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Defence-related gene expression in transgenic lemon plants producing an antimicrobial Trichoderma harzianum endochitinase during fungal infection

机译:在真菌感染过程中产生抗微生物哈茨木霉内切酶的转基因柠檬植物中与防御相关的基因表达

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Constitutive over-expression of antifungal genes from microorganisms involved in plant defence mechanisms represents a promising strategy for conferring genetic resistance against a broad range of plant pathogenic fungi. In the present work, two transgenic lemon clones with the chit42 gene from Trichoderma harzianum were tested for resistance to fungal disease and expression level of defence-related genes was evaluated. Different resistance-related 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 inoculated with Botrytis cinerea, the causal agent of grey mould in citrus. Expression of genes that encode gluthatione peroxidase (GPX), a producer of ROS, chitinases, glucanases (SAR), PAL, HPL, and AOS (ISR) was measured by quantitative PCR during the first 24 h after leaf inoculation. Leaves of transgenic lemon plants inoculated with B. cinerea showed significantly less lesion development 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 enhanced ROS production and ISR establishment, while the expression of native chitinase and glucanase genes involved in SAR was down-regulated.
机译:来自参与植物防御机制的微生物的抗真菌基因的组成型过表达代表赋予对广泛的植物病原性真菌的遗传抗性的有前途的策略。在本工作中,测试了两个来自哈茨木霉的chit42基因的转基因柠檬克隆对真菌疾病的抵抗力,并评估了防御相关基因的表达水平。在接种灰葡萄孢(灰霉病的病原体)的转基因和野生型柠檬无性系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)。柑桔霉菌。在叶片接种后的最初24小时内,通过定量PCR测定了编码谷氨酸过氧化物酶(GPX),ROS,几丁质酶,葡聚糖酶(SAR),PAL,HPL和AOS(ISR)的产生者的基因的表达。灰质芽孢杆菌接种的转基因柠檬植物的叶片显示出比野生型叶片明显更少的病斑发展。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建立增强相关的基因的转录水平提高了三倍而增强,而参与SAR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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