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1  lindemuthianum, causal agent of common bean anthracnose.
2 nt, seed alkaloid content, and resistance to anthracnose and Phomopsis stem blight; and, (iii) define
3 ffectors and studied their expression during anthracnose development in maize.
4                               Development of anthracnose disease caused by Colletotrichum gloeosporio
5  hemi-biotrophic fungal pathogen that causes anthracnose disease in Medicago and other closely relate
6 provided a total systemic protection against anthracnose disease in strawberry, accompanied by the ex
7 a hemibiotrophic fungal pathogen that causes anthracnose disease of alfalfa.
8 fumigation had positive effects on enhancing anthracnose disease resistance during storage and also g
9                             The incidence of anthracnose disease was found to be significantly reduce
10 ering dogwood fly in the face of the dogwood anthracnose epidemic.
11 infection by Colletotrichum sublineolum, the anthracnose fungus.
12 Hass and Ryan avocados significantly reduced anthracnose incidence compared to prochloraz and the unt
13 Although TO fumigation significantly reduced anthracnose incidence in both naturally infected cultiva
14 Colletotrichum destructivum, showed necrotic anthracnose lesions in non-transformed control leaves, w
15 a pachyrhizi and Puccinia emaculata, and one anthracnose pathogen, Colletotrichum trifolii, on the ab
16  of plant R genes and confers broad-spectrum anthracnose resistance when transferred into susceptible
17  control of vernalization responsiveness and anthracnose resistance, as well as a single locus regula
18  loci conferring vernalization independence, anthracnose resistance, low alkaloids and Phomopsis stem
19 s, RCT1 provides a novel resource to develop anthracnose-resistant alfalfa cultivars and contributes
20  resistance to both southern leaf blight and anthracnose stalk rot caused by Cochliobolis heterostrop
21 troph R. microsporus and the causal agent of anthracnose stalk rot, Colletotrichum graminicola.

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