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胚珠细胞壁组成是大麦粒大小的母体决定因素。

Ovule cell wall composition is a maternal determinant of grain size in barley.

机构信息

Waite Research Institute, School of Agriculture, Food and Wine, The University of Adelaide, Urrbrae, SA, 5064, Australia.

Australian Grain Technologies, 100 Byfield Street, Northam, WA, 6401, Australia.

出版信息

New Phytol. 2023 Mar;237(6):2136-2147. doi: 10.1111/nph.18714. Epub 2023 Jan 27.

Abstract

In cereal species, grain size is influenced by growth of the ovule integuments (seed coat), the spikelet hull (lemma and palea) and the filial endosperm. Whether a highly conserved ovule tissue, the nucellus, has any impact on grain size has remained unclear. Immunolabelling revealed that the barley nucellus comprises two distinct cell types that differ in terms of cell wall homogalacturonan (HG) accumulation. Transcriptional profiling of the nucellus identified two pectin methylesterase (PME) genes, OVULE PECTIN MODIFIER 1 (OPM1) and OPM2, which are expressed in the unfertilized ovule but absent from the seed. Ovules from an opm1 opm2 mutant and plants expressing an ovule-specific pectin methylesterase inhibitor (PMEI), exhibit reduced HG accumulation. This results in changes to ovule cell size and shape and ovules that are longer than wild-type (WT) controls. At grain maturity, this is manifested as significantly longer grain. These findings indicate that cell wall composition during ovule development acts to limit ovule and seed growth. The investigation of ovule PME and PMEI activity reveals an unexpected role of maternal tissues in controlling grain growth before fertilization, one that has been lacking from models exploring improvements in grain size.

摘要

在谷类作物中,籽粒大小受胚珠被膜(种皮)、小穗壳(内稃和外稃)和子叶内胚乳生长的影响。高度保守的胚珠组织珠心是否对籽粒大小有任何影响尚不清楚。免疫标记显示,大麦珠心由两种不同的细胞类型组成,它们在细胞壁同质半乳糖醛酸(HG)积累方面存在差异。对珠心的转录谱分析鉴定了两个果胶甲酯酶(PME)基因,OVULE PECTIN MODIFIER 1(OPM1)和 OPM2,它们在未受精的胚珠中表达,但在种子中不存在。opm1 opm2 突变体的胚珠和表达胚珠特异性果胶甲酯酶抑制剂(PMEI)的植物表现出 HG 积累减少。这导致珠心细胞大小和形状的变化,以及比野生型(WT)对照更长的胚珠。在谷物成熟时,这表现为明显更长的谷物。这些发现表明,胚珠发育过程中的细胞壁组成作用限制了胚珠和种子的生长。对珠心 PME 和 PMEI 活性的研究揭示了母本组织在受精前控制谷物生长的意外作用,这是探索改善谷物大小的模型中所缺乏的。

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