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การประเมินความแปรปรวนลักษณะทางสัณฐานวิทยา และความหลากหลายทางพันธุกรรมของข้าวนาที่สูง Thai Agricultural
Parinyaporn Muangpil; Supinya Khantipap; Sukarkarn Sriboon; Naras Sirigasorn; Ruangchai Juwattanasomran; Sivapong Naruban; Pornpan Pooprompan.
Ninety-three samples of high land rice, “Bue Po Lo” variety from Mae Hong Son province and one sample of “Eto” variety from Chiang Rai province were evaluated for genetic diversity at Maejo University during June to December of 2012. Treatments were arranged in a Randomized Complete Block design with 2 replications. Cluster analysis of quality characters using NTSYS software was performed to construct dendrogram. The results found that sheath color, internode color, awn character, stem pattern, flag leaf pattern, panicle base pattern, stem vigor, secondary branch pattern, panicle pattern, panicle exertion and threshing were significantly different. While, leaf pubescence, ligule pattern and stigma color were not significantly different. Cluster analyses of...
Tipo: PhysicalObject Palavras-chave: Highland rice; Genetic diversity; Morphological characters; Bue Po Lo; Eto; ข้าว; พันธุ์บือโป๊ะโละ; พันธุ์ข้าวอิโต 1; ความหลากหลายทางพันธุกรรม; ลักษณะทางสัณฐานวิทยา; นาที่สูง.
Ano: 2013 URL: http://anchan.lib.ku.ac.th/agnet/handle/001/5599
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รอยเท้าคาร์บอนจากระบบการปลูกข้าวที่สำคัญของประเทศไทย: ย้อนรอยการวัดการปลดปล่อยก๊าซมีเทนจากนาข้าวในประเทศไทย Thai Agricultural
Benjamas Rossopa; Chitnucha Buddhaboon; Kingkaew Kunket; Waraporn Wongboon; Apiwat Hantanapong; Samran Inthaleang; Noppadol Prayoonsuk.
Measurement of methane emission from rice production systems is a methodology for data collection of Carbon Footprint from rice production system. Four major rice production systems were defined for methane emission measurement in 2012, including upland rice, rainfed rice, irrigated rice with good agricultural practices (GAP) and irrigated rice with alternative wet and dry (AWD). Gas samples were taken one week interval and analyzed by Gas Chromatograph; GC-8A as soon as possible after collection. The research found that upland rice could absorb CH4 at the rate of 0.176 kg methane rai-1 season-1. Rainfed rice production system in Northeast Thailand emitted CH4 at the rate of 85.26 kg rai-1 season-1 under transplanting and 51.64 kg rai-1 season-1 under...
Tipo: PhysicalObject Palavras-chave: Carbon footprint; Emission; Rice production; Rice; Greenhouse gas; Irrigated rice; Rainfed rice; Upland rice; Methane emission; Good agricultural practices; CH4; Climatic factors; รอยเท้าคาร์บอน; การปลดปล่อยก๊าซมีเทน; การผลิตข้าว; ข้าว; ก๊าซเรือนกระจก; นาชลประทาน; นาน้ำฝน; นาที่สูง; ระบบนาข้าว; การจัดการแบบเกษตรดีที่เหมาะสม; การดูดซับก๊าซมีเทน; นาไร่; นาขั้นบันได; คาร์บอนไดออกไซด์; ก๊าซมีเทน.
Ano: 2013 URL: http://anchan.lib.ku.ac.th/agnet/handle/001/5714
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