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Agronomic and Ecological Evaluation on Growing Water-Saving and Drought-Resistant Rice (Oryza sativa L.) Through Drip Irrigation

机译:滴灌种植节水抗旱水稻的农业生态评价

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A field demonstration trial comparing the growth status, yield ability and water use efficiency of drought-tolerant rice ( Oryza sativa L.) varieties and normal paddy rice variety under drip irrigation and paddy irrigation was carried out for two years in Shanghai, China. Under drip irrigation, both inbred and hybrid water-saving and drought resistant rice (WDR) varieties showed better yield capacity than paddy rice varieties tested. WDR varieties under drip irrigation attained more than 95% of the yield level that is achieved in paddy field, while the paddy varieties under the same drip condition reached only about 75%.The methane gas emission was obviously decreased under drip irrigation condition, while the emission of other greenhouse gas like nitrous oxide or carbon dioxide was not observed significant difference between drip and paddy irrigation. It could be concluded that it is practicable to grow water saving and drought resistant rice through drip irrigation. Drip irrigation maintained a competitive grain yield and water productivity, and greatly reduced pollution risk to the environment. Considering the conservative amount of fertilizer application, less than the amount of fertilization in normal paddy field, the yield potential of rice could be improved by increasing the amount of fertilizer as top application in drip irrigation system.
机译:在上海进行了两年的田间试验,比较了耐旱水稻品种和普通水稻品种在滴灌和水稻灌溉下的生长状况,产量和水分利用效率。在滴灌条件下,自交和杂交节水耐旱水稻品种均表现出比试验水稻更好的产量。滴灌条件下WDR品种的产量达到稻田产量的95%以上,而相同滴灌条件下的水稻品种仅达到75%左右。滴灌和水稻灌溉之间没有观察到其他温室气体如一氧化二氮或二氧化碳的排放显着差异。可以得出结论,通过滴灌种植节水抗旱水稻是可行的。滴灌保持了谷物产量和水生产率的竞争力,并大大降低了对环境的污染风险。考虑到保守的施肥量,比正常水田的施肥量少,通过增加在滴灌系统中的最高施肥量,可以提高水稻的产量潜力。

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