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水稻花药发育过程中自噬介导的植物激素代谢调控

Autophagy-mediated regulation of phytohormone metabolism during rice anther development.

作者信息

Kurusu Takamitsu, Koyano Tomoko, Kitahata Nobutaka, Kojima Mikiko, Hanamata Shigeru, Sakakibara Hitoshi, Kuchitsu Kazuyuki

机构信息

a Department of Applied Biological Science , Tokyo University of Science , Yamazaki, Noda, Chiba , Japan.

b Imaging Frontier Center , Tokyo University of Science , Yamazaki, Noda, Chiba , Japan.

出版信息

Plant Signal Behav. 2017 Sep 2;12(9):e1365211. doi: 10.1080/15592324.2017.1365211. Epub 2017 Sep 5.

Abstract

Autophagy has recently been shown to be required for postmeiotic anther development including anther dehiscence, programmed cell death-mediated degradation of the tapetum and pollen maturation in rice. Several phytohormones are known to play essential roles during male reproductive development including pollen maturation. However, the relationship between phytohormone metabolism and autophagy in plant reproductive development is unknown. We here comprehensively analyzed the effect of autophagy disruption on phytohormone contents in rice anthers at the flowering stage, and found that endogenous levels of active-forms of gibberellins (GAs) and cytokinin, trans-zeatin, were significantly lower in the autophagy-defective mutant, Osatg7-1, than in the wild type. Treatment with GA partially recovered maturation of the mutant pollens, but did not recover the limited anther dehiscence as well as sterility phenotype. These results suggest that autophagy affects metabolism and endogenous levels of GAs and cytokinin in rice anthers. Reduction in bioactive GAs in the autophagy-deficient mutant may partially explain the defects in pollen maturation of the autophagy-deficient mutant, but tapetal autophagy also plays other specific roles in fertilization.

摘要

最近研究表明,自噬对于减数分裂后花药发育是必需的,包括水稻花药开裂、绒毡层程序性细胞死亡介导的降解以及花粉成熟。已知几种植物激素在包括花粉成熟在内的雄性生殖发育过程中发挥重要作用。然而,植物生殖发育过程中植物激素代谢与自噬之间的关系尚不清楚。我们在此全面分析了自噬破坏对开花期水稻花药中植物激素含量的影响,发现自噬缺陷突变体Osatg7-1中赤霉素(GAs)和细胞分裂素反式玉米素的活性形式的内源水平显著低于野生型。用GA处理部分恢复了突变体花粉的成熟,但未恢复有限的花药开裂以及不育表型。这些结果表明自噬影响水稻花药中GAs和细胞分裂素的代谢及内源水平。自噬缺陷突变体中生物活性GAs的减少可能部分解释了自噬缺陷突变体花粉成熟的缺陷,但绒毡层自噬在受精过程中也发挥其他特定作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4daf/5640179/795158ec1778/kpsb-12-09-1365211-g001.jpg

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