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首页> 外文期刊>The Florida entomologist >Physiological Basis of Fall Armyworm (Lepidoptera: Noctuidae) Resistance in Seedlings of Maize Inbred Lines with Varying Levels of Silk Maysin
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Physiological Basis of Fall Armyworm (Lepidoptera: Noctuidae) Resistance in Seedlings of Maize Inbred Lines with Varying Levels of Silk Maysin

机译:蚕丝Maysin水平不同的玉米自交系幼苗对秋季粘虫(鳞翅目:夜蛾科)抗性的生理基础

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To assess both foliage- and ear-feeding insect resistance in the same maize inbred lines, fall armyworm, Spodoptera frugiperda (J. E. Smith) (Lepidoptera: Noctuidae) resistance at the seedling stage was examined in 6 corn inbred lines, including 4 CIMMYT maize inbred lines (CML333, CML335, CML 336, and CML338) with varying levels of silk maysin that confers corn earworm, Helicoverpa zea (Boddie), resistance and controls (fall armyworm-resistant Mp708 and susceptible AB24E). Fall armyworm injury rating and chlorophyll content were examined under greenhouse and field conditions. Plant height, plant stem circumference, and photosynthesis-related measurements were recorded on uninfested and infested plants only under greenhouse conditions. Injury ratings on CML333, CML336, and CML338 (with a range of low to high levels of silk maysin) were the same as for the resistant control (Mp708), and were significantly lower than for the susceptible control AB24E and CML335 (without silk maysin). Plant height, plant stem circumference, and chlorophyll content varied among the 6 inbred lines, but were not consistently correlated to resistance at the seedling stage. Photosynthetic rate was negatively affected by injury in AB24E, CML333, CML335, and CML336, but not affected in CML338 and Mp708. The reduction in photosynthetic rate of fall armyworm-susceptible AB24E, and in resistant CML333 and CML336 indicated that insect resistance in CML333 and CML336 might not be related to photosynthetic rate. At the same time, the data suggest that CML338 and Mp708 were tolerant to herbivory because no difference in either photosynthetic rate or photosynthetic capacity was detected in either inbred line between uninfested and injured corn seedlings. Further examination of photosynthetic capacity based on A/Ci and light response curves supported this resistance mechanism categorization. This experiment indicated that corn earworm-resistant corn inbred lines with varying levels of silk maysin could confer resistance to foliage-feeding fall armyworm at its seedling stage.View this article in BioOne
机译:为了评估同一玉米自交系的叶食和耳饲昆虫抗性,在6个玉米自交系(包括4个CIMMYT玉米自交系)中检测了秋夜蛾,夜蛾(Spodoptera frugiperda(JE Smith)(鳞翅目:夜蛾科))在幼苗期的抗性。品系(CML333,CML335,CML 336和CML338)具有不同水平的蚕丝蛋黄素,赋予玉米穗虫,Helicoverpa zea(Boddie),抗性和对照(抗粘虫性Mp708和易感AB24E)。在温室和田间条件下检查秋天粘虫的伤害等级和叶绿素含量。仅在温室条件下,在未受感染和受感染的植物上记录植物高度,植物茎周长和与光合作用相关的测量值。 CML333,CML336和CML338(丝绸蛋白的含量范围从低到高)的伤害等级与抗药性对照(Mp708)相同,并且显着低于易感对照AB24E和CML335(无丝绸素蛋白) )。 6个自交系的株高,株茎周长和叶绿素含量不同,但与苗期的抗性并没有始终相关。在AB24E,CML333,CML335和CML336中,光合速率受损伤的不利影响,但在CML338和Mp708中不受光合速率的影响。秋季粘虫敏感型AB24E的光合速率降低,以及抗性CML333和CML336的降低表明CML333和CML336的抗虫性可能与光合速率无关。同时,数据表明CML338和Mp708耐草食性,因为在未受侵染和受伤害的玉米幼苗之间的两个自交系中均未检测到光合速率或光合能力的差异。根据A / Ci和光响应曲线对光合能力的进一步检查支持了这种抗性机制的分类。该实验表明,具有不同水平蚕丝蛋黄素的抗玉米穗虫玉米自交系在幼苗期可以赋予抗食性的秋天粘虫。

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