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火龙果花组织自交不亲和和自交亲和品种间的基因差异表达分析,以鉴定参与自交不亲和调控的基因。

The Pitaya Flower Tissue's Gene Differential Expression Analysis between Self-Incompatible and Self-Compatible Varieties for the Identification of Genes Involved in Self-Incompatibility Regulation.

机构信息

Sanya Nanfan Research Institute of Hainan University, Sanya 572025, China.

Hainan Key Laboratory for Sustainable Utilization of Tropical Bioresources, College of Tropical Crops, Hainan University, Haikou 570228, China.

出版信息

Int J Mol Sci. 2023 Jul 13;24(14):11406. doi: 10.3390/ijms241411406.

Abstract

Self-incompatible pitaya varieties have low fruit-setting rates under natural conditions, leading to higher production costs and hindering industrial prosperity. Through transcriptome sequencing, we obtained the 36,900 longest transcripts (including 9167 new transcripts) from 60 samples of flowers. Samples were collected pre- and post-pollination (at 0 h, 0.5 h, 2 h, 4 h, and 12 h) from two varieties of pitaya (self-compatible Jindu No. 1 and self-incompatible Cu Sha). Using the RNA-Seq data and comparison of reference genomes, we annotated 28,817 genes in various databases, and 1740 genes were optimized in their structure for annotation. There were significant differences in the expression of differentially expressed genes (DEGs) in the pitaya stigmas under different pollination types, especially at the late post-pollination stage, where the expression of protease genes increasedal significantly under cross-pollination. We identified DEGs involved in the ribosomal, ubiquitination-mediated, and phyto-signaling pathways that may be involved in pitaya SI regulation. Based on the available transcriptome data and bioinformatics analysis, we tentatively identified as a candidate gynogenetic S gene in the pitaya GSI system.

摘要

自交不亲和火龙果品种在自然条件下结实率低,导致生产成本高,阻碍了产业繁荣。通过转录组测序,我们从 60 个花样本中获得了 36900 个最长的转录本(包括 9167 个新转录本)。样本分别在授粉前(0 h、0.5 h、2 h、4 h 和 12 h)和授粉后(自交亲和的金都 1 号和自交不亲和的 Cu Sha)从两个火龙果品种中采集。利用 RNA-Seq 数据和参考基因组比较,我们在各种数据库中注释了 28817 个基因,对 1740 个基因的结构进行了优化注释。不同授粉类型下火龙果柱头中差异表达基因(DEGs)的表达存在显著差异,尤其是在授粉后期,异交时蛋白酶基因的表达明显增加。我们鉴定了参与核糖体、泛素化介导和植物信号通路的 DEGs,它们可能参与火龙果 SI 调控。基于现有的转录组数据和生物信息学分析,我们初步鉴定了作为火龙果 GSI 系统中雌配子体 S 基因的候选基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d53b/10379629/423b0a9f5ffd/ijms-24-11406-g001.jpg

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