Temporal and spatial characteristics of male cone development in Metasequoia glyptostroboides Hu et Cheng |
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Authors: | Biao Jin Liang Tang Yan Lu Di Wang Min Zhang Jiuxia Ma |
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Affiliation: | 1.College of Horticulture and Plant Protection; Yangzhou University; Yangzhou, Jiangsu, P.R. China;2.The Arnold Arboretum; Harvard University; Boston, MA USA;3.School of Life Sciences and Biotechnology; Shanghai Jiao Tong University; Shanghai, P.R. China |
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Abstract: | Metasequoia glyptostroboides, a famous relic species of conifer that survived in China, has been successfully planted in large numbers across the world. However, limited information on male cone development in the species is available. In this study, we observed the morphological and anatomical changes that occur during male cone development in M. glyptostroboides using semi-thin sections and scanning electron microscopy. The male cones were borne oppositely on one-year-old twigs that were mainly located around the outer and sunlit parts of crown. Male cones were initiated from early September and shed pollen in the following February. Each cone consisted of spirally arranged microsporophylls subtended by decussate sterile scales, and each microsporophyll commonly consisted of three microsporangia and a phylloclade. The microsporangial wall was composed of an epidermis, endothecium, and tapetum. In mid-February, the endothecium and tapetum layers disintegrated, and in the epidermal layer the cell walls were thickened with inner protrusions. Subsequently, dehiscence of the microsporangia occurred through rupturing of the microsporangial wall along the dehiscence line. These results suggest that the structure, morphology, architecture and arrangement of male cones of M. glyptostroboides are mainly associated with the production, protection and dispersal of pollen for optimization of wind pollination. |
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Keywords: | male cone Metasequoia glyptostroboides pollen cone morphological structure development microsporangium wall microsporangium dehiscence pollen release anatomical structure microstrobili |
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