黄瓜果实腺毛和非腺毛的高效分离系统及其转录组学和代谢组学分析。

IF 1 Q3 BIOLOGY Bio-protocol Pub Date : 2025-01-05 DOI:10.21769/BioProtoc.5154
Lei Sun, Zhongxuan Feng, Fang Wang, Yu Qi, Menghang An, Lin Yang, Min Feng, Mingqi Wang, Huazhong Ren, Xingwang Liu
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引用次数: 0

摘要

黄瓜(Cucumis sativus)毛状体在抵抗外部生物和非生物胁迫中起着至关重要的作用。腺状毛是次生代谢物合成和分泌的重要部位,而非腺状毛对黄瓜的外观质量至关重要。然而,目前分离毛状体的方法面临效率低、准确性不足等挑战,限制了其在多组学测序研究中的适用性。本文介绍了一种有效的系统,用于从黄瓜果实中精确分离腺毛和非腺毛。该过程从山梨醇缓冲液或乙醇溶液的预冷和实验室用品的无rna处理开始,然后是灭菌和预冷。用预冷缓冲液和玻璃珠填充玻璃瓶后,将黄瓜子房放入玻璃瓶中,用打珠法收获毛状体。分离过程包括通过各种钢筛的顺序过滤和离心分离毛状体。从这种方法获得的分离毛状体非常适合于随后的多组学测序分析。该方案在分离腺毛和非腺毛方面实现了高精度,显著提高了分离和样品收集过程的效率。这一进展不仅解决了现有的局限性,而且促进了旨在探索黄瓜毛状体遗传和生化多样性的综合研究,从而为更广泛的农业和生物学研究应用开辟了道路。•在黄瓜开花当天使用黄瓜果实。•预冷和无rna处理确保供应质量和纯度。•有效分离腺毛和非腺毛。•毛发样品适用于多组学测序分析。
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A Highly Efficient System for Separating Glandular and Non-glandular Trichome of Cucumber Fruit for Transcriptomic and Metabolomic Analysis.

Cucumber (Cucumis sativus) trichomes play a critical role in resisting external biological and abiotic stresses. Glandular trichomes are particularly significant as they serve as sites for the synthesis and secretion of secondary metabolites, while non-glandular trichomes are pivotal for determining the appearance quality of cucumbers. However, current methods for separating trichomes encounter challenges such as low efficiency and insufficient accuracy, limiting their applicability in multi-omics sequencing studies. This protocol introduces an efficient system designed for the precise separation of glandular and non-glandular trichomes from cucumber fruit. The process begins with the pre-cooling of sorbitol buffer or ethanol solution and the RNA-free treatment of laboratory supplies, followed by sterilization and pre-cooling. After filling glass bottles with pre-cooling buffer and glass beads, cucumber ovaries are then placed in the glass bottles and the trichome is harvested by bead-beating method. The separation process involves sequential filtration through various steel sieves and centrifugation to separate trichomes. The separated trichomes obtained from this method are well-suited for subsequent multi-omics sequencing analyses. This protocol achieved high precision in separating glandular and non-glandular trichomes, significantly enhancing the efficiency of separation and sample collection processes. This advancement not only addresses existing limitations but also facilitates comprehensive studies aimed at exploring the genetic and biochemical diversity present within cucumber trichomes, thereby opening avenues for broader agricultural and biological research applications. Key features • Use cucumber fruits on the day of flowering. • Pre-cooling and RNA-free treatment ensure supply quality and purity. • Efficiently separate glandular and non-glandular trichomes. • Trichome samples are suitable for multi-omics sequencing analysis.

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