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首页> 外文期刊>Environmental and experimental botany >Pretreatment with Trichoderma harzianum alleviates waterlogging-induced growth alterations in tomato seedlings by modulating physiological, biochemical, and molecular mechanisms
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Pretreatment with Trichoderma harzianum alleviates waterlogging-induced growth alterations in tomato seedlings by modulating physiological, biochemical, and molecular mechanisms

机译:用Trichoderma Harzianum通过调节生理,生物化学和分子机制来减轻番茄幼苗中的水涝诱导的生长改变

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摘要

We studied the role of Trichoderma harzianum (TH) in improving the physiological, biochemical, hormonal, and molecular parameters of tomato seedlings grown under waterlogging (WL, for 14 and 28 days). Pretreatment with TH significantly improved the growth of tomato by enhancing the chlorophyll synthesis and uptake of essential ions, including nitrogen, phosphorus, and potassium. A reduction in anthocyanin content was also ameliorated significantly by TH pretreatment. TH significantly mitigated the WL-induced decline in height and in fresh and dry biomass accumulation. Accumulation of proline, flavonoids, anthocyanin, sugars, and soluble protein increased with TH pretreatment. At both growth periods (14 and 28 days after treatment [DAT]), the accumulation of secondary metabolites, including total phenols and flavonoids, and the redox components (tocopherols) were increased significantly by TH pretreatment. Increased synthesis of metabolites maintained the antioxidant status of tomato, resulting in amelioration of WL-induced oxidative effects on membranes. WL and TH treatments significantly increased ethylene production and decreased abscisic acid content at both growth periods. The accumulation of reactive oxygen species, like hydrogen peroxide, in TH treated seedlings was correlated with the upregulation of the Fe-SOD gene. WL stress triggered the activity of sucrose synthase (SUS), lactate dehydrogenase (LDH), and pyruvate decarboxylase (PDC), which reached a maximum at 14 DAT, and TH pretreatment resulted in further enhancement above control and WL-stressed levels. Quantitative RTPCR revealed differential expression of genes, where Fe-SOD and ADH were upregulated due to TH treatment and ARE, AGO, ERF, and aquaporin were downregulated relative to control plants. Pretreatment of tomato seedlings with TH improved tolerance to WL by maintaining the antioxidant status, sugar metabolism, and expression of critical genes. These results suggest that TH pretreatment is an effective way to improve WL tolerance in tomato at vegetative stage.
机译:我们研究了Trichoderma harzianum(Th)在提高番茄幼苗(WL,14和28天)的生理,生物化学,激素和分子参数的作用。通过增强叶绿素合成和对必需离子的摄取,包括氮,磷和钾来显着提高番茄的生长显着改善了番茄的生长。对预处理的预处理也显着改善了花青素含量的降低。 Th显着减轻了WL诱导的高度和新鲜干燥生物质积累的下降。预处理增加了脯氨酸,黄酮类化合物,花青素,糖和可溶性蛋白质的累积。在生长期(治疗后14天和28天),次级代谢物的积累,包括总酚和黄酮,以及氧化还原组分(生育酚)对预处理显着增加。增加的代谢物合成维持番茄的抗氧化剂状态,导致WL诱导对膜的氧化作用的改善。 WL和Th治疗显着增加了乙烯生产并降低了两种生长期间的脱落酸含量。与Fe-SOD基因的上调相关的反应性氧物质的积累与过氧化氢。 WL应力引发了蔗糖合成酶(SUS),乳酸脱氢酶(LDH)和丙酮酸脱羧酶(PDC)的活性,其在DAT中达到最大值,并且预处理结果进一步增强了对照和WL胁迫水平。定量RTPCR揭示了基因的差异表达,其中由于Th治疗,Fe-SOD和ADH是较上调的,ERF和Aquaporin相对于对照植物进行了下调。通过维持抗氧化状态,糖代谢和临界基因的表达,对番茄幼苗改善对WL的耐受性。这些结果表明,Th预处理是提高植物阶段在番茄中的有效途径。

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