Unravel the molecular basis underlying inflorescence color variation in Macadamia based on widely targeted metabolomics.

IF 4.1 2区 生物学 Q1 PLANT SCIENCES Frontiers in Plant Science Pub Date : 2025-03-25 eCollection Date: 2025-01-01 DOI:10.3389/fpls.2025.1533187
Lidan Gong, Haiqing Zhang, Jing Ma, Zhiqiang Li, Tingyu Li, Chao Wu, Yang Li, Liang Tao
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Abstract

Macadamia integrifolia, a perennial evergreen crop valued for its nutritious nuts, also exhibits a diverse range of inflorescence colors that possess both ornamental and biological significance. Despite the economic importance of macadamia, the molecular mechanisms regulating flower coloration remain understudied. This study employed a combination of metabolomic and biochemical approaches to analyze metabolites present in inflorescences from 11 Macadamia cultivars, representing distinct color phenotypes. A total of 787 metabolites were identified through the use of ultra-high-performance liquid chromatography-tandem mass spectrometry (UPLC-MS/MS), the majority of which were phenolic acids, flavonoids, and flavonols. Principal component analysis and clustering yielded a classification of the samples into three major flower color groups. The differential metabolites were found to be enriched in pathways such as flavonoid, flavonol, and phenylpropanoid biosynthesis, which have been demonstrated to be key contributors to color variation. Moreover, weighted gene co-expression network analysis (WGCNA) identified metabolite modules that were strongly associated with specific flower colors. This revealed that key compounds, including kaempferol, quercetin derivatives, and anthocyanins, were the primary drivers of pigmentation. This study provides a comprehensive framework for understanding the genetic, biochemical, and environmental factors influencing macadamia flower color. These findings contribute to the theoretical understanding of macadamia reproductive biology and have practical implications for molecular breeding, ornamental enhancement, and optimizing pollinator attraction to improve crop yield and ecological sustainability.

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基于广泛靶向代谢组学揭示澳洲坚果花序颜色变化的分子基础。
澳洲坚果是一种多年生常绿作物,因其营养丰富的坚果而备受重视,它也展示了多种多样的花序颜色,具有观赏和生物意义。尽管夏威夷果具有重要的经济价值,但其调控花色的分子机制仍未得到充分研究。本研究采用代谢组学和生化相结合的方法分析了11个夏威夷果品种花序中的代谢物,这些品种具有不同的颜色表型。通过超高效液相色谱-串联质谱(UPLC-MS/MS)鉴定了787种代谢物,其中大部分为酚酸、类黄酮和类黄酮醇。主成分分析和聚类将样品分为三个主要的花色组。差异代谢物被发现在黄酮类、黄酮醇和苯丙类生物合成等途径中富集,这些途径已被证明是导致颜色变化的关键因素。此外,加权基因共表达网络分析(WGCNA)鉴定出与特定花色密切相关的代谢物模块。这表明,关键化合物,包括山奈酚,槲皮素衍生物和花青素,是色素沉着的主要驱动因素。该研究为了解影响夏威夷果花色的遗传、生化和环境因素提供了一个全面的框架。这些发现有助于对澳洲坚果生殖生物学的理论认识,并对分子育种、观赏改良和优化传粉者吸引以提高作物产量和生态可持续性具有实际意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Frontiers in Plant Science
Frontiers in Plant Science PLANT SCIENCES-
CiteScore
7.30
自引率
14.30%
发文量
4844
审稿时长
14 weeks
期刊介绍: In an ever changing world, plant science is of the utmost importance for securing the future well-being of humankind. Plants provide oxygen, food, feed, fibers, and building materials. In addition, they are a diverse source of industrial and pharmaceutical chemicals. Plants are centrally important to the health of ecosystems, and their understanding is critical for learning how to manage and maintain a sustainable biosphere. Plant science is extremely interdisciplinary, reaching from agricultural science to paleobotany, and molecular physiology to ecology. It uses the latest developments in computer science, optics, molecular biology and genomics to address challenges in model systems, agricultural crops, and ecosystems. Plant science research inquires into the form, function, development, diversity, reproduction, evolution and uses of both higher and lower plants and their interactions with other organisms throughout the biosphere. Frontiers in Plant Science welcomes outstanding contributions in any field of plant science from basic to applied research, from organismal to molecular studies, from single plant analysis to studies of populations and whole ecosystems, and from molecular to biophysical to computational approaches. Frontiers in Plant Science publishes articles on the most outstanding discoveries across a wide research spectrum of Plant Science. The mission of Frontiers in Plant Science is to bring all relevant Plant Science areas together on a single platform.
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