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明尼苏达州甜菜上瓜亡革菌的特征及致病性

Characterization and Pathogenicity of Thanatephorus cucumeris from Sugar Beet in Minnesota.

作者信息

Windels Carol E, Kuznia Rita A, Call Jack

机构信息

Associate Professor.

Research Fellow, Northwest Experiment Station, University of Minnesota, Crookston 56716.

出版信息

Plant Dis. 1997 Mar;81(3):245-249. doi: 10.1094/PDIS.1997.81.3.245.

Abstract

In 1993, hymenia of Thanatephorus cucumeris occurred on petioles of sugar beet leaves, but disease was not observed on leaves, crowns, or roots. Of 33 cultures isolated from sugar beet, 28 were identified as Rhizoctonia solani AG-3 (from four fields planted to potatoes in 1992) and five isolates were AG-5 (from one field planted to wheat in 1992). These isolates of R. solani AG-3 and AG-5 were nonpathogenic to moderately pathogenic on sugar beet seedlings (stands ranged from 49 to 95%). The same isolates were nonpathogenic when inoculated on 8-week-old sugar beet roots (root rot indices were ≤1 [0 to 7 scale]). All isolates of R. solani AG-3 (but none of AG-5) formed sclerotia on roots. Disease indices (0 to 4 scale) on potato sprouts at 10°C were low, did not differ significantly (P = 0.05) among isolates and the control in either of two experiments, and averaged 0.9 for 14 isolates of AG-3, 0.5 for three isolates of AG-5, and 0.5 in the control. All isolates of AG-3 (but none of AG-5) formed sclerotia on potato seed pieces. When potato sprouts were grown at 25°C, disease indices were low (averaged 0.4 in each of two experiments), but four isolates of AG-3 and three of AG-5 had disease indices significantly (P = 0.05) higher than those of the uninoculated control. Sclerotia were not observed. The presence of hymenia of T. cucumeris is significant in that sexual reproduction and inoculum production occurred on a nonhost crop and were related to AGs of R. solani associated with the previous crop (AG-3 for potato and AG-5 for wheat).

摘要

1993年,瓜亡革菌的子实体出现在甜菜叶片的叶柄上,但在叶片、叶冠或根部未观察到病害。从甜菜上分离出的33个培养物中,28个被鉴定为立枯丝核菌AG - 3(来自1992年种植马铃薯的四块田地),5个分离物为AG - 5(来自1992年种植小麦的一块田地)。这些立枯丝核菌AG - 3和AG - 5的分离物对甜菜幼苗无致病性至中度致病性(植株成活率在49%至95%之间)。相同的分离物接种在8周龄甜菜根上时无致病性(根腐病指数≤1 [0至7级])。立枯丝核菌AG - 3的所有分离物(但AG - 5的分离物均未)在根上形成菌核。在10°C下,马铃薯芽上的病害指数(0至4级)较低,在两个实验中的任何一个中,分离物与对照之间均无显著差异(P = 0.05),AG - 3的14个分离物平均为0.9,AG - 5的3个分离物平均为0.5,对照平均为0.5。AG - 3的所有分离物(但AG - 5的分离物均未)在马铃薯种薯上形成菌核。当马铃薯芽在25°C下生长时,病害指数较低(两个实验中每个实验的平均值均为0.4),但AG - 3的4个分离物和AG - 5的3个分离物的病害指数显著高于未接种对照(P = 0.05)。未观察到菌核。瓜亡革菌子实体的存在具有重要意义,因为有性繁殖和接种体产生发生在非寄主作物上,并且与前作相关的立枯丝核菌的菌丝融合群有关(马铃薯为AG - 3,小麦为AG - 5)。

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