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首页> 外文期刊>Biological Control: Theory and Application in Pest Management >Friends or foes? Population dynamics of beneficial and detrimental aerial arthropods under Conservation Agriculture
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Friends or foes? Population dynamics of beneficial and detrimental aerial arthropods under Conservation Agriculture

机译:朋友或敌人? 保护农业中受益和有害空中节肢动物的人口动态

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Arthropod pest control is one of the most critical agronomic practices in cereal-based cropping systems. Cropping systems that preserve or promote biological pest control agents are more desirable. Data collected from a long-term trial at the Monze Farmer Training Centre (MFTC) from 2009 to 2012 was used to compare effects of different Conservation Agriculture (CA) systems with conventional practices (CP) on arthropod species diversity and populations with specific emphasis on beneficial and detrimental aerial arthropods. Up to 13 arthropod orders comprising of 40 species were identified in the cropping systems and their population density differed in years and cropping systems. Higher diversity was observed in CA systems in all years based on the Shannon-Weiner indices ranging from 0.4 to 2. However, a CP system with no rotations (CP-M) showed comparable results in the year with low rainfall. Community evenness increased in the same year with a value of 0.46. More beneficial and detrimental arthropods were recorded in a CA system with a three-year rotation of maize, cotton and sunnhemp reaching up to 9533 individuals ha(-1). The CP-M recorded the highest increase in detrimental arthropods from 2009 to 2012. A canonical correspondence analysis did not show a clear-cut association of both CA and CP systems with either beneficial or detrimental arthropods. However, associations were more driven by seasonal effects. Reduced soil disturbance, crop residue retention and crop diversity in CA systems preferentially attracted beneficial arthropods while preserving existing favourable arthropods. Conventional tillage systems often disturbed arthropod habitats, disrupted their life cycles leading to lower biological activity. Increased biodiversSity from CA systems may therefore support biological control.
机译:节肢动物害虫控制是基于谷物种植系统中最关键的农艺实践之一。保护或促进生物害虫控制剂的种植系统更为理想。从2009年至2012年的长期审判中收集的数据从2009年到2012年被用于比较不同保护农业(CA)系统与传统实践(CP)对节肢动物物种多样性和具有特定重点的群体的影响有益和有害的空中节肢动物。在种植系统中鉴定了包含40种的13个节肢动物顺序,并且它们在多年和种植系统中的人口密度不同。基于0.4〜2的香农 - 韦纳索引,在CA系统中观察到更高的多样性。然而,没有旋转的CP系统(CP-M)在降雨量下的年份显示了同类结果。社区均匀度在同一年增加,价值0.46。在CA系统中记录了更有益和有害的节肢动物,玉米,棉花和Sunnhemp的三年旋转达到9533个个体HA(-1)。 CP-M记录了2009年至2012年的有害节肢动物的最高增加。规范对应分析没有显示出具有有益或有害节肢动物的CA和CP系统的清除结合。然而,季节性效果的趋势是更多的。降低土壤干扰,CA系统中的作物残留保留和作物多样性优先吸引有益节肢动物,同时保持现有的有利节肢动物。常规耕作系统经常受到节肢动物栖息地的损害,扰乱了它们的生命周期,导致生物活性降低。因此,来自CA系统的生物多样性增加可能支持生物控制。

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