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退化小穗和部分不育 1(DPS1)编码一个半胱氨酸 β-合酶结构域包含蛋白,该蛋白是水稻花药表皮和小穗发育所必需的。

DEGENERATED PANICLE AND PARTIAL STERILITY 1 (DPS1) encodes a cystathionine β-synthase domain containing protein required for anther cuticle and panicle development in rice.

机构信息

National Key Facility for Crop Gene Resources and Genetic Improvement, Institute of Crop Science, Chinese Academy of Agricultural Sciences, Beijing, 100081, China.

Shandong Rice Research Institute, Jinan, 250100, China.

出版信息

New Phytol. 2020 Jan;225(1):356-375. doi: 10.1111/nph.16133. Epub 2019 Sep 30.

Abstract

Degeneration of apical spikelets and reduced panicle fertility are common reasons for low seed-setting rate in rice (Oryza sativa). However, little is known about the underlying molecular mechanisms. Here, we report a novel degenerated panicle and partial sterility 1 (dps1) mutant that showed panicle apical degeneration and reduced fertility in middle spikelets. dps1 plants were characterized by small whitish anthers with altered cuticle morphology and absence of pollen grains. Amounts of cuticular wax and cutin were significantly reduced in dps1 anthers. Panicles of dps1 plants showed an accumulation of reactive oxygen species (ROS), lower antioxidant activity, and increased programmed cell death. Map-based cloning revealed that DPS1 encodes a mitochondrial-localized protein containing a cystathionine β-synthase domain that showed the highest expression in panicles and anthers. DPS1 physically interacted with mitochondrial thioredoxin proteins Trx1 and Trx20, and it participated in ROS scavenging. Global gene expression analysis in dps1 revealed that biological processes related to fatty acid metabolism and ROS homeostasis were significantly affected, and the expression of key genes involved in wax and cutin biosynthesis were downregulated. These results suggest that DPS1 plays a vital role in regulating ROS homeostasis, anther cuticle formation, and panicle development in rice.

摘要

颖花退化和小穗育性降低是水稻结实率低的常见原因。然而,其潜在的分子机制知之甚少。在这里,我们报道了一个新的穗顶退化和部分不育 1(dps1)突变体,该突变体表现出穗顶退化和中间小穗育性降低。dps1 植株的特征是花药小而呈白色,表皮形态改变,花粉粒缺失。dps1 花药中的角质层蜡和角质明显减少。dps1 植株的穗中积累了活性氧(ROS),抗氧化活性降低,程序性细胞死亡增加。基于图谱的克隆表明,DPS1 编码一种定位于线粒体的蛋白,含有半胱氨酸 β-合酶结构域,在穗和花药中表达量最高。DPS1 与线粒体硫氧还蛋白蛋白 Trx1 和 Trx20 发生物理相互作用,并参与 ROS 清除。在 dps1 中的全基因表达分析表明,与脂肪酸代谢和 ROS 动态平衡相关的生物学过程受到显著影响,参与蜡和角质生物合成的关键基因的表达下调。这些结果表明,DPS1 在调节 ROS 动态平衡、花药表皮形成和水稻穗发育中起着至关重要的作用。

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