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高温下花粉的发育和碳氮代谢物的作用。

Pollen development at high temperature and role of carbon and nitrogen metabolites.

机构信息

Department of Energy Plant Research Laboratory, Michigan State University, East Lansing, Michigan, 48824.

Plant Resilience Institute, Michigan State University, East Lansing, Michigan, 48824.

出版信息

Plant Cell Environ. 2019 Oct;42(10):2759-2775. doi: 10.1111/pce.13576. Epub 2019 Jun 19.

DOI:10.1111/pce.13576
PMID:31077385
Abstract

Fruit and seed crop production heavily relies on successful stigma pollination, pollen tube growth, and fertilization of female gametes. These processes depend on production of viable pollen grains, a process sensitive to high-temperature stress. Therefore, rising global temperatures threaten worldwide crop production. Close observation of plant development shows that high-temperature stress causes morpho-anatomical changes in male reproductive tissues that contribute to reproductive failure. These changes include early tapetum degradation, anther indehiscence, and deformity of pollen grains, all of which are contributing factors to pollen fertility. At the molecular level, reactive oxygen species (ROS) accumulate when plants are subjected to high temperatures. ROS is a signalling molecule that can be beneficial or detrimental for plant cells depending on its balance with the endogenous cellular antioxidant system. Many metabolites have been linked with ROS over the years acting as direct scavengers or molecular stabilizers that promote antioxidant enzyme activity. This review highlights recent advances in research on anther and pollen development and how these might explain the aberrations seen during high-temperature stress; recent work on the role of nitrogen and carbon metabolites in anther and pollen development is discussed including their potential role at high temperature.

摘要

水果和种子作物的生产严重依赖于成功的柱头授粉、花粉管生长和雌性配子的受精。这些过程依赖于有活力的花粉粒的产生,而这一过程对高温胁迫敏感。因此,全球气温上升威胁着世界范围内的作物生产。对植物发育的密切观察表明,高温胁迫会导致雄性生殖组织的形态解剖变化,从而导致生殖失败。这些变化包括早期绒毡层降解、花药不开裂和花粉粒变形,所有这些都是花粉育性的促成因素。在分子水平上,当植物受到高温时,会积累活性氧(ROS)。ROS 是一种信号分子,它对植物细胞有益还是有害取决于其与内源性细胞抗氧化系统的平衡。多年来,许多代谢物与 ROS 相关联,作为直接清除剂或分子稳定剂,促进抗氧化酶的活性。这篇综述强调了近年来在花药和花粉发育方面的研究进展,以及这些研究如何解释高温胁迫下观察到的异常现象;讨论了氮和碳代谢物在花药和花粉发育中的作用,包括它们在高温下的潜在作用。

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