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转录组分析揭示脱落酸在[植物名称]叶芽内休眠维持中的积极作用。 (你提供的原文中植物名称缺失)

Transcriptomic Analysis Reveals the Positive Role of Abscisic Acid in Endodormancy Maintenance of Leaf Buds of .

作者信息

Wu Kunjing, Duan Xiaojing, Zhu Zhonglong, Sang Ziyang, Zhang Yutong, Li Haiying, Jia Zhongkui, Ma Luyi

机构信息

Beijing Advanced Innovation Center for Tree Breeding by Molecular Design, College of Biological Sciences and Technology, Beijing Forestry University, Beijing, China.

Zhejiang Institute of Subtropical Crops, Zhejiang Academy of Agricultural Sciences, Wenzhou, China.

出版信息

Front Plant Sci. 2021 Nov 11;12:742504. doi: 10.3389/fpls.2021.742504. eCollection 2021.

Abstract

(Magnoliaceae) is a deciduous landscape species, known for its ornamental value with uniquely shaped and coloured tepals. The species has been introduced to many cities in south China, but low temperatures limit the expansion of this species in cold regions. Bud dormancy is critical for plants to survive in cold environments during the winter. In this study, we performed transcriptomic analysis of leaf buds using RNA sequencing and compared their gene expression during endodormancy, endodormancy release, and ecodormancy. A total of 187,406 unigenes were generated with an average length of 621.82 bp (N50 = 895 bp). In the transcriptomic analysis, differentially expressed genes involved in metabolism and signal transduction of hormones especially abscisic acid (ABA) were substantially annotated during dormancy transition. Our results showed that ABA at a concentration of 100 μM promoted dormancy maintenance in buds of . Furthermore, the expression of genes related to ABA biosynthesis, catabolism, and signalling pathway was analysed by qPCR. We found that the expression of was consistent with ABA content and the dormancy transition phase, indicating that played a role in endodormancy release. In addition, the upregulation of during dormancy release highlighted the enhancement of cold resistance. This study provides new insights into the cold tolerance of in the winter from bud dormancy based on RNA-sequencing and offers fundamental data for further research on breeding improvement of .

摘要

木兰科植物是一种落叶景观树种,以其具有独特形状和颜色的花被片的观赏价值而闻名。该物种已被引入中国南方的许多城市,但低温限制了其在寒冷地区的扩展。芽休眠对于植物在冬季寒冷环境中生存至关重要。在本研究中,我们使用RNA测序对叶芽进行了转录组分析,并比较了它们在深休眠、休眠解除和生态休眠期间的基因表达。共产生了187,406个单基因,平均长度为621.82 bp(N50 = 895 bp)。在转录组分析中,在休眠转变期间大量注释了参与激素尤其是脱落酸(ABA)代谢和信号转导的差异表达基因。我们的结果表明,浓度为100 μM的ABA促进了[具体植物名称]芽的休眠维持。此外,通过qPCR分析了与ABA生物合成、分解代谢和信号通路相关的基因表达。我们发现[具体基因名称]的表达与ABA含量和休眠转变阶段一致,表明[具体基因名称]在休眠解除中起作用。此外,休眠解除期间[具体基因名称]的上调突出了抗寒性的增强。本研究基于RNA测序为[具体植物名称]冬季芽休眠的耐寒性提供了新见解,并为[具体植物名称]育种改良的进一步研究提供了基础数据。

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