Targeted Metabolites and Transcriptome Analysis Uncover the Putative Role of Auxin in Floral Sex Determination in Litchi chinensis Sonn.

Plants Pub Date : 2024-09-16 DOI:10.3390/plants13182592
Zhe Chen, Tingting Yan, Farhat Abbas, Mingchao Yang, Xianghe Wang, Hao Deng, Hongna Zhang, Fuchu Hu
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Abstract

Litchi exhibits a large number of flowers, many flowering batches, and an inconsistent ratio of male and female flowers, frequently leading to a low fruit-setting rate. Floral sexual differentiation is a crucial phase in perennial trees to ensure optimal fruit production. However, the mechanism behind floral differentiation remains unclear. The objective of the study was to identify the role of auxin in floral differentiation at the transcriptional level. The results showed that the ratio of female flowers treated with naphthalene acetic acid (NAA) was significantly lower than that of the control stage (M0/F0). The levels of endogenous auxin and auxin metabolites were measured in male and female flowers at different stages of development. It was found that the levels of IAA, IAA-Glu, IAA-Asp, and IAA-Ala were significantly higher in male flowers compared to female flowers. Next-generation sequencing and modeling were employed to perform an in-depth transcriptome analysis on all flower buds in litchi ‘Feizixiao’ cultivars (Litchi chinensis Sonn.). Plant hormones were found to exert a significant impact on the litchi flowering process and flower proliferation. Specifically, a majority of differentially expressed genes (DEGs) related to the auxin pathway were noticeably increased during male flower bud differentiation. The current findings will enhance our comprehension of the process and control mechanism of litchi floral sexual differentiation. It also offers a theoretical foundation for implementing strategies to regulate flowering and enhance fruit production in litchi cultivation.
靶向代谢物和转录组分析揭示了 Auxin 在荔枝花性别决定中的推定作用
荔枝花朵数量多,开花批次多,雌雄花比例不一致,经常导致坐果率低。花的有性分化是多年生树木确保最佳果实产量的关键阶段。然而,花性分化背后的机制仍不清楚。本研究的目的是在转录水平上确定辅助素在花分化中的作用。结果表明,用萘乙酸(NAA)处理的雌花比例明显低于对照阶段(M0/F0)。在雄花和雌花的不同发育阶段,测定了内源辅助素和辅助素代谢物的水平。结果发现,雄花中的IAA、IAA-Glu、IAA-Asp和IAA-Ala含量明显高于雌花。利用下一代测序和建模技术对荔枝品种 "飞紫霄 "的所有花蕾进行了深入的转录组分析。结果发现,植物激素对荔枝开花过程和花的增殖有显著影响。具体而言,在雄花花芽分化过程中,大多数与辅助素通路相关的差异表达基因(DEGs)明显增加。目前的研究结果将加深我们对荔枝花性分化过程和调控机制的理解。同时也为在荔枝栽培中实施花期调控策略和提高果实产量提供了理论依据。
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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