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两种种子含油量不同的油菜基因型种子与角果壁的转录组比较。

Transcriptomic comparison of seeds and silique walls from two rapeseed genotypes with contrasting seed oil content.

作者信息

Guo Xupeng, Yan Na, Liu Linpo, Yin Xiangzhen, Chen Yuhong, Zhang Yanfeng, Wang Jingqiao, Cao Guozhi, Fan Chengming, Hu Zanmin

机构信息

State Key Laboratory of Plant Cell and Chromosome Engineering, Institute of Genetics and Developmental Biology, Innovation Academy for Seed Design, Chinese Academy of Sciences, Beijing, China.

Hybrid Rapeseed Research Center of Shaanxi Province, Yangling, Shaanxi, China.

出版信息

Front Plant Sci. 2023 Jan 13;13:1082466. doi: 10.3389/fpls.2022.1082466. eCollection 2022.

Abstract

Silique walls play pivotal roles in contributing photoassimilates and nutrients to fuel seed growth. However, the interaction between seeds and silique walls impacting oil biosynthesis is not clear during silique development. Changes in sugar, fatty acid and gene expression during silique development of L192 with high oil content and A260 with low oil content were investigated to identify key factors affecting difference of their seed oil content. During the silique development, silique walls contained more hexose and less sucrose than seeds, and glucose and fructose contents in seeds and silique walls of L192 were higher than that of A260 at 15 DAF, and sucrose content in the silique walls of L192 were lower than that of A260 at three time points. Genes related to fatty acid biosynthesis were activated over time, and differences on fatty acid content between the two genotypes occurred after 25 DAF. Genes related to photosynthesis expressed more highly in silique walls than in contemporaneous seeds, and were inhibited over time. Gene set enrichment analysis suggested photosynthesis were activated in L192 at 25 and 35 DAF in silique walls and at both 15 and 35 DAF in the seed. Expressions of sugar transporter genes in L192 was higher than that in A260, especially at 35 DAF. Expressions of genes related to fatty acid biosynthesis, such as s, and s were higher in L192 than in A260, especially at 35 DAF. Meanwhile, genes related to oil body proteins were expressed at much lower levels in L192 than in A260. According to the WGCNA results, hub modules, such as ME.turquoise relative to photosynthesis, ME.green relative to embryo development and ME.yellow relative to lipid biosynthesis, were identified and synergistically regulated seed development and oil accumulation. Our results are helpful for understanding the mechanism of oil accumulation of seeds in oilseed rape for seed oil content improvement.

摘要

角果壁在为种子生长提供光合产物和养分方面起着关键作用。然而,在角果发育过程中,种子与角果壁之间影响油脂生物合成的相互作用尚不清楚。本研究以高油含量的L192和低油含量的A260为材料,研究了角果发育过程中糖、脂肪酸和基因表达的变化,以确定影响其种子油含量差异的关键因素。在角果发育过程中,角果壁中己糖含量高于种子,蔗糖含量低于种子,在开花后15天,L192种子和角果壁中的葡萄糖和果糖含量高于A260,在三个时间点,L192角果壁中的蔗糖含量低于A260。随着时间的推移,与脂肪酸生物合成相关的基因被激活,两种基因型在开花后25天出现脂肪酸含量差异。与光合作用相关的基因在角果壁中的表达高于同期种子,并随时间受到抑制。基因集富集分析表明,光合作用在L192角果壁的开花后25天和35天以及种子的开花后15天和35天被激活。L192中糖转运蛋白基因的表达高于A260,尤其是在开花后35天。与脂肪酸生物合成相关的基因,如s、 和s在L192中的表达高于A260,尤其是在开花后35天。同时,与油体蛋白相关的基因在L192中的表达水平远低于A260。根据加权基因共表达网络分析结果,确定了与光合作用相关的ME.turquoise、与胚胎发育相关的ME.green和与脂质生物合成相关的ME.yellow等枢纽模块,它们协同调控种子发育和油脂积累。我们的研究结果有助于理解油菜种子油脂积累的机制,以提高种子油含量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/817f/9880416/41b84ee2d643/fpls-13-1082466-g001.jpg

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