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转录组分析揭示了父本对[具体植物名称]营养生长杂种优势的重要性。 (注:原文中“in”后面缺少具体植物名称,根据语境补充了一个[具体植物名称]使句子完整通顺)

Transcriptome Analysis Revealed the Paternal Importance to Vegetative Growth Heterosis in .

作者信息

Ren Yuxin, Wu Lixia, Zhong Yuhang, Zhao Xinwen, Xu Meng, Wang Jun

机构信息

State Key Laboratory of Tree Genetics and Breeding, Beijing Forestry University, Beijing 100083, China.

National Engineering Research Center of Tree Breeding and Ecological Restoration, Beijing Forestry University, Beijing 100083, China.

出版信息

Plants (Basel). 2024 Aug 15;13(16):2278. doi: 10.3390/plants13162278.

Abstract

Parental selection is important for heterosis formation during crossbreeding of . However, in poplar hybrids, the effect of parents on vegetative growth heterosis is not well understood. In this study, one female parent (. XY4) and two male parents ( OH and × BJLY3#) were used to produce two progenies (Hyb1 and Hyb2). Vegetative growth investigation showed that both Hyb1 and Hyb2 performed heterosis in plant growth and ground diameter. The vegetative growth of hybrids was strongly correlated with the male parents but not with the female parents. The gene expression levels in the hybrids were more biased toward the male parents. In Hyb1 and Hyb2, 51.93% and 45.03% of the expressed genes showed the non-additive effect, respectively, and over 65% of the non-additively expressed genes showed the dominant effect. It is noteworthy that genes of paternal expression dominant effect (ELD_♂) account for the majority of dominantly expressed genes, suggesting the paternal contribution to heterosis. KEGG enrichment analysis indicated that a large number of non-additively expressed genes were enriched in the plant hormone signal transduction pathway. WGCNA analysis showed that MEcyan was significantly correlated with the traits of hybrids, and 12 plant hormone signal transduction pathway genes were enriched in this module. Transcription factors (TFs) MYB88, LHY, and TCP4 may be involved in the regulation of these pathway genes. This finding supported that the male parents play an important role in the formation of vegetative growth heterosis of . In addition, the non-additively expressed genes of the signal transduction pathway and the regulation of TFs related to these pathway genes may be one of the reasons for the generation of heterosis.

摘要

亲本选择对于杂交育种过程中杂种优势的形成很重要。然而,在杨树杂种中,亲本对营养生长杂种优势的影响尚不清楚。在本研究中,使用一个雌性亲本(XY4)和两个雄性亲本(OH和×BJLY3#)来产生两个后代(Hyb1和Hyb2)。营养生长调查表明,Hyb1和Hyb2在植株生长和地径方面均表现出杂种优势。杂种的营养生长与雄性亲本密切相关,而与雌性亲本无关。杂种中的基因表达水平更偏向于雄性亲本。在Hyb1和Hyb2中,分别有51.93%和45.03%的表达基因表现出非加性效应,超过65%的非加性表达基因表现出显性效应。值得注意的是,父本表达显性效应(ELD_♂)的基因占显性表达基因的大多数,表明父本对杂种优势有贡献。KEGG富集分析表明,大量非加性表达基因富集在植物激素信号转导途径中。WGCNA分析表明,MEcyan与杂种的性状显著相关,该模块中富集了12个植物激素信号转导途径基因。转录因子(TFs)MYB88、LHY和TCP4可能参与这些途径基因的调控。这一发现支持了雄性亲本在杨树营养生长杂种优势形成中起重要作用。此外,信号转导途径的非加性表达基因以及与这些途径基因相关的转录因子调控可能是杂种优势产生的原因之一。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e65e/11359908/3a29b33ca38f/plants-13-02278-g001.jpg

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