首页> 外文期刊>日本作物學會紀事 >Physiolgical and Ecological Studies on Barnyard Grass (Echinocloa crus-galli Beauv. var. oryzicola Ohwi) : I. On the primary dormancy of the seed. (1) Relation of the seed covering to dormancy, and effects of temperature and oxygen on breaking dormancy.
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Physiolgical and Ecological Studies on Barnyard Grass (Echinocloa crus-galli Beauv. var. oryzicola Ohwi) : I. On the primary dormancy of the seed. (1) Relation of the seed covering to dormancy, and effects of temperature and oxygen on breaking dormancy.

机译:稗草(Echinocloa Crus-Galli Beauv)的物理和生态学研究。oryzicola Ohwi):I。在种子的主要休眠状态。 (1)将种子覆盖到休眠的关系,以及温度和氧气对破坏休眠的影响。

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Fundamental studies in eradication of barnyard grass (Echinocloa crus-galli Beauv. var. oryzicola Ohwi), an annoying weed in rice cultivation, have been done by the authors with physiological and ecological techniques. The present report deals with the primary dormancy in the seed, and the results of experiment are as follows; 1. It was elucidated that the primary dormancy was due to the presence of the pericarp and epidermis and not of the shell coat (Fig. 1). It was also suggested that the delayed germintaion of the dormant seed might not be associated with impermeability of the seed coat to water. 2. A high temperature treatment (40°C∼50°C) was found effective in overcoming the dormancy, and a wet condition at 5°C was also effective in accelerating the process of after-ripening, though it was ineffective at 20°and 30°C. Both non-and deep-dormant seeds showed no response to the alternated temperature. But the dormancy of partially dormant seeds were overcome by the treatment, the effectiveness being attributed to the low temperature as well as alternation of temperature (Fig. 2). Freezing treatment (-5°C) was effective in overcoming dormancy only in partially dormant seeds (Fig. 3). 3. In order to judge the effect of the storage at various temperatures in overcoming dormancy, both the freezing treatment and the storage treatment in submerged soils were carried out with the seeds that were considered to have been processed to a certain degree of dormancy through air-dry storage. The storage at 5°C promoted overcoming of dormancy, but storage at the optimum temperature for germination lead the seeds back to deeper dormancy (Fig. 4). 4. The storage in nitrogen gas (without oxygen gas) acclerated awakening of the seed from dormancy, and this acceleration was more remarkable in the partially dormant seeds, and awakening was faster at 30°C storage condition than at 5°C condition (Table 1).
机译:根除稗草(echinocloa crus-galli Beauv)的基本研究。奥西奇罗拉ohwi),在水稻种植中令人讨厌的杂草,是作者用生理和生态技术完成的。本报告涉及种子中的主要休眠,实验结果如下; 1.阐明了初级休眠是由于果皮和表皮的存在而不是壳涂层(图1)。还建议休眠种子的延迟造成的造成的延迟造成的造粒与水的不透明度相关。 2.发现高温处理(40°C〜50°C)有效地克服休眠,5℃的湿条件也有效地加速成熟的过程,但它在20°处无效和30°C。两种非休眠种子都没有对交替温度的反应。但是通过治疗克服了部分休眠种子的休眠,效果归因于低温以及温度的交替(图2)。冷冻处理(-5°C)仅在部分休眠种子中克服休眠(图3)。 3.为了判断储存在克服休眠中的各种温度的效果,渗透治疗和浸没土壤中的储存治疗都是通过被认为已经通过空气处理一定程度的休眠的种子进行的种子进行-dry存储。 5°C的储存促进越来越陡峭,但在最佳温度下储存的萌发使种子恢复到更深的休眠(图4)。 4.氮气(无氧气)的储存从休眠中加入种子的觉醒,并且在部分休眠种子中,这种加速度更显着,并且在30°C储存条件下唤醒比5°C条件更快(表1)。

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