.The divergence of V.bracteatum from the related Rhododendron williamsianum and Rhododendron delavayi occurred~13−85 million years ago.The genome sequence of V.bracteatum allowed us to identify some important genes associated with traits involved in fruit development,such as flavonoid biosynthesis,sugar and acid metabolism,MYB transcription factor gene expression,and hormone regulation.The differential expression patterns of genes encoding flavonoid biosynthesis enzymes and MYB transcription factors might explain the high flavonoid content of V.bracteatum.This chromosome-level genome assembly provides reference sequences for the identification and characterization of genes important in the improvement of blueberry and related research.
关 键 词:metabolism BLUE SUGAR
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