Majidea zangueberica Kirk ex Oliv.、Markhamia lutea (Benth.) K. Schum.、Tabebuia aurea (Silva Manso) Benth. and Hook. f. ex S. Moore、Santalum album L.和 Morinda citrifolia L.种子的休眠打破和吸水机制研究。
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Nevertheless, the factors triggering dormancy release, along with varying interpretations of the specialized seed coat structure known as the “water gap”, remain unresolved for seeds such as Maijidea zangueberica Kirk ex Oliv., Markhamia lutea (Benth) K. Schum., Tabebuia aurea (Silva Manso) Benth. and Hook.f.ex S. Moore , Santalum album L ., and Morinda citrifolia L . Materials and Materials and Methods: Methods: Seed moisture content was measured using a high constant temperature oven dry method followed by dormancy assessment and identification of water gap by SEM analysis. Results:Results: The storage life of Tabebuia aurea seeds was extended, substantiated by a notably low moisture content of 4.22%, here by SEM analysis the lens regions adopted circular or lid-like shapes, maintaining structural integrity in the hilum and micropyle regions whereas in Majidea zangueberica , where a blister-like aspect resembling. Conclusion:Conclusion: This research has provided details on the period in which seeds with impermeable seed coverings and low moisture content can be stored. These can be seen to time their germination to best coincide with the growing season.","PeriodicalId":413740,"journal":{"name":"Asian Journal of Biological and Life sciences","volume":" 19","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-03-23","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Investigation of Dormancy Breaking and Water Uptake Mechanisms in Majidea zangueberica Kirk ex Oliv., Markhamia lutea (Benth.) K. Schum., Tabebuia aurea (Silva Manso) Benth. and Hook. f. ex S. Moore, Santalum album L., and Morinda citrifolia L. seeds.\",\"authors\":\"Preethi Jenifer Praticia S, Kanchana Kanchana M\",\"doi\":\"10.5530/ajbls.2023.12.71\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"Aim:Aim: The primary aim of this research is to analyze the conditions that prompt dormancy release and identify the primary water gap location during the dormancy-breaking process. By subjecting the seeds to various dormancy-breaking techniques, we observed that water ingress occurred exclusively through the lens due to the dislodgement of two sclereid layers. Background: Background: Water uptake is a vital process for seed germination. However, in these seeds, a water-impermeable seed coat, while beneficial for adapting to the environment, hinders germination without appropriate treatment. Nevertheless, the factors triggering dormancy release, along with varying interpretations of the specialized seed coat structure known as the “water gap”, remain unresolved for seeds such as Maijidea zangueberica Kirk ex Oliv., Markhamia lutea (Benth) K. Schum., Tabebuia aurea (Silva Manso) Benth. and Hook.f.ex S. Moore , Santalum album L ., and Morinda citrifolia L . Materials and Materials and Methods: Methods: Seed moisture content was measured using a high constant temperature oven dry method followed by dormancy assessment and identification of water gap by SEM analysis. Results:Results: The storage life of Tabebuia aurea seeds was extended, substantiated by a notably low moisture content of 4.22%, here by SEM analysis the lens regions adopted circular or lid-like shapes, maintaining structural integrity in the hilum and micropyle regions whereas in Majidea zangueberica , where a blister-like aspect resembling. Conclusion:Conclusion: This research has provided details on the period in which seeds with impermeable seed coverings and low moisture content can be stored. 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引用次数: 0
摘要
目的:本研究的主要目的是分析促使休眠解除的条件,并确定休眠打破过程中的主要水隙位置。通过对种子进行各种休眠破除技术处理,我们观察到,由于两层硬膜脱落,水分只能通过透镜进入。背景介绍背景:吸水是种子萌发的重要过程。然而,在这些种子中,不透水的种皮虽然有利于适应环境,但如果不进行适当处理,就会阻碍萌发。然而,对于 Maijidea zangueberica Kirk ex Oliv.、Markhamia lutea (Benth) K. Schum.、Tabebuia aurea (Silva Manso) Benth. and Hook.f.ex S. Moore、Santalum album L .材料、材料和方法:方法:采用高温恒温烘箱干燥法测量种子含水量,然后进行休眠评估,并通过扫描电镜分析确定水隙。结果:结果:通过扫描电镜分析,透镜区呈圆形或盖子状,在种脐区和小心皮区保持了结构的完整性,而在 Majidea zangueberica 中,透镜区呈水泡状。结论:结论:这项研究详细说明了具有不透气种皮和低含水量的种子的贮藏期。可以看出,这些种子的发芽时间与生长季节最为吻合。
Investigation of Dormancy Breaking and Water Uptake Mechanisms in Majidea zangueberica Kirk ex Oliv., Markhamia lutea (Benth.) K. Schum., Tabebuia aurea (Silva Manso) Benth. and Hook. f. ex S. Moore, Santalum album L., and Morinda citrifolia L. seeds.
Aim:Aim: The primary aim of this research is to analyze the conditions that prompt dormancy release and identify the primary water gap location during the dormancy-breaking process. By subjecting the seeds to various dormancy-breaking techniques, we observed that water ingress occurred exclusively through the lens due to the dislodgement of two sclereid layers. Background: Background: Water uptake is a vital process for seed germination. However, in these seeds, a water-impermeable seed coat, while beneficial for adapting to the environment, hinders germination without appropriate treatment. Nevertheless, the factors triggering dormancy release, along with varying interpretations of the specialized seed coat structure known as the “water gap”, remain unresolved for seeds such as Maijidea zangueberica Kirk ex Oliv., Markhamia lutea (Benth) K. Schum., Tabebuia aurea (Silva Manso) Benth. and Hook.f.ex S. Moore , Santalum album L ., and Morinda citrifolia L . Materials and Materials and Methods: Methods: Seed moisture content was measured using a high constant temperature oven dry method followed by dormancy assessment and identification of water gap by SEM analysis. Results:Results: The storage life of Tabebuia aurea seeds was extended, substantiated by a notably low moisture content of 4.22%, here by SEM analysis the lens regions adopted circular or lid-like shapes, maintaining structural integrity in the hilum and micropyle regions whereas in Majidea zangueberica , where a blister-like aspect resembling. Conclusion:Conclusion: This research has provided details on the period in which seeds with impermeable seed coverings and low moisture content can be stored. These can be seen to time their germination to best coincide with the growing season.