首页> 外文期刊>Experimental agriculture >WATER SAVING, WATER PRODUCTIVITY AND YIELD OUTPUTS OF FINE-GRAIN RICE CULTIVARS UNDER CONVENTIONAL AND WATER-SAVING RICE PRODUCTION SYSTEMS
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WATER SAVING, WATER PRODUCTIVITY AND YIELD OUTPUTS OF FINE-GRAIN RICE CULTIVARS UNDER CONVENTIONAL AND WATER-SAVING RICE PRODUCTION SYSTEMS

机译:常规和节水水稻生产系统下细粮水稻品种的节水,产水量和产量

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摘要

In this study, we compared the weed emergence, water input, water saving, water productivity, panicle sterility, yield outputs and economic returns of transplanting with alternate wetting and drying (TRAWD) and dry direct seeding (DSR) with transplanting under continuous flooding (TRCF) using three fine-grain rice cultivars: Super Basmati; Basmati 2000; and Shaheen Basmati. Higher weed infestation was recorded in DSR than in TRCF and TRAWD. Raising rice as TRAWD and DSR had considerable water savings but a lower grain yield than TRCF. High panicle sterility was primarily responsible for low grain yield in TRAWD and DSR systems. Nonetheless, water productivity was better in DSR and TRAWD than TRCF. Shaheen Basmati in the DSR system and Basmati 2000 in TRCF fetched the highest economic returns during 2008 and 2009, respectively. In conclusion, fine-grain rice cultivars can be grown in water-saving production systems (e.g. TRAWD and DSR); however, these water-saving production systems might incur a yield penalty.
机译:在这项研究中,我们比较了杂草的出现,水分输入,节水,水分生产率,穗不育性,产量和经济效益,以及在连续驱油条件下进行连续浸润和干燥的移栽(TRAWD)和干直接播种(DSR)( TRCF)使用三种细粒水稻品种:超级印度香米;巴斯马蒂2000;和沙欣·巴斯马蒂(Shaheen Basmati)。 DSR记录的杂草侵害程度高于TRCF和TRAWD。以TRAWD和DSR种植水稻可节省大量水,但谷物产量却低于TRCF。在TRAWD和DSR系统中,较高的穗部无菌性是造成谷物低产的主要原因。但是,DSR和TRAWD的水生产率比TRCF更好。 DSR系统中的Shaheen Basmati和TRCF中的Basmati 2000在2008年和2009年分别获得了最高的经济回报。总之,可以在节水的生产系统(例如TRAWD和DSR)中种植细粒水稻品种。但是,这些节水生产系统可能会导致产量下降。

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