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Fusarium ear rot and fumonisins in maize kernels when comparing a Bt hybrid with its non-Bt isohybrid and under conventional insecticide control of Busseola fusca infestations

机译:在将BT杂种与其非BT Isohybrid和Busseola Fusca侵扰的常规杀虫剂控制下,粗糙耳鼻耳鼻喉虫和Fumonisins。

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摘要

Maize production in South Africa is negatively affected by Fusarium verticillioides, an endophytic maize pathogen, as well as by Busseola fusca larval damage. Fusarium verticillioides causes ear, stem and root rot, and also produces fumonisin mycotoxins which are toxic to humans and livestock. The African stem borer (Busseola fusca) is a pest of economic importance in maize plants in South Africa. In this study, the interaction between E verticillioides and B. fusca was investigated to elucidate its effects on Fusarium ear rot and fumonisin production in a Bt hybrid (MON810 event) and its B. fusca-susceptible non-Bt isohybrid. Field trials were conducted over three seasons using a randomised complete block design with six replicates per treatment. The effect of Beta-cyfluthrin (non-systemic, granular) and Benfuracarb (systemic, seed treatment) insecticide applications on the incidence of Fusarium ear rot and fumonisin production in maize was also determined in an unrelated conventional hybrid. For B. fusca infestations, larvae were dispensed into the whorl of each plant at the 12th leaf stage prior to tasselling, while a E verticillioides MRC826 spore suspension was inoculated through the silks at the Bilking stage. Maize ears were harvested at physiological maturity and Fusarium ear rot, total fumonisin levels, stem borer damage and target DNA of fumonisin-producing Fusarium spp. quantified. Significantly less Fusarium ear rot and fumonisin were produced in the Bt maize hybrid compared to the non-Bt isohybrid under natural farming conditions, but fungal colonisation and fumonisin production under artificial E verticillioides inoculation did not differ significantly between the Bt and non-Bt maize. Fumonisin production correlated moderately with the quantity of target DNA of fumonisin-producing Fusarium spp. extracted from maize plants. Benfuracarb application to control stem borer infestation resulted in a significant reduction in Fusarium ear rot and fumonisin production while Beta-cyfluthrin did not. Moreover, B. fusca damage to maize ears significantly increased when both insecticides were not applied to the B. fusca-infested plants. This study indicated that Bt maize and the application of Benfuracarb reduce B. fusca damage to maize ears thereby indirectly reducing Fusarium ear rot and fumonisin production. However, this was not consistent over seasons due to differences in climatic conditions. (C) 2017 Elsevier Ltd. All rights reserved.
机译:南非玉米产量受到镰刀菌茂物的玉米病原体,以及Busseola Fusca幼虫损伤的影响。镰刀酸纤维酸导致耳,茎和根腐腐蚀,并产生对人类和牲畜有毒的富隆霉菌毒素。非洲干钻(Busseola Fusca)是南非玉米植物的经济重要性害虫。在该研究中,研究了E Verticillioides和B.Fusca之间的相互作用,以阐明其对BT杂交(MON810事件)的镰刀虫腐蚀和富隆异素产生的影响及其B.FUSCA易感性非BT Isohybrid。使用随机完整的块设计进行了三个季节进行了现场试验,每次治疗六个重复。在一个不相关的常规杂交中,还测定了β-cyfluthrin(全身性,种子)和BenfuracaRB(全身性,种子)和Benfuracarb(全身性,种子处理)杀虫剂应用和玉米菌腐蚀和富马激酶产生的抗性。对于B. FUSCA侵扰,在分流之前在第12叶阶段分配幼虫进入每种植物的螺纹,同时通过胆干阶段的丝网接种E Verticillioids MRC826孢子悬浮液。在生理成熟度和镰刀菌腐烂,总浮肿水平,茎干损伤和培养型富疮镰刀菌SPP的靶DNA的玉米耳朵,玉米耳朵被收获。量化。与天然养殖条件下的非BT Isohybrid相比,在BT玉米杂交中产生的镰刀菌腐烂和Fumonisin显着更少,但在BT和非Bt玉米之间,在人工E型戊酰胺接种下的真菌定植和Fumonisin产生并未显着差异。 Fumonisin生产中适中与富马激酶产生的镰刀菌菌的靶DNA的数量相关。从玉米植物中提取。 Benfuracarb应用于控制茎螟虫的侵蚀导致纤肢耳腐肉和Fumonisin生产的显着减少,而Beta-Cyfluthrin没有。此外,当两种杀虫剂未施用于B.Fusca侵染植物时,B.对玉米耳的损伤显着增加。本研究表明,BT玉米和Benfuracarb的应用降低了B. fusca对玉米耳损伤的损伤,从而间接减少了镰刀菌腐蚀和绒毛蛋白的产生。然而,由于气候条件的差异,这在季节上并不一致。 (c)2017 Elsevier Ltd.保留所有权利。

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