College of Horticulture, Anhui Agricultural University, 130 West Changjiang Road, Hefei, 230036, Anhui, People's Republic of China.
State Key Laboratory of Tea Plant Biology and Utilization, Anhui Agricultural University, 130 West Changjiang Road, Hefei, 230036, Anhui, People's Republic of China.
Plant Cell Rep. 2017 Sep;36(9):1375-1385. doi: 10.1007/s00299-017-2160-x. Epub 2017 Jun 2.
Insertion of a solo LTR, which possesses strong bidirectional, stem-specific promoter activities, is associated with the evolution of a dwarfing apple spur mutation. Spur mutations in apple scions revolutionized global apple production. Since long terminal repeat (LTR) retrotransposons are tightly related to natural mutations, inter-retrotransposon-amplified polymorphism technique and genome walking were used to find sequences in the apple genome based on these LTRs. In 'Red Delicious' spur mutants, a novel, 2190-bp insertion was identified as a spur-specific, solo LTR (sLTR) located at the 1038th nucleotide of another sLTR, which was 1536 bp in length. This insertion-within-an-insertion was localized within a preexisting Gypsy-50 retrotransposon at position 3,762,767 on chromosome 4. The analysis of transcriptional activity of the two sLTRs (the 2190- and 1536-bp inserts) indicated that the 2190-bp sLTR is a promoter, capable of bidirectional transcription. GUS expression in the 2190-bp-sense and 2190-bp-antisense transgenic lines was prominent in stems. In contrast, no promoter activity from either the sense or the antisense strand of the 1536-bp sLTR was detected. From ~150 kb of DNA on each side of the 2190 bp, sLTR insertion site, corresponding to 300 kb of the 'Golden Delicious' genome, 23 genes were predicted. Ten genes had predicted functions that could affect shoot development. This first report, of a sLTR insertion associated with the evolution of apple spur mutation, will facilitate apple breeding, cloning of spur-related genes, and discovery of mechanisms behind dwarf habit.
插入一个具有强双向、茎特异性启动子活性的 solo LTR 与 dwarfing apple spur 突变的进化有关。苹果茎突变使苹果产业在全球范围内发生了革命。由于长末端重复(LTR)逆转录转座子与自然突变密切相关,因此使用 inter-retrotransposon-amplified polymorphism 技术和基因组步移技术,根据这些 LTR 在苹果基因组中寻找序列。在“红元帅”spur 突变体中,鉴定出一个新的 2190-bp 插入物,它是一个位于另一个长 1536bp 的 sLTR 的第 1038 位核苷酸的 spur 特异性 solo LTR(sLTR)。这个插入物中的插入物位于位置 3762767 的 Gypsy-50 逆转录转座子内。对这两个 sLTR(2190bp 和 1536bp 插入物)的转录活性分析表明,2190bp 的 sLTR 是一个启动子,能够双向转录。2190-bp-sense 和 2190-bp-antisense 转基因株系中茎的 GUS 表达显著。相比之下,未检测到 1536bp sLTR 的 sense 或 antisense 链的启动子活性。从 2190bp 的每一侧的大约 150kb DNA,sLTR 插入位点,对应于“金元帅”基因组的 300kb,预测了 23 个基因。十个基因具有预测的功能,可以影响芽的发育。这是第一个与苹果 spur 突变进化有关的 sLTR 插入的报告,将促进苹果的育种、spur 相关基因的克隆以及矮小习性背后的机制的发现。