GENETIC ASSESSMENT OF LEAF RUST RESISTANCE IN SOME WHEAT VARIETIES

R. A. Eissa, A. Fahmi, A. M. El-Zanaty, W. M. E. Orabey
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Abstract

The experiments of this study were carried out through four growing seasons i.e., 2015/16 to 2018/19 at the farm of the faculty of Agriculture, Shibin El-Kom, Menoufia University.Using10 Egyptian wheat varieties,16 wheat promising lines from (CIMMYT) and 20 adult plant leaf rust resistance genes (Lr). lines Lr were used as (male) for crosses with the wheat cultivars (female) to obtain the F1 grains to produce F2 grains and perform genetic analysis. Recording final rust severity (FRS), rate of disease increase (r-value) and the area under disease progress curve (AUDPC) from varieties and lines to responses leaf rust resistance. While STS marker specific for Lr19 and Lr28 genes were performed on the ten wheat varieties and the sixteen promising lines. The responses of rust severity and infection type of the 20 Lr strains were divided into three groups; I resistant genes i.e., Lr17, Lr18, Lr28, Lr 38 and Lr42, II susceptible genes i.e., Lr2c, Lr9, Lr14b, Lr24, Lr34, Lr35, Lr36, Lr37, Lr44 and Lr45, and III genes with variable reactions i.e. Lr2a, Lr19, Lr29, Lr30 and Lr39. Results suggested that genes of group I are important for breeding for leaf rust resistance under Egyptian field conditions. The ten wheat cultivars exhibited low values of FRS and AUDPC except Sids1, and no variety has high rate of (r-value). These cultivars except Sids1 have a good level of adult plant resistance to leaf rust and can be used as resistance sources, 16 wheat promising lines gave lowest values of (FRS), (r-value) and (AUDPC), and consequently they can be used in breeding programs. Genetic analysis showed that Sids1 did not have any of genes under study. However, Gemmeiza 7, Gemmeiza 9, Gemmeiza 10, Gemmeiza 11, Gemmeiza 12, Misr 1, Misr 2, Giza168 and Giza 171 have several Lr genes. Using STS marker specific for Lr19 and Lr28 genes, Lr19 was identified in Gemmeiza 7 and Gemmeiza 11 and Lr28 detected in Gemmeiza 9 and Gemmeiza 10, while Lr19 detected in 13 promising lines, Lr28 found only in five of them. These results showed that molecular markers for Lr genes might be a useful tool in marker-assisted breeding (MAS) for developing Egyptian wheat cultivars.
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部分小麦品种抗叶锈病的遗传评价
本研究在Menoufia大学Shibin El-Kom农业学院的农场进行了四个生长季节(2015/16至2018/19)的实验。利用10个埃及小麦品种、16个CIMMYT小麦潜力品系和20个成体植物抗叶锈病基因(Lr)。以品系Lr作为(雄性)与小麦品种(雌性)杂交,获得F1粒,产生F2粒,并进行遗传分析。记录品种和品系对叶锈病抗性反应的最终锈病严重程度(FRS)、病害增加率(r-value)和病害进展曲线下面积(AUDPC)。同时对10个小麦品种和16个候选品系进行了Lr19和Lr28基因特异性STS标记。将20株Lr菌株的锈病严重程度和感染类型分为3组;抗性基因为Lr17、Lr18、Lr28、lr38和Lr42,易感基因为Lr2c、Lr9、Lr14b、Lr24、Lr34、Lr35、Lr36、Lr37、Lr44和Lr45,易变基因为Lr2a、Lr19、Lr29、Lr30和Lr39。结果表明,在埃及田间条件下,I群基因对抗叶锈病育种具有重要意义。10个小麦品种的FRS和AUDPC值除Sids1外均较低,r值率均不高。除Sids1外,其余品种均具有较好的成株抗叶锈病能力,16个小麦候选品系的(FRS)、(r-value)和(AUDPC)值最低,可作为抗叶锈病资源。遗传分析表明,sis1没有任何正在研究的基因。然而,Gemmeiza 7、Gemmeiza 9、Gemmeiza 10、Gemmeiza 11、Gemmeiza 12、Misr 1、Misr 2、Giza168和Giza 171有多个Lr基因。利用Lr19和Lr28基因特异性STS标记,在黑麦7号和黑麦11号中检测到Lr19基因,在黑麦9号和黑麦10号中检测到Lr28基因,在黑麦9号和黑麦10号中检测到Lr19基因,在黑麦10号和黑麦9号中检测到Lr28基因,在黑麦10号和黑麦9号中检测到Lr28基因。这些结果表明,Lr基因的分子标记可作为标记辅助育种(MAS)的有效工具。
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