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Radiation and nitrogen use efficiencies of C3 winter cereals to nitrogen split application

机译:C 3 冬季谷物对氮分裂的辐射和氮利用效率

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Three field experiments were conducted at the Experimental Farm, Bahauddin Zakariya University, Multan, Pakistan during the winter season 2010-11 to study the response of 3 winter cereal crops viz., wheat (Triticum aestivum L.), oat (Avena sativa L.) and barley (Hordeum vulgare L.) to nitrogen split application in terms of growth, final yield, radiation and nitrogen use efficiencies (R&NUEs). There were 2 variables; 3 cultivars each of wheat (Sahar-2006, Lasani-2008 and AARI-2010), oat (CK-1, F-411 and Ravi) and barley (Jao-87, Haider-93 and BO-7022) crops and 4 nitrogen split applications i.e., NS1= whole N at sowing, NS2= ? N at sowing + ? N at 1stirrigation, NS3= 1/3 N at sowing + 1/3 N at 1stirrigation + 1/3 N at 2ndirrigation and NS4= . N at sowing + . N at 1stirrigation + . N at 2ndirrigation + . N at 3rdirrigation). The wheat cv. Sahar-2006, oat cv. CK-1 and barley cv. BO-7022 out yielded other cultivars by producing total dry matter 574 to 722 g m-2, 429 to 533 g m-2and 455 to 555 g m-2, respectively. Similarly, the respective grain yield values for these cultivars were 265 to 350 g m-2, 205 to 265 g m-2and 202 to 263 g m-2, respectively. For wheat, oat and barley crops radiation use efficiency (RUE) ranged from 1.14 g MJ-1to 1.47 g MJ-1, 0.85 g MJ-1to 1.08 g MJ-1and 0.91 g MJ-1to 1.13 g MJ-1, respectively. In general, wheat, oat and barley had higher RUE values at 3rdN split application and the lowest were found in case of 4thN split application regime. Over all agronomic nitrogen use efficiency (ANUE) for wheat, oat and barley ranged from 10.96 to 19.20 kg kg-1, 7.04 to 13.30 kg kg-1and 17.00 to 30.60 kg kg-1, respectively. Among N split applications, 3rdN application produced the higher ANUE of 16.96 to 19.20 kg kg-1, 11.74 to 13.30 kg kg-1and 29 to 30.60 kg kg-1in case of wheat, oat and barley crops, respectively. Over all, economic nitrogen use efficiency (ENUE) for wheat, oat and barley ranged from 3.03 to 5.30 $ kg-1, 2.73 to 5.16 $ kg-1and 2.27 to 4.09 $ kg-1, respectively.
机译:在2010-11冬季,在巴基斯坦木尔坦的Bahauddin Zakariya大学实验农场进行了三个田间试验,以研究3种冬季谷类作物的反应,即小麦(Triticum aestivum L.),燕麦(Avena sativa L.)。 )和大麦(Hordeum vulgare L.)在生长,最终产量,辐射和氮的利用效率(R&NUE)方面分配氮素。有两个变量;小麦(Sahar-2006,Lasani-2008和AARI-2010),燕麦(CK-1,F-411和Ravi)和大麦(Jao-87,Haider-93和BO-7022)分别有3个品种和4个氮素拆分应用程序,即NS1 =播种时整个N,NS2 =? N在播种+?第一次灌溉时为N,播种时为NS3 = 1/3 N,第一次灌溉时为1/3 N + 2n灌溉时为1/3 N,NS4 =。播种+时为N。 1灌溉+时的N。 N在2ndirrigation +处。 3滴灌时为N)。小麦简历Sahar-2006,燕麦简历。 CK-1和大麦简历。 BO-7022通过分别生产总干物质574至722 g m-2、429至533 g m-2和455至555 g m-2而产生了其他品种。同样,这些品种的谷物单产分别为265至350 g m-2、205至265 g m-2和202至263 g m-2。对于小麦,燕麦和大麦作物,辐射利用效率(RUE)分别为1.14 g MJ-1至1.47 g MJ-1、0.85 g MJ-1至1.08 g MJ-1和0.91 g MJ-1至1.13 g MJ-1。通常,小麦,燕麦和大麦在3rdN分开施用时RUE值较高,在4thN分开施用方案中RUE值最低。小麦,燕麦和大麦的全部农艺氮利用效率(ANUE)分别为10.96至19.20 kg kg-1、7.04至13.30 kg kg-1和17.00至30.60 kg kg-1。在氮肥施用中,小麦,燕麦和大麦作物分别施用3rdN的较高ANUE值分别为16.96至19.20 kg kg-1、11.74至13.30 kg kg-1和29至30.60 kg kg-1。总体而言,小麦,燕麦和大麦的经济氮利用效率(ENUE)分别为3.03至5.30 $ kg-1、2.73至5.16 $ kg-1和2.27至4.09 $ kg-1。

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