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油棕花序梗伸长的激素与转录组学见解

Hormonal and Transcriptomic Insights into Inflorescence Stalk Elongation in Oil Palm.

作者信息

Shi Peng, Htwe Yin Min, Zhang Dapeng, Li Zhiying, Yu Qun, He Xiangman, Yang Jing, Wang Yong

机构信息

National Key Laboratory for Tropical Crop Breeding/Sanya Research Institute, Chinese Academy of Tropical Agricultural Sciences, Sanya 572000, China.

Hainan Key Laboratory of Tropical Oil Crops Biology/Coconut Research Institute, Chinese Academy of Tropical Agricultural Sciences, Wenchang 571339, China.

出版信息

Plants (Basel). 2025 Jun 4;14(11):1715. doi: 10.3390/plants14111715.

Abstract

Longer inflorescence stalks in oil palm enhance harvesting efficiency and reduce labor costs. However, the research on this topic is limited. This study aimed to investigate the differences in stalk lengths between male and female inflorescences in Tenera oil palm and to elucidate the underlying hormonal and transcriptomic mechanisms. The stalk lengths from inflorescences associated with the fourth to eighteenth leaf positions of Tenera oil palm trees were measured, and hormone profiling and RNA sequencing (RNA-seq) were conducted in immature (F4 and M5) and mature (F14 and M13) stalks from an individual tree. The male stalks were significantly longer than the female stalks since the thirteenth inflorescences and the differences increased with maturation. The elevated levels of indole-3-acetic acid (IAA) in both immature and mature male stalks suggested auxin's critical role in promoting stalk elongation. In M13, we identified the upregulated auxin influx carrier , Gibberellic Acid-Stimulated Arabidopsis 6 (), and SMALL AUXIN UP RNA () genes, indicating enhanced auxin accumulation, signaling, and response. Moreover, the auxin response factor () was upregulated, linking auxin transport to gene activation for cell elongation. Conversely, in F14, higher levels of abscisic acid (ABA) and the expression of ABA receptor and gibberellin 2-beta-dioxygenase 8 , which may inhibit stalk elongation, were identified. The results suggested that -mediated IAA accumulation activates and SAURs, promoting stalk elongation, with possibly acting as a downstream modulator. This study provides insights into the hormonal and genetic regulators of stalk elongation in oil palm and may guide breeding strategies for oil palm varieties with longer stalks of female inflorescences, thereby enhancing harvesting efficiency.

摘要

油棕榈较长的花序梗可提高收获效率并降低劳动力成本。然而,关于这一主题的研究有限。本研究旨在调查 Tenera 油棕榈雄花序和雌花序梗长度的差异,并阐明其潜在的激素和转录组学机制。测量了 Tenera 油棕榈树第四至十八片叶位相关花序的梗长度,并对一棵树上未成熟(F4 和 M5)和成熟(F14 和 M13)的梗进行了激素分析和 RNA 测序(RNA-seq)。自第十三花序起,雄花序梗显著长于雌花序梗,且差异随成熟度增加。未成熟和成熟雄花序梗中吲哚 - 3 - 乙酸(IAA)水平升高表明生长素在促进梗伸长中起关键作用。在 M13 中,我们鉴定出生长素流入载体、赤霉素刺激的拟南芥 6()和小生长素上调 RNA()基因上调,表明生长素积累、信号传导和反应增强。此外,生长素反应因子()上调,将生长素运输与细胞伸长的基因激活联系起来。相反,在 F14 中,鉴定出较高水平的脱落酸(ABA)以及可能抑制梗伸长的 ABA 受体和赤霉素 2 - β - 双加氧酶 8 的表达。结果表明,介导的 IAA 积累激活和 SAURs,促进梗伸长,可能作为下游调节剂。本研究为油棕榈梗伸长的激素和基因调控因子提供了见解,并可能指导培育具有较长雌花序梗的油棕榈品种的育种策略,从而提高收获效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb48/12158102/124c22722a60/plants-14-01715-g001.jpg

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