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Fungal Infection Affects Gene Expression in Transgenic Lemon Plants Producing an Antimicrobial Trichoderma harzianum Endochitinase

机译:真菌感染影响转基因柠檬植物生产抗微生物木霉哈氏菌内切酶的基因表达。

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The development of disease-resistant genotype has been one of the top priorities in citrus genetic improvement programs. Several fungi diseases cause serious threat to lemon [ Citrus limon (L.)Burm. f. ] cultivation. Transgenic lemon clones with chit42 gene from Trichoderma harzianum have been obtained and showed increased resistance to some fungi. In the present work, the expression levels of several genes involved in biotic stress responses in chitA2 transgenic lemon clones upon Botrytis cinerea innoculation was investigated. Different resistancerelated processes, such as production of reactive oxygen species (ROS) , systemic acquired resistance (SAR) and induced systemic resistance (ISR) , were monitored in transgenic and wild type lemon clones. Expression of genes that encode gluthatione peroxidase (GPX) , a producer of ROS, chitinases, glucanases (SAR) , PAL, HPL, and AOS (ISR) was measured by quantitative RT-PCR during the first 24 hours after leaf inoculation. Leaves of transgenic lemon plants inoculated with B. cinerea showed significantly less lesion development and disease incidence than wild type leaves. Tissues from detached leaves of different transgenic lemon clones showed a significant correlation between resistance and transgene expression. On the other hand, the over-expression of the transgenic fungal gene enhanced by two-three folds transcript levels of genes associated with ROS production and ISR establishment, while the expression of native chitinase and glucanase genes involved in SAR was down-regulated.
机译:抗病基因型的发展一直是柑橘遗传改良计划的重中之重。几种真菌疾病会对柠檬造成严重威胁[柑橘柠檬(L.)Burm。 F。 ]栽培。已经获得了来自哈茨木霉(Trichoderma harzianum)的具有chit42基因的转基因柠檬克隆,并显示出其对某些真菌的抗性增强。在目前的工作中,研究了灰葡萄孢菌接种后在chitA2转基因柠檬克隆中涉及生物胁迫响应的几种基因的表达水平。在转基因和野生型柠檬克隆中监测了与抗性相关的不同过程,例如活性氧(ROS)的产生,系统获得性抗性(SAR)和诱导性系统抗性(ISR)。在叶片接种后的最初24小时内,通过定量RT-PCR测量了编码ROS,几丁质酶,葡聚糖酶(SAR),PAL,HPL和AOS(ISR)产生者的谷胱甘肽过氧化物酶(GPX)的基因表达。与野生型叶片相比,接种灰质双歧杆菌的转基因柠檬植物的叶片显示出明显更少的病灶发展和发病率。来自不同转基因柠檬克隆的离体叶片的组织显示出抗性与转基因表达之间的显着相关性。另一方面,转基因真菌基因的过表达被与ROS产生和ISR建立有关的基因的转录水平提高了三倍,而与SAR相关的天然几丁质酶和葡聚糖酶基因的表达却被下调。

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