苯达松- mcpa对温室条件下三叶草尖孢镰刀菌根腐病的防治效果

R. Ceballos, X. Cofre, A. Quiroz, N. Espinoza, G. Palma
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引用次数: 3

摘要

在智利,导致红三叶草(Trifolium pretense L.)林分下降的主要因素是枯萎根腐病,它导致产量下降。尖孢镰刀菌(镰刀菌)是从患病的红三叶草根植物中恢复的最普遍的病原体。红三叶草的农艺管理包括使用MCPA和bentazon等阔叶除草剂。本试验研究了在温室条件下,苯他松和苯他松/MCPA混合物对红三叶草的植物毒性和尖孢镰刀菌对红三叶草的根腐病的影响。此外,还对尖孢霉的体外菌丝生长和分生孢子萌发进行了研究。高剂量本他松/MCPA和尖孢镰刀菌接种后30 d,冠径减少40%,茎干重减少57%。本他松-尖孢霉互作在评价20和30时,在IX率下使根干重减少57%,在2X率下使根干重减少42%。本他松处理显著提高了根腐病的植物毒性,且本他松/MCPA混合处理显著提高了根腐病的严重程度和植物毒性。本他松/MCPA可显著降低孢子萌发和菌丝生长。本他松和本他松/MCPA施用对红三叶草生长和持久性有不利影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
BENTAZON-MCPA EFFECT ON Fusarium oxysporum ROOT ROT ON Trifolium pratense IN GREENHOUSE CONDITIONS
In Chile, the main factor in red clover {Trifolium pretense L.) stand decline is fusarium-root rot, which results in a reduction in yield. Fusarium oxysporum (Schlect.) is the most prevalent pathogen recovered from diseased red clover roots plants. Agronomical management of red clover includes application of broadleaf herbicides such as MCPA and bentazon. This study was conducted to evaluate the effects of bentazon and bentazon/MCPA mixture on phytotoxicity and root rot as caused by F. oxysporum on red clover, under greenhouse conditions. In addition, in vitro mycelial growth and conidial germination of F. oxysporum was studied. A reduction of 40% in crown diameter and 57% shoot dry weight was observed 30 days after treatment with a high rate of bentazon/MCPA and F. oxysporum inoculum. The bentazon - F. oxysporum interaction reduced root dry weight by 57% at IX rate and 42% with 2X rate at 20 and 30 of evaluation. Bentazon caused a significant increase in phytotoxicity at the high rate and the mixture bentazon/MCPA increased root rot severity and phytotoxicity at the high rate. The conidial germination and mycelial growth were significantly reduced by bentazon/MCPA. These results suggest that red clover growth and persistence could be adversely affected by F. oxysporum after bentazon and bentazon/MCPA application.
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