College of Horticulture, China Agricultural University, Beijing, 100193, China.
J Integr Plant Biol. 2024 Nov;66(11):2450-2469. doi: 10.1111/jipb.13757. Epub 2024 Aug 8.
Dissecting the genetic control of apple fruit harvest date (AFHD) into multiple Mendelian factors poses a significant challenge in modern genetics. Here, a quantitative trait locus (QTL) for AFHD was fine-mapped to the NAC transcription factor (TF) MdNAC18 within the interval defined by the overlap of QTLs Z03.5/Z03.6 and F03.2/F03.3. One direct target of MdNAC18 is the ethylene biosynthesis gene MdACO1. The single nucleotide polymorphisms (SNPs) SNP517 and SNP958 in the MdNAC18 coding sequence modulated activation of MdACO1 by MdNAC18. SNP1229 in the MdACO1 promoter destroyed the MdNAC18 binding site and thus abolished MdNAC18 binding. SNP517 and SNP958 also affected MdNAC18 activation of the TF gene MdARF5; MdARF5 activates the ethylene biosynthesis gene MdACS1. SNP517 and SNP958 in MdNAC18, SNP1229 and SNP769 (linked to InDel62) in MdACO1, and InDel162 in MdACS1 constituted a genetic variation network. The genetic effect of this network on AFHD was estimated as 60.3 d, accounting for 52.6% of the phenotype variation of the training population. The joint effects of these polymorphisms increased the accuracy of a genomics-assisted prediction (GAP) model for AFHD (r = 0.7125). Together, our results suggest that genetic variation in MdNAC18 affects AFHD by modulating ethylene biosynthesis and provide an optimized GAP model for apple breeding.
将苹果果实采收期 (AFHD) 的遗传控制分解为多个孟德尔因子,这在现代遗传学中是一项重大挑战。在这里,AFHD 的数量性状位点 (QTL) 被精细映射到 NAC 转录因子 (TF) MdNAC18 内,该位置由 QTLs Z03.5/Z03.6 和 F03.2/F03.3 的重叠定义。MdNAC18 的一个直接靶标是乙烯生物合成基因 MdACO1。MdNAC18 编码序列中的单核苷酸多态性 (SNP) SNP517 和 SNP958 调节了 MdACO1 的激活。MdACO1 启动子中的 SNP1229 破坏了 MdNAC18 结合位点,从而消除了 MdNAC18 结合。SNP517 和 SNP958 还影响了 MdNAC18 对 TF 基因 MdARF5 的激活;MdARF5 激活乙烯生物合成基因 MdACS1。MdNAC18 中的 SNP517 和 SNP958、MdACO1 中的 SNP1229 和 SNP769(与 InDel62 连锁)以及 MdACS1 中的 InDel162 构成了一个遗传变异网络。该网络对 AFHD 的遗传效应估计为 60.3 d,占训练群体表型变异的 52.6%。这些多态性的联合效应提高了苹果果实采收期基因组辅助预测 (GAP) 模型的准确性 (r=0.7125)。总之,我们的结果表明,MdNAC18 的遗传变异通过调节乙烯生物合成影响 AFHD,并为苹果育种提供了优化的 GAP 模型。