首页> 外文期刊>Journal of the American Society for Horticultural Science >DEVELOPING THE PECAN SCAB FUNGUS ON SUSCEPTIBLE AND RESISTANT HOST AND NONHOST LEAVES
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DEVELOPING THE PECAN SCAB FUNGUS ON SUSCEPTIBLE AND RESISTANT HOST AND NONHOST LEAVES

机译:在可抵抗的寄主和非寄主叶上开发PECAN SCAB真菌

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Germ tube, appressorium, and subcuticular hypha development were analyzed on host and nonhost leaves for Cladosporium caryigenum (Ell, et Lang. Gottwald), the fungus causing scab on pecan [Carya illinoinensis (Wangenh,) C, Koch], Plant features characterized for supporting fungal growth were genotype, adaxial and abaxial leaf surfaces, and leaf maturity, Germ tubes and appressoria developed on all plant leaves, despite genotype, leaf surface, or maturity, Germ tube frequency on the susceptible host, 'Wichita', was lower than on the resistant host, 'Elliott', but was not significantly different from the nonhost, tobacco (Nicotiana tabacum L,), Appressoria formed with equal frequency on leave of both pecan cultivars and tobacco, Adaxial and abaxial leaf surfaces were not different within any given genotype for supporting fungal development, Immature leaves of 'Elliott', but not of 'Wichita', had a higher frequency of germ tubes and appressoria than mature leaves, subcuticular hyphal development occurred only on immature leaves of susceptible 'Wichita' pecan, Hence, subcuticular hyphal development is a prime candidate for being the fungal stage specific for host susceptibility, Resistance to C. caryigenum infection appears to be expressed at the plant site beneath the cuticle as fungal hyphae did not develop in a resistant pecan genotype or on nonhost leaves, Thus, resistance to the fungus causing pecan scab likely is expressed after both germ tube and appressorium development and operates beneath, not on the surface, of the leaf cuticle, Furthermore, technology developed to make these assessments would be adaptable in pecan breeding programs to screen for scab resistance.
机译:分析了山核桃(Carya illinoinensis(Wangenh,C,Koch))上会引起结ab的真菌克拉多孢藻(Caradogenium caryigenum,Ell等,Lang。Gottwald)在寄主和非寄主叶片上的胚芽管,前庭和表皮下的菌丝发育。支持真菌生长的是基因型,叶的正面和背面,并且尽管有基因型,叶表面或成熟度,但易感宿主“ Wichita”上的胚芽管频率低于基因型,胚芽管和顶叶在所有植物叶片上的发育。在抗性寄主“ Elliott”上,但与非寄主烟草(Nicotiana tabacum L)无显着差异,山核桃和烟草的叶片上的Appressoria形成频率相同,在任何情况下叶片的正反面都没有差异考虑到支持真菌发育的基因型,“ Elliott”的未成熟叶片而不是“ Wichita”的未成熟叶片的胚芽管和食欲的频率比成熟叶片,表皮下菌丝发育高萌发只发生在易感染的“ Wichita”山核桃的未成熟叶片上,因此,表皮下的菌丝发育是特定于宿主易感性的真菌阶段的主要候选者。对角膜衣原体的抗药性似乎在表皮下的植物部位表达为真菌菌丝没有在抗性山核桃基因型中或在非寄主叶片上发育,因此,对引起山核桃结ab的真菌的抗性很可能在胚芽管和食堂发育后开始表达,并且在叶表皮的下方而不是表面上起作用,此外,为进行这些评估而开发的技术将适用于山核桃育种计划,以筛选抗sc疮的能力。

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