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首页> 外文期刊>Journal of Agronomy and Crop Science/Zeitschrift fur acker-und pflanzenbau >Deficit Irrigation and Organic Compost Improve Growth and Yield of Quinoa and Pea
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Deficit Irrigation and Organic Compost Improve Growth and Yield of Quinoa and Pea

机译:亏缺灌溉和有机堆肥可提高藜麦和豌豆的生长和产量

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Supplying organic matter under deficit irrigation conditions could be a practical solution to compensate the negative effect of water stress. For this purpose, studies in pea as a legume and quinoa as a new drought-tolerant crop were conducted in the south of Morocco between October 2011 and March 2012. Three organic matter levels (0, 5 and 10tha(-1)) were supplied as compost amendment combined with 2 irrigation levels (50 and 100% of full irrigation). The results indicate that stomatal conductance and dry matter have been affected significantly (P<0.05) only by deficit irrigation, while harvested yield was affected significantly (P<0.05) by both deficit irrigation and organic manure. The highest seed yields (3.3tha(-1) for quinoa and 5.6tha(-1) for pea) were recorded under full irrigation and 10tha(-1) of compost. Results indicated that organic amendment of 10tha(-1) and 5tha(-1) significantly (P0.05) increased seed yield by 18 and 11% under stress conditions and by 13 and 3% under full irrigation for quinoa and by 24 and 11% under full irrigation and by 41 and 25% under water-deficit irrigation for pea. It can be concluded that organic amendment improved significantly yield and biomass production better under deficit irrigation conditions than under full irrigation. Combining deficit irrigation and organic amendment led to the maximization of crop water productivity
机译:在缺水灌溉条件下供应有机物可能是弥补水分胁迫的负面影响的实际解决方案。为此,2011年10月至2012年3月在摩洛哥南部以豌豆为豆科植物和藜麦为新的耐旱作物进行了研究。提供了三种有机物含量(0、5和10tha(-1))。作为堆肥改良剂,结合2种灌溉水平(完全灌溉的50%和100%)。结果表明,仅亏缺灌溉显着影响气孔导度和干物质(P <0.05),亏缺灌溉和有机肥均显着影响收获的产量(P <0.05)。在充分灌溉和10tha(-1)堆肥的条件下,记录的最高种子产量(藜麦为3.3tha(-1),豌豆为5.6tha(-1))。结果表明,在胁迫条件下,有机修饰10tha(-1)和5tha(-1)显着(P0.05)使藜麦的种子产量分别提高18%和11%,在完全灌溉条件下分别提高13%和3%和24和11豌豆在完全灌溉下的百分率分别为41%和25%。可以得出结论,在缺水灌溉条件下,有机改良剂显着提高了产量和生物量产量,而在完全灌溉条件下。亏缺灌溉和有机改良剂的结合导致了作物水分生产率的最大化

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