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The impact of tillage system and herbicides on weed density, diversity and yield of cotton (Gossipium hirsutum L.) and maize (Zea mays L.) under the smallholder sector

机译:耕作制度和除草剂对小农部门下棉花(Gossipium hirsutum L.)和玉米(Zea mays L.)的杂草密度,多样性和产量的影响

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摘要

The study was carried out to evaluate the impact of tillage system in combination with different herbicides on weed density, diversity, crop growth and yields on 18 farms in Kadoma, Zimbabwe. Experiments were set up as a split plot design with three replications on each farm. Tillage was the main plot (Conservation Tillage (CT), Conventional Tillage (CONV)) and weeding option (hand weeding, cyanazine, atrazine, glyphosate only and mixture of cyanazine + alachlor and atrazine + alachlor) as the sub-plots. Due to the heterogeneous nature of farmers' resource base, the farms were grouped into three farm types: high (Type 1), medium (Type 2) and poorly resourced farmers (Type 3). The hand hoe weeded treatments had 49 percent higher total weed densities in CT relative to CONV, and was statistically similar to the glyphosate treatment. The mixed pre-emergence herbicides reduced the diversity indices by 69 and 70 percent when compared to the hand hoe weeded treatment under CT in cotton and maize, respectively. The effectiveness of all pre-emergence herbicides were not influenced by tillage but were affected by farmers resource endowments with pronounced effect in Farm Type 1. Maximum plant heights of 85 and 238 cm were recorded for mixed pre-emergence herbicides under CT for cotton and maize, respectively. Minimum plant heights of 75 and 217 cm were recorded for the respective hand hoe weeded treatments. The hand hoe weeded treatments resulted in average cotton lint yield of 1497 and 2018 kg ha−1 for maize. The mixed pre-emergence herbicides treatments gave yields of 2138 and 2356 kg ha−1 of cotton and maize, respectively. The higher weed densities in CT under hand weeded treatments underscored the need for other weeding options. Similarly, a mixture of cyanazine + alachlor in cotton and atrazine + alachlor in maize is recommended for suppressing broad and grass weed populations and enhancing yields in CT systems.
机译:这项研究旨在评估耕作系统与不同除草剂的结合对津巴布韦卡多玛的18个农场的杂草密度,多样性,作物生长和产量的影响。将实验设置为分割图设计,每个服务器场上进行三个重复。耕作是主要地块(保护性耕作(CT),常规耕作(CONV))和除草选择(人工除草,氰嗪,at去津,仅草甘膦以及氰嗪+甲草胺和and去津+甲草胺的混合物)作为子图。由于农民资源基础的异质性,这些农场被分为三种农场类型:高(类型1),中(类型2)和资源贫乏的农民(类型3)。相对于CONV,手杂草处理的CT总杂草密度高出CONV,在统计学上与草甘膦处理相似。与CT和CT相比,棉花和玉米的混合芽前除草剂分别将多样性指数降低了69%和70%。在农场类型1中,所有出苗前除草剂的有效性均不受耕种的影响,但受到农民资源end赋的影响,效果显着。在CT下,棉花和玉米混合出苗前除草剂的最大株高分别为85和238 cm , 分别。分别记录了手hand杂草处理的最小植株高度为75和217 cm。头除草处理使玉米的平均棉绒产量为1497和2018 kg ha-1。混合的芽前除草剂处理分别使棉花和玉米的产量分别为2138和2356 kg ha-1。在手工除草处理下,CT中较高的杂草密度突出了对其他除草方法的需求。同样,建议使用棉花中的氰嗪+甲草胺和玉米中的r去津+甲草胺的混合物抑制杂草和草类种群,并提高CT系统的产量。

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