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山奈酚-3-鼠李糖苷在类黄酮 3'-羟化酶 tt7 突变体中的过度积累会损害种皮外层的分化和种子的活力。

Kaempferol-3-rhamnoside overaccumulation in flavonoid 3'-hydroxylase tt7 mutants compromises seed coat outer integument differentiation and seed longevity.

机构信息

Instituto de Biología Molecular y Celular de Plantas (IBMCP), Universitat Politècnica de València (UPV)-Consejo Superior de Investigaciones Científicas (CSIC), Ciudad Politécnica de la Innovación (CPI), Ed. 8E, C/Ingeniero Fausto Elio s/n, 46022, Valencia, Spain.

Department of Biology, Algoma University, 1520 Queen Street East, Sault Ste. Marie, ON, P6A 2G4, Canada.

出版信息

New Phytol. 2023 May;238(4):1461-1478. doi: 10.1111/nph.18836. Epub 2023 Mar 12.

Abstract

Seeds slowly accumulate damage during storage, which ultimately results in germination failure. The seed coat protects the embryo from the external environment, and its composition is critical for seed longevity. Flavonols accumulate in the outer integument. The link between flavonol composition and outer integument development has not been explored. Genetic, molecular and ultrastructural assays on loss-of-function mutants of the flavonoid biosynthesis pathway were used to study the effect of altered flavonoid composition on seed coat development and seed longevity. Controlled deterioration assays indicate that loss of function of the flavonoid 3' hydroxylase gene TT7 dramatically affects seed longevity and seed coat development. Outer integument differentiation is compromised from 9 d after pollination in tt7 developing seeds, resulting in a defective suberin layer and incomplete degradation of seed coat starch. These distinctive phenotypes are not shared by other mutants showing abnormal flavonoid composition. Genetic analysis indicates that overaccumulation of kaempferol-3-rhamnoside is mainly responsible for the observed phenotypes. Expression profiling suggests that multiple cellular processes are altered in the tt7 mutant. Overaccumulation of kaempferol-3-rhamnoside in the seed coat compromises normal seed coat development. This observation positions TRANSPARENT TESTA 7 and the UGT78D1 glycosyltransferase, catalysing flavonol 3-O-rhamnosylation, as essential players in the modulation of seed longevity.

摘要

种子在储存过程中会缓慢积累损伤,最终导致发芽失败。种皮保护胚胎免受外部环境的影响,其成分对种子的寿命至关重要。类黄酮积累在外种皮中。类黄酮组成与外种皮发育之间的联系尚未被探索。利用类黄酮生物合成途径功能丧失突变体的遗传、分子和超微结构分析,研究了类黄酮组成变化对种皮发育和种子寿命的影响。控制劣化分析表明,类黄酮 3'羟化酶基因 TT7 的功能丧失显著影响种子寿命和种皮发育。在 tt7 发育中的种子中,授粉后 9 天,外种皮分化受到干扰,导致亚表皮层缺陷和种皮淀粉不完全降解。这些独特的表型与其他表现出异常类黄酮组成的突变体不同。遗传分析表明,山柰酚-3-鼠李糖苷的过度积累是导致观察到的表型的主要原因。表达谱分析表明,tt7 突变体中的多个细胞过程发生了改变。种皮中山柰酚-3-鼠李糖苷的过度积累会损害正常的种皮发育。这一观察结果将 TRANSPARENT TESTA 7 和 UGT78D1 糖基转移酶(催化类黄酮 3-O-鼠李糖苷化)定位为调节种子寿命的重要参与者。

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