综合形态生理学、转录组学和代谢组学数据揭示两个生态分化物种连翘的不同低温防御机制

IF 5.7 1区 农林科学 Q1 HORTICULTURE Horticultural Plant Journal Pub Date : 2025-01-11 DOI:10.1016/j.hpj.2024.11.004
Jian Cui, Rong Wu, Xiaoyang Sun, Yong Li
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引用次数: 0

摘要

长期的生态位分化将导致物种在不同环境中进化出不同的适应策略。本研究通过整合形态生理、转录组学和代谢组学数据,选择了两种连翘,即自然生长在冷温带的mandshurica连翘(Forsythia mandshurica, Fm)和生长在暖温带的连翘(Forsythia suspensa, Fs),揭示了它们不同的低温防御机制。转录组研究结果表明,Fm进化出一系列的适应性机制,旨在通过提高糖、氨基酸、激素、多胺和酚含量来提高细胞渗透电位,减轻花瓣褐变,从而帮助植物应对寒冷胁迫。代谢组学数据表明,Fm对抗寒性的增强依赖于其在植株中富含α-亚麻酸、亚油酸以及苯丙氨酸和色氨酸两种氨基酸,而花中肉桂酸和谷氨酰胺的含量较Fs低。高丰度的谷胱甘肽二硫和NADPH由谷胱甘肽过氧化物酶和NADPH调节,提高了Fm细胞抗氧化能力和还原氧化系统的稳定性;此外,Fm中丙酮酸、α-酮戊二酸和草酰乙酸水平的升高导致线粒体中ATP的产生显著增加。通过Ka/Ks和基因表达分析,鉴定出4个转录因子EVM0025036 (bHLH)、EVM0010639和EVM0007275 (AP2)以及EVM0025908 (bZIP)可能与Fm的高耐寒性有关。这些适应突出了遗传和生理过程之间复杂的相互作用,这些过程塑造了植物对其特定生态位的生存策略。
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Integrated morpho-physiological, transcriptomic and metabolomic data to reveal the differential chilling defense mechanisms of two ecologically diverged species of Forsythia
Long-term niche differentiation will lead to the evolution of diverse adaptive strategies for species in diverse environments. The present study selected two Forsythia species, Forsythia mandshurica (Fm)—which naturally occurs in a cold temperate zone and Forsythia suspensa (Fs)—which thrives in a warm temperate zone—to reveal their differential chilling defense mechanisms by integrating morpho-physiological, transcriptomic, and metabolomic data. Transcriptome results show that Fm has evolved in a series of adaptive mechanisms designed to help the plants to cope with chilling stress by enhancing sugar, amino acid, hormone, polyamine, and phenol content to improve cell osmotic potential and to mitigate petal browning. Metabolomic data suggested the increased chilling resistance of Fm relies on in the plant being rich in α-linolenic acid, linoleic acid, as well as two amino acids, Phe and Trp, and has low levels of cinnamic acid and gramine in flowers compared to Fs. A higher abundance of glutathione disulfide and NADPH regulated by glutathione peroxidases and NADPH improved the ability of the cellular antioxidant and reduction-oxidation system stability in Fm; Additionally, the elevated levels of pyruvate, α-ketoglutaric acid, and oxaloacetic acid in Fm contributed to a significantly enhanced ATP production in mitochondria. Through Ka/Ks and gene expression analysis, four transcription factors, EVM0025036 (bHLH), EVM0010639 and EVM0007275 (AP2), and EVM0025908 (bZIP) were identified that may contribute to the high cold tolerance of Fm. These adaptations highlight the intricate interplay between genetic and physiological processes that shape the survival strategies of plants in response to their specific ecological niches.
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来源期刊
Horticultural Plant Journal
Horticultural Plant Journal Environmental Science-Ecology
CiteScore
9.60
自引率
14.00%
发文量
293
审稿时长
33 weeks
期刊介绍: Horticultural Plant Journal (HPJ) is an OPEN ACCESS international journal. HPJ publishes research related to all horticultural plants, including fruits, vegetables, ornamental plants, tea plants, and medicinal plants, etc. The journal covers all aspects of horticultural crop sciences, including germplasm resources, genetics and breeding, tillage and cultivation, physiology and biochemistry, ecology, genomics, biotechnology, plant protection, postharvest processing, etc. Article types include Original research papers, Reviews, and Short communications.
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