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玉米胚乳基部不完全填充:淀粉合成和细胞活力发育的时间。

Incomplete filling in the basal region of maize endosperm: timing of development of starch synthesis and cell vitality.

机构信息

State Key Laboratory of Maize Bio-breeding, College of Agronomy and Biotechnology, China Agricultural University, Beijing, 100193, China.

Ministry of Education Key Laboratory of Crop Physiology, Ecology and Genetic Breeding, Agronomy College, Jiangxi Agricultural University, Jiangxi, 330045, China.

出版信息

Plant J. 2024 Nov;120(3):1142-1158. doi: 10.1111/tpj.17043. Epub 2024 Sep 30.

Abstract

Starch synthesis in maize endosperm adheres to the basipetal sequence from the apex downwards. However, the mechanism underlying nonuniformity among regions of the endosperm in starch accumulation and its significance is poorly understood. Here, we examined the spatiotemporal transcriptomes and starch accumulation dynamics in apical (AE), middle (ME), and basal (BE) regions of endosperm throughout the filling stage. Results demonstrated that the BE had lower levels of gene transcripts and enzymes facilitating starch synthesis, corresponding to incomplete starch storage at maturity, compared with AE and ME. Contrarily, the BE showed abundant gene expression for genetic processing and slow progress in physiological development (quantified by an index calculated from the expression values of development progress marker genes), revealing a sustained cell vitality of the BE. Further analysis demonstrated a significant parabolic correlation between starch synthesis and physiological development. An in-depth examination showed that the BE had more active signaling pathways of IAA and ABA than the AE throughout the filling stage, while ethylene showed the opposite pattern. Besides, SNF1-related protein kinase1 (SnRK1) activity, a regulator for starch synthesis modulated by trehalose-6-phosphate (T6P) signaling, was kept at a lower level in the BE than the AE and ME, corresponding to the distinct gene expression in the T6P pathway in starch synthesis regulation. Collectively, the findings support an improved understanding of the timing of starch synthesis and cell vitality in regions of the endosperm during development, and potential regulation from hormone signaling and T6P/SnRK1 signaling.

摘要

玉米胚乳中的淀粉合成遵循从顶端到底部的向基顺序。然而,胚乳中淀粉积累区域不均匀的机制及其意义尚不清楚。在这里,我们在整个灌浆阶段检查了胚乳顶端(AE)、中部(ME)和基部(BE)区域的时空转录组和淀粉积累动态。结果表明,与 AE 和 ME 相比,BE 中促进淀粉合成的基因转录本和酶水平较低,这对应于成熟时淀粉储存不完全。相反,BE 表现出丰富的遗传加工基因表达和生理发育进展缓慢(通过从发育进展标记基因的表达值计算得出的指数来量化),这揭示了 BE 具有持续的细胞活力。进一步的分析表明,淀粉合成与生理发育之间存在显著的抛物线相关性。深入研究表明,在整个灌浆阶段,BE 中生长素(IAA)和脱落酸(ABA)的信号通路比 AE 更为活跃,而乙烯则呈现相反的模式。此外,作为受海藻糖-6-磷酸(T6P)信号调节的淀粉合成调节剂的 SNF1 相关蛋白激酶 1(SnRK1)活性在 BE 中的水平低于 AE 和 ME,这与 T6P 途径中淀粉合成调节的特定基因表达相对应。总的来说,这些发现支持了对发育过程中胚乳区域淀粉合成和细胞活力时机的更好理解,以及激素信号和 T6P/SnRK1 信号的潜在调节。

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