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花生 LEAFY COTYLEDON1 型基因参与调控胚胎发育和贮藏脂质的积累。

Peanut LEAFY COTYLEDON1-type genes participate in regulating the embryo development and the accumulation of storage lipids.

机构信息

Provincial Key Laboratory of Crop Genetic Improvement, Ecology and Physiology, Institute of Crop Germplasm Resources, Shandong Academy of Agricultural Sciences, Ji'nan, 250100, Shandong Province, China.

College of Life Science, Shandong Normal University, Ji'nan, 250014, Shandong Province, China.

出版信息

Plant Cell Rep. 2024 Apr 20;43(5):124. doi: 10.1007/s00299-024-03209-8.

Abstract

Two peanut LEC1-type genes exhibit partial functional redundancy. AhNFYB10 could complement almost all the defective phenotypes of lec1-2 in terms of embryonic morphology, while AhNF-YB1 could partially affect these phenotypes. LEAFY COTYLEDON1 (LEC1) is a member of the nuclear factor Y (NF-Y) family of transcription factors and has been identified as a key regulator of embryonic development. In the present study, two LEC1-type genes from Arachis hypogeae were identified and designated as AhNF-YB1 and AhNF-YB10; these genes belong to subgenome A and subgenome B, respectively. The functions of AhNF-YB1 and AhNF-YB10 were investigated by complementation analysis of their defective phenotypes of the Arabidopsis lec1-2 mutant and by ectopic expression in wild-type Arabidopsis. The results indicated that both AhNF-YB1 and AhNF-YB10 participate in regulating embryogenesis, embryo development, and reserve deposition in cotyledons and that they have partial functional redundancy. In contrast, AhNF-YB10 complemented almost all the defective phenotypes of lec1-2 in terms of embryonic morphology and hypocotyl length, while AhNF-YB1 had only a partial effect. In addition, 30-40% of the seeds of the AhNF-YB1 transformants exhibited a decreasing germination ratio and longevity. Therefore, appropriate spatiotemporal expression of these genes is necessary for embryo morphogenesis at the early development stage and is responsible for seed maturation at the mid-late development stage. On the other hand, overexpression of AhNF-YB1 or AhNF-YB10 at the middle to late stages of Arabidopsis seed development improved the weight, oil content, and fatty acid composition of the transgenic seeds. Moreover, the expression levels of several genes associated with fatty acid synthesis and embryogenesis were significantly greater in developing AhNF-YB10-overexpressing seeds than in control seeds. This study provides a theoretical basis for breeding oilseed crops with high yields and high oil content.

摘要

两个花生 LEC1 型基因表现出部分功能冗余。AhNFYB10 可以在胚胎形态方面几乎完全补偿 lec1-2 的所有缺陷表型,而 AhNF-YB1 可以部分影响这些表型。LEAFY COTYLEDON1 (LEC1) 是核因子 Y (NF-Y) 家族转录因子的成员,已被鉴定为胚胎发育的关键调节因子。本研究从花生中鉴定出两个 LEC1 型基因,分别命名为 AhNF-YB1 和 AhNF-YB10;这些基因分别属于亚基因组 A 和亚基因组 B。通过拟南芥 lec1-2 突变体缺陷表型的互补分析以及在野生型拟南芥中的异位表达,研究了 AhNF-YB1 和 AhNF-YB10 的功能。结果表明,AhNF-YB1 和 AhNF-YB10 均参与调控胚胎发生、胚胎发育和子叶中贮藏物质的沉积,且具有部分功能冗余性。相比之下,AhNF-YB10 在胚胎形态和下胚轴长度方面几乎完全补偿了 lec1-2 的所有缺陷表型,而 AhNF-YB1 仅有部分作用。此外,AhNF-YB1 转化体的 30-40%种子表现出发芽率和活力降低的趋势。因此,这些基因在早期胚胎发育阶段的适当时空表达对于胚胎形态发生是必要的,并且对于中后期的种子成熟负责。另一方面,在拟南芥种子发育的中后期过表达 AhNF-YB1 或 AhNF-YB10 可以提高转基因种子的重量、油含量和脂肪酸组成。此外,在发育的 AhNF-YB10 过表达种子中,与脂肪酸合成和胚胎发生相关的几个基因的表达水平明显高于对照种子。本研究为培育高产量和高油含量的油料作物提供了理论基础。

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