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Effects of Planting Configuration and In-Row Plant Spacing on Photosynthetically Active Radiation Interception for Three Irrigated Potato Cultivars

机译:种植方式和行内种植间距对三种灌溉马铃薯品种光合有效辐射截留的影响

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Research studies have evaluated the production of potatoes (Solanum tuberosum L.) grown in conventional and bed planting configurations. However, intercepted photosynthetically active radiation (PAR) from these planting configurations has not been quantified. A study conducted in 2008 and 2009 quantified and compared the intercepted PAR from three planting configurations (four row conventional ridged-row [4RC], five row bed [5RB], and seven row bed [7RB]), and from different plant spacings of cvs Russet Burbank, Russet Norkotah, and Ranger Russet potatoes under sprinkler irrigation. A second study was conducted in 2007 to evaluate the relationship between PAR and leaf area of Russet Norkotah and Russet Burbank for the three planting configurations. These studies were conducted at the USDA-ARS Northwest Irrigation & Soils Research Lab in Kimberly, ID, on a Portneuf silt loam (coarse–silty mixed mesic Durixerollic Calciorthid). The canopy of Russet Norkotah and Ranger Russet potatoes grown in 5RB and 7RB planting configurations intercepted more PAR during the early vegetative and tuber initiation growth stages compared to the 4RC planting configuration at equal populations in 2008 and 2009 at all measurement dates. The canopy of Russet Burbank intercepted more PAR during the early growth stage in 2008 when planted in the bed planting configurations compared to the 4RC planting configuration, but not on the July 17, 2008 and July 9, 2009 dates. The canopy cover of Russet Burbank potatoes planted in the 4RC planting configuration tended to catch up with the bed planting configurations quicker than the other two cultivars. In general, the quantity of PAR intercepted as affected by planting configuration did not influence total tuber yield and other measured production variables. Cumulative PAR interception 0–72 days after planting (DAP) was increased 35%, 38%, and 32% for the 5RB and 65%, 69%, 23% for the 7RB relative to the 4RC planting configuration for Ranger Russet, Ranger Norkotah, and Russet Burbank, respectively. Cumulative PAR interception for the season was increased 15%, 16%, and 4% for the 5RB and 23%, 23%, 5% for the 7RB relative to the 4RC planting configuration for Ranger Russet, Ranger Norkotah, and Russet Burbank, respectively. The relationship between intercepted PAR and leaf area for Russet Norkotah during the early vegetative and tuber initiation growth stages was significantly different between the three planting configurations, with intercepted PAR at a given leaf area in the order of 7RB>5RB>4RC. For Russet Burbank, the relationship was significantly different for the 5RB and 7RB compared to 4RC planting configuration only, with intercepted PAR at a given leaf area in the order of 7RB=5RB>4RC.
机译:研究研究已经评估了以常规和底种植法种植的马铃薯(Solanum tuberosum L.)的产量。但是,尚未对这些种植配置中截获的光合有效辐射(PAR)进行量化。 2008年和2009年进行的一项研究量化并比较了三种种植结构(四行常规垄行[4RC],五行床[5RB]和七行床[7RB])以及不同种植间距下截获的PAR。 cvs Russet Burbank,Russet Norkotah和Ranger Russet马铃薯在喷灌条件下。 2007年进行了第二项研究,以评估三种种植方式下,Russet Norkotah和Russet Burbank的PAR与叶面积之间的关系。这些研究是在IDA金伯利的USDA-ARS西北灌溉与土壤研究实验室使用Portneuf淤泥壤土(粗粉质混合中度杜里香醇Calciorthid)进行的。与2008年和2009年在所有测量日期均等种群的4RC种植配置相比,在5RB和7RB种植配置下种植的Russet Norkotah和Ranger Russet土豆的冠层在植物生长和块茎萌芽早期阶段截获了更多的PAR。与4RC种植配置相比,Russet Burbank的树冠在2008早期生长阶段以床种植配置进行种植时,截获了更多的PAR,但在2008年7月17日和2009年7月9日这一天没有。在4RC种植模式下种植的Russet Burbank土豆的冠层覆盖物比其他两个品种更容易追赶床型种植。通常,受种植方式影响,截获的PAR的量不影响块茎总产量和其他测得的生产变量。相对于Ranger Russet,Ranger Norkotah的4RC种植配置,播种后0-72天(DAP)的PAR截获相对于5RB增加了35%,38%和32%,而7RB分别增加了65%,69%,23% ,和Russet Burbank分别。相对于Ranger Russet,Ranger Norkotah和Russet Burbank的4RC种植配置,5RB的本季累积PAR拦截分别增加了15%,16%和4%,7RB的分别为23%,23%,5%。 。在三种种植方式下,红景天和块茎萌芽早期生长阶段截获的PAR与叶面积之间的关系显着不同,在给定的叶面积处,截获的PAR的顺序为7RB> 5RB> 4RC。对于Russet Burbank,与仅4RC种植配置相比,5RB和7RB的关系显着不同,在给定的叶面积处PAR被截取,顺序为7RB = 5RB> 4RC。

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