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长期轻度高温通过对花朵的局部影响导致有丝分裂后花粉败育。

Long-Term Mild Heat Causes Post-Mitotic Pollen Abortion Through a Local Effect on Flowers.

作者信息

Xu Jiemeng, Jansma Stuart Y, Wolters-Arts Mieke, de Groot Peter F M, Jansen Martijn J, Rieu Ivo

机构信息

Department of Plant Systems Physiology, Radboud Institute for Biological and Environmental Sciences, Radboud University, Nijmegen, Netherlands.

出版信息

Front Plant Sci. 2022 Jul 11;13:925754. doi: 10.3389/fpls.2022.925754. eCollection 2022.

Abstract

Crop reproductive success is significantly challenged by heatwaves, which are increasing in frequency and severity globally. Heat-induced male sterility is mainly due to aborted pollen development, but it is not clear whether this is through direct or systemic effects. Here, long-term mild heat (LTMH) treatment, mimicking a heatwave, was applied locally to tomato flowers or whole plants and followed up by cytological, transcriptomic, and biochemical analyses. By analyzing pollen viability, LTMH was shown to act directly on the flowers and not effects on other plant tissue. The meiosis to early microspore stage of pollen development was the most sensitive to LTMH and 3 days of exposure around this period was sufficient to significantly reduce pollen viability at the flower anthesis stage. Extensive cytological analysis showed that abnormalities in pollen development could first be observed after pollen mitosis I, while no deviations in tapetum development were observed. Transcriptomic and biochemical analyses suggested that pollen development suffered from tapetal ER stress and that there was a limited role for oxidative stress. Our results provide the first evidence that heat acts directly on flowers to induce pollen sterility, and that the molecular-physiological responses of developing anthers to the LTMH are different from those to severe heat shock.

摘要

作物的生殖成功受到热浪的显著挑战,全球范围内热浪的频率和强度都在增加。高温诱导的雄性不育主要是由于花粉发育中止,但尚不清楚这是通过直接作用还是系统性作用。在此,采用模拟热浪的长期温和高温(LTMH)处理,局部施用于番茄花朵或整株植物,随后进行细胞学、转录组学和生化分析。通过分析花粉活力,发现LTMH直接作用于花朵,而非对其他植物组织产生影响。花粉发育的减数分裂至早期小孢子阶段对LTMH最为敏感,在此期间暴露3天足以显著降低花朵开花期的花粉活力。广泛的细胞学分析表明,花粉发育异常最早可在花粉有丝分裂I后观察到,而绒毡层发育未观察到偏差。转录组学和生化分析表明,花粉发育受到绒毡层内质网应激的影响,氧化应激的作用有限。我们的结果首次证明,高温直接作用于花朵诱导花粉不育,并且发育中的花药对LTMH的分子生理反应不同于对严重热休克的反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec6f/9310381/fbda62a668a8/fpls-13-925754-g0001.jpg

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