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评估一种新型生物刺激素对增强菜豆潜叶蝇抗性和植物生长的影响。

Assessing the effects of a novel biostimulant to enhance leafminer resistance and plant growth on common bean.

机构信息

Department of Biochemistry, Faculty of Agriculture, Cairo University, Giza, Egypt.

Department of Crops Technology Research, Food Technology Research Institute, Agricultural Research Centre, Giza, Egypt.

出版信息

Sci Rep. 2021 Oct 8;11(1):20020. doi: 10.1038/s41598-021-98902-z.

Abstract

The leafminer Liriomyza trifolii is one of the major insects that affect Phaseolus vulgaris production worldwide. Novel and safe biobased stimulator compound (BSTC) with micronutrient-amino acid chelated compounds was developed from natural compounds and was used for foliar spray of P. vulgaris. Treated plants showed significantly increased in quality and productivity as well as significant reduction in leafminer infestation by close the tunnel end resulting in larvae suffocation and death. BSTC contains chemical composition that has important function in inducing immunity and resistance against insects, enhance plant growth and production. Also, HPLC showed that the assembled BSTC is rich in nucleobases than yeast extract (> 56 fold). Aminochelation zinc enhanced the rate of absorption of nutrient compounds and could participate in safe biofortification strategy. The expression of plant defense related genes under BSTC treatment revealed strong correlations between the transcription rates of defense related genes. Based on binding energies and interacting residues of six vital insect proteins, the best-docked complexes was obtained with disodium 5'-inosinate, delphinidin 3-glucoside and hyperoside. Obtained findings indicate that the foliar application of BSTC can enhance plant growth and productivity, uptake of important elements, expression of defense related genes and inhibit insect essential genes.

摘要

潜叶蝇 Liriomyza trifolii 是世界范围内影响菜豆生产的主要昆虫之一。新型安全的生物基刺激化合物(BSTC)由天然化合物开发而成,并用于菜豆的叶面喷施。处理过的植物在质量和生产力上都有显著提高,同时潜叶蝇的侵害也显著减少,因为隧道末端封闭导致幼虫窒息和死亡。BSTC 含有在诱导植物免疫和抗虫性、增强植物生长和生产力方面具有重要功能的化学成分。此外,HPLC 显示,组装的 BSTC 比酵母提取物富含核苷碱基(>56 倍)。氨基螯合锌增强了营养化合物的吸收速率,并可参与安全的生物强化策略。BSTC 处理下植物防御相关基因的表达显示出防御相关基因转录率之间存在很强的相关性。基于 6 种重要昆虫蛋白的结合能和相互作用残基,获得了与 5′-肌苷酸钠、飞燕草素 3-葡萄糖苷和金丝桃苷最佳对接的复合物。研究结果表明,叶面喷施 BSTC 可以促进植物生长和生产力、重要元素的吸收、防御相关基因的表达,并抑制昆虫必需基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5344/8501134/3a1382f1a775/41598_2021_98902_Fig1_HTML.jpg

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