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整合 microRNA 和 mRNA 表达谱揭示调控石榴籽硬度的复杂网络。

Integrated microRNA and mRNA expression profiling reveals a complex network regulating pomegranate (Punica granatum L.) seed hardness.

机构信息

Zhengzhou Fruit Research Institute, Chinese Academy of Agricultural Sciences, Zhengzhou, 450009, P.R. China.

Zhengzhou Tobacco Research Institute of CNTC, Zhengzhou, 450001, P.R. China.

出版信息

Sci Rep. 2018 Jun 18;8(1):9292. doi: 10.1038/s41598-018-27664-y.

Abstract

The breeding of new soft-seeded pomegranate cultivars provides new products for the market and increases farmers' incomes, yet the genetic architecture mediating seed hardness is largely unknown. Here, the seed hardness and hundred-seed weights of 26 cultivars were determined in 2 successive years. We conducted miRNA and mRNA sequencing to analyse the seeds of two varieties of Punica granatum: soft-seeded Tunisia and hard-seeded Sanbai, at 60 and 120 d after flowering. Seed hardness was strongly positively correlated with hundred-seed weight. We detected 25 and 12 differentially expressed miRNA-mRNA pairs with negative regulatory relationships between the two genotypes at 60 and 120 d after flowering, respectively. These miRNA-mRNA pairs mainly regulated seed hardness by altering cell wall structure. Transcription factors including NAC1, WRKY and MYC, which are involved in seed hardness, were targeted by differentially expressed mdm-miR164e and mdm-miR172b. Thus, seed hardness is the result of a complex biological process regulated by a miRNA-mRNA network in pomegranate. These results will help us understand the complexity of seed hardness and help to elucidate the miRNA-mediated molecular mechanisms that contribute to seed hardness in pomegranate.

摘要

培育新的软籽石榴品种为市场提供新产品,增加农民收入,但种子硬度的遗传结构在很大程度上尚不清楚。本研究连续两年对 26 个品种的石榴种子硬度和百粒重进行了测定。对两种石榴(突尼斯软籽石榴和三白石榴)进行了 miRNA 和 mRNA 测序分析,分别在开花后 60 和 120 天。种子硬度与百粒重呈显著正相关。在开花后 60 和 120 天,两个基因型分别检测到 25 个和 12 个差异表达的 miRNA-mRNA 对,呈负调控关系。这些 miRNA-mRNA 对主要通过改变细胞壁结构来调节种子硬度。参与种子硬度的转录因子 NAC1、WRKY 和 MYC 被差异表达的 mdm-miR164e 和 mdm-miR172b 靶向。因此,种子硬度是石榴中 miRNA-mRNA 网络调控的复杂生物学过程的结果。这些结果将有助于我们理解种子硬度的复杂性,并阐明有助于石榴种子硬度的 miRNA 介导的分子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3753/6006261/e45e98b9c4e3/41598_2018_27664_Fig1_HTML.jpg

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