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首页> 外文期刊>Arthropod-Plant Interactions >Jasmonate-induced defenses in tomato against Helicoverpa armigera depend in part on nutrient availability, but artificial induction via methyl jasmonate does not
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Jasmonate-induced defenses in tomato against Helicoverpa armigera depend in part on nutrient availability, but artificial induction via methyl jasmonate does not

机译:茉莉酸诱导的番茄对棉铃虫的防御作用部分取决于养分的可利用性,但通过茉莉酸甲酯的人工诱导并不

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The effects of synthetic phytohormones, such as jasmonic acid (JA) and methyl jasmonate (MeJA), on induced plant defenses and protection against herbivores have been well documented. Previous research on tomatoes has shown that exogenous JA and MeJA can elevate the activities of defensive enzymes, like polyphenol oxidases (PPOs) and proteinase inhibitors (PIs), and reduce the performance of herbivores. While such defenses are believed to depend on the availability of resources for the plant, data on the relationship between nutrient availability and tomato JA defenses are scarce. For this study, we grew cultivated tomatoes under different nutrient regimes, that is, high, moderate, or low, and sprayed them with 1.5 mM MeJA or a control solution to assess (1) the oviposition preference of Helicoverpa armigera moths for these plants; (2) the plant’s total nitrogen and protein content; (3) the plant’s PPO and PI activity; and finally (4) the performance of H. armigera larvae on these plants. The results revealed that adult moths selecting an oviposition site did not discriminate between the treatments. Plants had a higher N-content when grown under a high-nutrient regime, but did not differ in total protein, irrespective of the MeJA treatment. Also, PPO activity was the same across treatments, but trypsin inhibitor (TPI) activity was highest in plants grown under a moderate fertilization regime. MeJA-induced TPI activity in all treatments was high but equal. Larvae had the highest weight gain on plants grown under a moderate fertilization regime. Interestingly, they stopped feeding on plants induced with MeJA, resulting in 100 % mortality. Our results indicate that the plant’s normal TPI activity is maximal under moderate-nutrient conditions and that this, surprisingly, coincides with maximal larval weight gain. In contrast, induction of TPI activity via MeJA is much stronger and independent of the plant’s fertilization history yet suffices to make the larvae stop feeding. We speculate that a moderate induction of TPI activity may result in a compensatory feeding response while inducing a high level of TPI activity will lead to enhanced protection.
机译:茉莉酸(JA)和茉莉酸甲酯(MeJA)等合成植物激素对诱导的植物防御和对草食动物的保护作用已得到充分证明。先前对西红柿的研究表明,外源JA和MeJA可以提高防御酶的活性,例如多酚氧化酶(PPO)和蛋白酶抑制剂(PIs),并降低草食动物的性能。尽管人们认为这种防御取决于植物资源的可利用性,但是关于养分可利用性与番茄JA防御之间关系的数据却很少。在本研究中,我们以不同的营养体系(高,中或低)种植了栽培的番茄,并向其喷洒1.5 mM MeJA或对照溶液以评估(1)棉铃虫蛾对这些植物的产卵偏好; (2)植物的总氮和蛋白质含量; (3)工厂的PPO和PI活性;最后(4)棉铃虫幼虫在这些植物上的表现。结果表明,选择产卵位的成年蛾没有区别对待。在高营养条件下生长时,植物具有较高的N含量,但无论MeJA处理如何,其总蛋白质均无差异。同样,各处理过程中PPO活性相同,但在中等施肥方案下生长的植物中胰蛋白酶抑制剂(TPI)活性最高。在所有处理中,MeJA诱导的TPI活性很高,但相等。在中等施肥条件下生长的植物,幼虫增重最高。有趣的是,他们停止以MeJA诱导的植物为食,导致100%的死亡率。我们的结果表明,在中等营养条件下,植物的正常TPI活性最高,这令人惊讶地与最大的幼体增重相符。相比之下,通过MeJA对TPI活性的诱导要强得多,并且与植物的受精历史无关,但足以使幼虫停止进食。我们推测,适度诱导TPI活性可能导致代偿性饲喂反应,而诱导高水平的TPI活性则会增强保护作用。

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