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对B3转录因子的全基因组分析表明,RcABI3/VP1亚家族在蓖麻种子发育和油脂储存中起重要作用。

Genome-wide analysis of the B3 transcription factors reveals that RcABI3/VP1 subfamily plays important roles in seed development and oil storage in castor bean ().

作者信息

Wang Wen-Bo, Ao Tao, Zhang Yan-Yu, Wu Di, Xu Wei, Han Bing, Liu Ai-Zhong

机构信息

Sino-Danish College, University of Chinese Academy of Sciences, Beijing, 100049, China.

Kunming Institute of Botany, Chinese Academy of Sciences, 132 Lanhei Road, Kunming, 650204, China.

出版信息

Plant Divers. 2021 Jul 2;44(2):201-212. doi: 10.1016/j.pld.2021.06.008. eCollection 2022 Mar.

Abstract

The B3 transcription factors (TFs) in plants play vital roles in numerous biological processes. Although B3 genes have been broadly identified in many plants, little is known about their potential functions in mediating seed development and material accumulation. Castor bean () is a non-edible oilseed crop considered an ideal model system for seed biology research. Here, we identified a total of 61 B3 genes in the castor bean genome, which can be classified into five subfamilies, including ABI3/VP1, HSI, ARF, RAV and REM. The expression profiles revealed that / subfamily genes are significantly up-regulated in the middle and later stages of seed development, indicating that these genes may be associated with the accumulation of storage oils. Furthermore, through yeast one-hybrid and tobacco transient expression assays, we detected that ABI3/VP1 subfamily member RcLEC2 directly regulates the transcription of , which encodes an oil-body structural protein. This finding suggests that RcLEC2, as a seed-specific TF, may be involved in the regulation of storage materials accumulation. This study provides novel insights into the potential roles and molecular basis of B3 family proteins in seed development and material accumulation.

摘要

植物中的B3转录因子在众多生物学过程中发挥着至关重要的作用。尽管B3基因已在许多植物中被广泛鉴定,但关于它们在介导种子发育和物质积累中的潜在功能却知之甚少。蓖麻是一种不可食用的油料作物,被认为是种子生物学研究的理想模式系统。在此,我们在蓖麻基因组中总共鉴定出61个B3基因,它们可分为五个亚家族,包括ABI3/VP1、HSI、ARF、RAV和REM。表达谱显示,/亚家族基因在种子发育的中后期显著上调,表明这些基因可能与贮藏油的积累有关。此外,通过酵母单杂交和烟草瞬时表达试验,我们检测到ABI3/VP1亚家族成员RcLEC2直接调控编码油体结构蛋白的的转录。这一发现表明,RcLEC2作为一种种子特异性转录因子,可能参与贮藏物质积累的调控。本研究为B3家族蛋白在种子发育和物质积累中的潜在作用及分子基础提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/facd/9043308/847750122dea/gr1.jpg

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