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整合基因组学揭示了紫柳性别二态性的途径

Integrative genomics reveals paths to sex dimorphism in Salix purpurea L.

作者信息

Hyden Brennan, Carlson Craig H, Gouker Fred E, Schmutz Jeremy, Barry Kerrie, Lipzen Anna, Sharma Aditi, Sandor Laura, Tuskan Gerald A, Feng Guanqiao, Olson Matthew S, DiFazio Stephen P, Smart Lawrence B

机构信息

Horticulture Section, School of Integrative Plant Science, Cornell University, Cornell AgriTech, Geneva, NY, USA.

Floral and Nursery Plants Research Unit, US National Arboretum, United States Department of Agriculture, Agricultural Research Service, Beltsville, MD, USA.

出版信息

Hortic Res. 2021 Aug 1;8(1):170. doi: 10.1038/s41438-021-00606-y.

Abstract

Sex dimorphism and gene expression were studied in developing catkins in 159 F individuals from the bioenergy crop Salix purpurea, and potential mechanisms and pathways for regulating sex development were explored. Differential expression, eQTL, bisulfite sequencing, and network analysis were used to characterize sex dimorphism, detect candidate master regulator genes, and identify pathways through which the sex determination region (SDR) may mediate sex dimorphism. Eleven genes are presented as candidates for master regulators of sex, supported by gene expression and network analyses. These include genes putatively involved in hormone signaling, epigenetic modification, and regulation of transcription. eQTL analysis revealed a suite of transcription factors and genes involved in secondary metabolism and floral development that were predicted to be under direct control of the sex determination region. Furthermore, data from bisulfite sequencing and small RNA sequencing revealed strong differences in expression between males and females that would implicate both of these processes in sex dimorphism pathways. These data indicate that the mechanism of sex determination in Salix purpurea is likely different from that observed in the related genus Populus. This further demonstrates the dynamic nature of SDRs in plants, which involves a multitude of mechanisms of sex determination and a high rate of turnover.

摘要

对能源作物紫柳159个F个体发育中的柔荑花序进行了性别二态性和基因表达研究,并探讨了调控性别发育的潜在机制和途径。利用差异表达、表达数量性状基因座(eQTL)、亚硫酸氢盐测序和网络分析来表征性别二态性、检测候选主调控基因,并确定性别决定区域(SDR)可能介导性别二态性的途径。通过基因表达和网络分析,提出了11个基因作为性别主调控因子的候选基因。这些基因包括可能参与激素信号传导、表观遗传修饰和转录调控的基因。eQTL分析揭示了一系列参与次生代谢和花发育的转录因子和基因,预计它们受性别决定区域的直接控制。此外,亚硫酸氢盐测序和小RNA测序数据显示,雄性和雌性之间的表达存在显著差异,这表明这两个过程都参与了性别二态性途径。这些数据表明,紫柳的性别决定机制可能与相关属杨树中观察到的不同。这进一步证明了植物中性别决定区域的动态性质,其涉及多种性别决定机制和高周转率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/272f/8325687/34326cfc5b5a/41438_2021_606_Fig1_HTML.jpg

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