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A Comparative Study of Integrated Crop Management System vs. Conventional Crop Management System for Cotton Yield and Fiber Quality With Respect to Fruiting Position Under Different Soil Fertility Levels

机译:不同土壤肥力水平下棉花产量和纤维品质综合作物管理系统与常规作物管理系统比较

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摘要

In order to increase cotton productivity and optimize fiber quality on limited arable land, an integrated crop management system (ICMS), which combined with some optimal management practices, is projected to replace the conventional crop management system (CCMS) for cotton production in the Yangtze River valley. The seedcotton yield and fiber quality with respect to fruiting position under ICMS and CCMS were investigated in 2012 and 2013 in two fields differing in soil fertility. Reduced bolls on fruiting branches 1–10 (FB1−10) and at fruiting position 1–2 (FP1−2) on FB11−15 could not be fully compensated by increased bolls on FB16+ under CCMS, resulting in more seedcotton yield under ICMS relative to that under CCMS. Fiber at majority fruiting positions under CCMS were longer and stronger than those under ICMS, but CCMS increased the contribution of bolls on FB11+ to the cotton yield, which overall resulted in no significant change in fiber length and strength by management system at field level. The number of bolls at FP1−2 on FB1−5 under CCMS while the number of bolls on FB1−5 and at FP1−2 on FB1−5 were not significantly changed by soil fertility, resulting in diminished yield difference in soil fertility among ICMS relative to that of CCMS. The high soil fertility significantly increased seedcotton yield relative to low soil fertility, which was attributed to more number of bolls on FB11+ and higher seedcotton weight per boll at all fruiting positions. High soil fertility field not only recorded superior fiber quality on FB11+, but also increased the contribution of these bolls to the cotton yield relative to those in the low soil fertility field, resulting in no significant change in overall fiber quality among soil fertility. These findings demonstrate that by combining optimal management practices on infertile soils ICMS could minimize the yield differences due to soil fertility without sacrificing fiber quality.
机译:为了提高棉花产量并在有限的耕地上优化纤维质量,预计将结合一些最佳管理实践的综合作物管理系统(ICMS)取代长三角地区棉花生产的常规作物管理系统(CCMS)。河谷。在2012年和2013年,在两个土壤肥力不同的领域,研究了ICMS和CCMS下关于结实位置的籽棉产量和纤维品质。在CCMS下,FB16 +上增加的棉铃无法完全补偿在结果分支1–10(FB1–10)和FB11–15上水果位置1–2(FP1-2)上减少的铃虫,从而导致相对ICMS而言,更多的棉籽产量到CCMS下的在CCMS下,多数结实部位的纤维要长于和在ICMS下结实,但CCMS增加了FB11 +上的铃铃对棉花产量的贡献,总体上,田间管理系统的纤维长度和强度没有明显变化。 CCMS条件下FB1-5 FP1-2上的铃数,而FB1-5-5 FP1-2上的1-2铃数并未因土壤肥力而显着改变,导致ICMS间土壤肥力的产量差异减小相对于CCMS。高土壤肥力相对于低土壤肥力显着提高了籽棉产量,这归因于FB11 +上的铃铃数量增加,并且在所有结实部位每铃铃的籽棉重量更高。高土壤肥力的土地不仅在FB11 +上表现出优异的纤维品质,而且相对于低土壤肥力的土地,这些棉铃对棉花产量的贡献也增加,导致土壤肥力的总体纤维品质没有明显变化。这些发现表明,结合不育土壤的最佳管理方法,ICMS可以在不牺牲纤维质量的情况下,将因土壤肥力引起的产量差异降至最低。

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