Calcium dynamic in the developing microsporangiums of Chinese fir (Cunninghamia lanceolata)

IF 0.9 4区 生物学 Q4 PLANT SCIENCES Grana Pub Date : 2021-03-04 DOI:10.1080/00173134.2020.1776765
Renhua Zheng, Shun De Su, Hui Xiao, L. Fang, H. Tian
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Abstract

Abstract Calcium dynamics in the developing pollen of Chinese fir (Cunninghamia lanceolata) were investigated using an antimonate calcium precipitation method. After microspores were released from the tetrad, abundant calcium precipitates formed on the surface of microspores. A characteristic event during microspore development is the formation of a large vacuole which displaces the nucleus to the periphery and produces polarity, which initiates male gametophyte development. During the formation of the large vacuole, calcium precipitates moved into the large vacuole via mitochondria, suggesting that calcium abundance is related to vacuole biogenesis and formation. After microspore division, the large vacuole reorganised and calcium became concentrated in smaller vacuoles. The pollen wall of Chinese fir consists mostly of the intine, composed of polysaccharose, and the surface of the pollen grains is covered with a thin indefinite structure, the exine, which is composed of sporopollenin. The function of calcium during pollen development and the characteristics of the pollen wall of Chinese fir are discussed.
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杉木(Cunninghamia lanceolata)微孢子囊发育过程中的钙动态
摘要采用锑酸钙沉淀法研究了杉木花粉发育过程中的钙动态。小孢子从四分体中释放出来后,在小孢子表面形成了大量的钙沉淀。小孢子发育过程中的一个特征性事件是形成一个大液泡,将细胞核移到外围并产生极性,从而启动雄配子体的发育。在大液泡形成过程中,钙沉淀通过线粒体进入大液泡,表明钙丰度与液泡的生物发生和形成有关。小孢子分裂后,大液泡重组,钙集中在较小的液泡中。杉木花粉壁主要由多糖组成的内种皮组成,花粉粒表面覆盖着一层由孢子花粉蛋白组成的薄的不定结构外种皮。讨论了钙在杉木花粉发育过程中的作用及花粉壁的特征。
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来源期刊
Grana
Grana 生物-植物科学
CiteScore
2.10
自引率
11.10%
发文量
23
审稿时长
>12 weeks
期刊介绍: Grana is an international journal of palynology and aerobiology. It is published under the auspices of the Scandinavian Palynological Collegium (CPS) in affiliation with the International Association for Aerobiology (IAA). Grana publishes original papers, mainly on ontogony (morphology, and ultrastructure of pollen grains and spores of Eucaryota and their importance for plant taxonomy, ecology, phytogeography, paleobotany, etc.) and aerobiology. All submitted manuscripts are subject to initial appraisal by the Editors, and, if found suitable for further consideration, to peer review by independent, anonymous expert referees. All peer review is single blind and submission is online via ScholarOne Manuscripts.
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