Mechanisms and Sources of Resistance in Tropical Maize Inbred Lines to Chilopartellus Stem Borers

S. Munyiri, S. Mugo, M. Otim, J. Mwololo, P. Okori
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引用次数: 13

Abstract

Developing maize with durable resistance to maize stem borers could be enhanced by identifying genotypes with different mechanisms of resistance and pyramiding the resistances into high yielding genotypes. This study was carried out on 120 CIMMYT tropical maize inbred lines to identify the most important mechanisms of resistance that could be used to discriminate the germplasm into resistant or susceptible categories. The experiment was laid in an α-lattice design, and replicated three times during the 2011/12 seasons. Traits measured were leaf toughness, stem penetrometer resistance, trichome density, stem sugar content, leaf damage, number of stem exit holes and stem cumulative tunnel length. A selection index was computed and categorized the 120 inbred lines into 33 resistant, 29 moderately resistant, 31 moderately susceptible and 27 susceptible. The most resistant lines were those derived from the CIMMYT multiple borer-resistant populations with CKSBL10039 being most resistant and CML395 most susceptible with indices of 0.49 and 1.84, respectively. Trichome density, leaf toughness and stem sugar content in that order were the most important traits in discriminating the lines into resistance and susceptible categories. More research is needed to classify the specific types of trichomes and sugars present in both resistant and susceptible inbred lines.
热带玉米自交系对螟虫的抗性机制及来源
鉴定具有不同抗性机制的基因型,并将其转化为高产基因型,可以提高玉米对螟虫的耐久抗性。本研究对120个CIMMYT热带玉米自交系进行了研究,以确定最重要的抗性机制,可用于将种质资源区分为抗性或易感类别。实验采用α-晶格设计,并在2011/12季节重复了三次。测定的性状包括叶片韧性、茎秆抗穿透性、毛状体密度、茎秆含糖量、叶片损伤程度、茎秆出口孔数和茎秆累积隧道长度。通过选择指数计算,将120份自交系分为抗33份、中抗29份、中感31份和感27份。其中,CKSBL10039抗性最强,CML395最敏感,指数分别为0.49和1.84。毛状体密度、叶片韧性和茎含糖量是区分抗性和敏感品系的最重要性状。需要更多的研究来对抗性和易感自交系中存在的特定类型的毛状体和糖进行分类。
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