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蝴蝶兰花粉粒中的糖和蔗糖转运蛋白(兰科)。

Sugars and sucrose transporters in pollinia of Phalaenopsis aphrodite (Orchidaceae).

机构信息

Academia Sinica Biotechnology Center in Southern Taiwan, Tainan, 711, Taiwan.

Agricultural Biotechnology Research Center, Academia Sinica, Taipei, 115, Taiwan.

出版信息

J Exp Bot. 2023 Apr 18;74(8):2556-2571. doi: 10.1093/jxb/erad028.

Abstract

The pollen grains of Phalaenopsis orchids are clumped tightly together, packed in pollen dispersal units called pollinia. In this study, the morphology, cytology, biochemistry, and sucrose transporters in pollinia of Phalaenopsis orchids were investigated. Histochemical detection was used to characterize the distribution of sugars and callose at the different development stages of pollinia. Ultra-performance liquid chromatography-high resolution-tandem mass spectrometry data indicated that P. aphrodite accumulated abundant saccharides such as sucrose, galactinol, myo-inositol, and glucose, and trace amounts of raffinose and trehalose in mature pollinia. We found that galactinol synthase (PAXXG304680) and trehalose-6-phosphate phosphatase (PAXXG016120) genes were preferentially expressed in mature pollinia. The P. aphrodite genome was identified as having 11 sucrose transporters (SUTs). Our qRT-PCR confirmed that two SUTs (PAXXG030250 and PAXXG195390) were preferentially expressed in the pollinia. Pollinia germinated in pollen germination media (PGM) supplemented with 10% sucrose showed increased callose production and enhanced pollinia germination, but there was no callose or germination in PGM without sucrose. We show that P. aphrodite accumulates high levels of sugars in mature pollinia, providing nutrients and enhanced SUT gene expression for pollinia germination and tube growth.

摘要

蝴蝶兰花粉粒紧密聚集在一起,被包装在称为花粉块的花粉散布单位中。本研究调查了蝴蝶兰花粉粒的形态、细胞学、生物化学和蔗糖转运蛋白。组织化学检测用于表征花粉粒不同发育阶段糖和胼胝质的分布。超高效液相色谱-高分辨串联质谱数据分析表明,成熟花粉粒中积累了丰富的蔗糖、半乳糖醇、肌醇和葡萄糖等糖类,以及微量的棉子糖和海藻糖。我们发现半乳糖醇合酶(PAXXG304680)和海藻糖-6-磷酸磷酸酶(PAXXG016120)基因在成熟花粉粒中优先表达。鉴定出 P. aphrodite 基因组具有 11 个蔗糖转运蛋白(SUTs)。我们的 qRT-PCR 证实两个 SUTs(PAXXG030250 和 PAXXG195390)在花粉粒中优先表达。在补充有 10%蔗糖的花粉萌发培养基(PGM)中,花粉粒萌发,胼胝质产量增加,花粉粒萌发增强,但在没有蔗糖的 PGM 中没有胼胝质或萌发。我们表明,P. aphrodite 在成熟花粉粒中积累了高水平的糖,为花粉粒萌发和管生长提供了营养和增强的 SUT 基因表达。

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