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Seed germination and seedling growth as affected by the coating materials of rice seed in the submerged soil

벼 종자의 코팅소재별 발아 및 유묘생육 특성

  • Published : 2011.06.20

Abstract

The study was performed to evaluate rice seed germination, seedling emergence and seedling establishment under different coating materials such as iron powder, silicate powder and silicate coverage after direct seeding. There were differences among coating materials as follows; 1. In seedling establishment there was the highest in untreated control> silicate-coated seeds and silicate coverage>iron-coated seeds. In case of untreated control this result due to laboratory experiment unlike field conditions where has been constraints in bird damages, seed dry under strong sunlight and buoyance after rainy and/or irrigation. 2. Thus, there was the highest in untreated control>silicate-coated seeds>silicate coverage>iron-coated seeds, respectively. 3. Total fresh weight(shoots and roots) of the seedling was also highest in untreated control>silicate-coated seeds and silicate coverage> iron-coated seeds.

코팅소재별 벼 종자의 발아 및 입묘 특성을 구명하기 위하여 무처리, 규산코팅, 철분코팅, 규산복토 처리에서 유묘의 입모율, 경시적 입묘양상의 변화, 초장, 엽수, 생체중의 특성을 조사결과를 요약하면 다음과 같다. 1. 입모율은 무처리 95% 규산코팅 및 규산복토 92%, 철분코팅 77%로 각가 나타나 무처리에서 가장 높게 나타났지만 일반적으로 각종 제한요인(새 피해, 건조, 부묘현상 등)이 많은 포장조건에서는 무처리 조건이 상반된 결과가 나타나고 있으며 규산코팅 또는 복토조건에서 철분코팅보다 높은 입묘율을 보였다. 2. 벼 유묘의 초장에서는 무처리 11.4cm 규산코팅 10.8cm, 규산복토 8.8cm, 철분코팅 6.9cm으로 각각 나타났다. 3. 유묘의 생체중은 지상부의 경우 무처리 50mg, 규산코팅 및 규산복토 40mg, 철분코팅 30mg이었으며, 지하부의 경우 규산코팅 및 규산복토 20mg, 무처리 및 철분코팅 10mg으로 각각 나타났다.

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