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在雌雄同体的树木中华楠花药发育过程中的碳水化合物代谢和基因调控。

Carbohydrate metabolism and gene regulation during anther development in an androdioecious tree, Tapiscia sinensis.

机构信息

Key Laboratory of Resource Biology and Biotechnology in Western China, Ministry of Education, School of Life Sciences, Northwest University, 229 Taibai Bei Road, Xi'an 710069, China.

School of Life Sciences, Luoyang Normal University, 6 Jiqing Road, Luoyang 471934, China.

出版信息

Ann Bot. 2017 Nov 28;120(6):967-977. doi: 10.1093/aob/mcx094.

Abstract

BACKGROUND AND AIMS

Tapiscia sinensis (Tapisciaceae) is a functional androdioecious species with both male and hermaphroditic individuals, and fruit ripening overlaps with flowering in the hermaphroditic individuals. Pollen vitality was lower in the hermaphrodites than in the males. Anther development requires nutrients, and carbohydrates are the basic nutrients; abnormal carbohydrate metabolism will result in pollen abortion. The aim of this research was to gain insight into the relationship between carbohydrate metabolism and the weakening of the male function of hermaphroditic flowers in T. sinensis.

METHODS

Observation of morphology and microscopic and sub-microscopic structures was carried out. Sugar measurements and quantitative real-time PCR analysis were performed for the genes related to sugar metabolism and transport in the development of anthers in both males and hermaphrodites. The expression pattern of Cell wall invertase 2 (CWI2) and Sucrose transporter 2 (ST2) was explored by in situ hybridization.

KEY RESULTS

At the vacuolate microspore (VM) stage, polysaccharides accumulated in the connective tissue of the hermaphroditic anthers, and the levels of total soluble sugar, sucrose and starch in the hermaphroditic anthers were significantly lower than in the male anthers. Most of the hermaphroditic pollen grains were empty, with degradation of the cytoplasm, absence of an intine layer and defective exines. There was a significant differential expression between male and hermaphroditic flowers of several key genes that are involved in sugar metabolism, transport and intine development. CWI2 and ST2 were expressed in the tapetum and microspores. The expression of CWI2 was significantly lower in hermaphrodites than in the males.

CONCLUSIONS

Fruit ripening overlaps with flowering, leading to a severe reproductive burden on the hermaphroditic individuals. The hermaphroditic flowers regulating carbohydrate metabolism and transport to affect resources are biased towards the female function to ensure reproduction, causing a deficiency in resources for the development of pollen; thus, the pollen viability is lower. This makes it easier for males to invade the hermaphroditic population and form a functional androdioecious breeding system.

摘要

背景与目的

中华青荚叶(青荚叶科)是一种功能性雌雄同株植物,既有雄性个体也有雌性个体,且果实成熟与雌性个体的开花时间重叠。与雄性个体相比,雌性个体的花粉活力较低。花粉的发育需要营养物质,而碳水化合物是基本的营养物质;碳水化合物代谢异常会导致花粉败育。本研究旨在深入了解碳水化合物代谢与中华青荚叶雌性花雄性功能减弱之间的关系。

方法

进行形态学和微观及亚微观结构观察。对雄性和雌性个体中花药发育过程中与糖代谢和运输相关的基因进行糖含量测定和定量实时 PCR 分析。通过原位杂交探讨细胞壁转化酶 2(CWI2)和蔗糖转运蛋白 2(ST2)的表达模式。

主要结果

在液泡小孢子(VM)阶段,多糖在雌性花药的连接组织中积累,且雌性花药中的总可溶性糖、蔗糖和淀粉水平明显低于雄性花药。大多数雌性花粉粒为空粒,细胞质降解,无内稃层,外壁有缺陷。几个参与糖代谢、运输和内稃发育的关键基因在雄性和雌性花之间存在显著的差异表达。CWI2 和 ST2 在绒毡层和小孢子中表达。CWI2 在雌性中的表达明显低于雄性。

结论

果实成熟与开花时间重叠,导致雌性个体的生殖负担过重。雌性花调节碳水化合物代谢和运输以影响资源的分配偏向于雌性功能以确保繁殖,导致花粉发育的资源不足;因此,花粉活力较低。这使得雄性更容易入侵雌性种群,并形成功能性雌雄同株的繁殖系统。

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