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首页> 外文期刊>Molecular Genetics and Genomics >Comparative transcription profiling analyses of maize reveals candidate defensive genes for seedling resistance against corn earworm
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Comparative transcription profiling analyses of maize reveals candidate defensive genes for seedling resistance against corn earworm

机译:玉米的转录比较分析揭示了候选防御基因,可抵抗玉米穗虫的幼苗

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摘要

As maize seedlings germinate into the soil, they encounter an environment teeming with insects seeking rich sources of nutrition. Maize presumably has developed a number of molecular mechanisms to ensure survival at the beginning of its life cycle. Comparative transcription analysis using microarrays was utilized to document the expression of a number of genes with potential defensive functions in seedling tissue. In addition to elevated levels of the genes involved in the biosynthesis of DIMBOA (2,4-dihydroxy-7-methoxy-1,4-benzoxazin-3-one), an anti-insect resistance molecule, other highly expressed genes in the seedling encode the following putative defensive proteins: defensin, hydroxyproline and proline-rich protein, thaumatin-like protein, lipase, cystatin, protease inhibitor, and a variety of proteases. The potential resistance genes identified occurred mainly on chromosomes 1 and 5 in the B73 genome. Analysis of promoters of seven DIMBOA biosynthetic genes identified three transcription factor binding sites that are possibly involved in regulation of the DIMBOA biosynthetic pathway. The results indicate that maize employs a wide variety of potential resistance mechanisms in seedling tissue to resist a possible insect attack.
机译:当玉米幼苗发芽到土壤中时,它们会遇到一个充满昆虫的环境,这些昆虫正在寻找丰富的营养来源。玉米可能已经开发出多种分子机制,以确保在其生命周期开始时得以生存。使用微阵列的比较转录分析被用来证明许多具有潜在防御功能的基因在幼苗组织中的表达。除了提高DIMBOA的生物合成相关基因水平(2,4-二羟基-7-甲氧基-1,4-苯并恶嗪-3-one)(一种抗虫抗性分子)外,其他高表达基因也在幼苗中编码以下假定的防御蛋白:防御素,羟脯氨酸和脯氨酸丰富的蛋白,类甜蛋白的蛋白,脂肪酶,胱抑素,蛋白酶抑制剂和各种蛋白酶。鉴定出的潜在抗性基因主要发生在B73基因组的1号和5号染色体上。对七个DIMBOA生物合成基因启动子的分析确定了可能与DIMBOA生物合成途径调控有关的三个转录因子结合位点。结果表明,玉米在幼苗组织中采用了多种潜在的抗性机制来抵抗可能的昆虫侵袭。

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