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Variation in the pH of experimental diets affects the performance of Lymantria dispar asiatica larvae and its gut microbiota

机译:实验饮食的pH的变化影响Lymantria Disiatica幼虫及其肠道微生物的表现

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摘要

To study dietary pH effects on Lymantria dispar asiatica larvae and provide a theoretical basis for its control in different forests, phosphate buffers (PBs) of pH 6, 7, and 8 were used to prepare experimental diets. The diet prepared with pH 6 PB was named as DPB6, with pH 8 PB as DPB8, and with pH 7 PB as DPB7 (control). The dietary pH was 5.00 in DPB6, 6.05 in control, and 6.50 in DPB8. After feeding on the diets with different pH values for 84 hr, fourth-instar caterpillars were randomly collected. Growth and various physiological traits were determined and 16S recombinant DNA sequencing was performed using the intestinal microflora of surviving larvae. Results showed that the mortality was 30% in DPB6, and 10% in DPB8, while no mortality was observed in control. The partial least squares discriminant analyses suggested that diets prepared with PB of different pH resulted in different food intake, amount of produced feces, weight gain, digestive enzyme activities, and antioxidant enzyme activities in larvae. Interestingly, both the highest weight gain and the lowest total antioxidant capacities were seen in control larvae. Results also showed that the larval gut microbiota community structure was significantly affected by dietary pH. Moreover, linear discriminant analysis effect size suggested that the family Acetobacteraceae in control, genus Prevotella in DPB8, and genus Lactococcus, family Flavobacteriaceae, family Mitochondria, and family Burkholderiaceae in DPB6 contributed to the diversity of the larval gut microbial community.
机译:为了研究对Lymantria Divear Asiatica幼虫的膳食pH效应,并为其对不同森林的控制提供理论依据,使用pH 6,7和8的磷酸盐缓冲液(PBS)制备实验饮食。用pH6Pb制备的饮食被命名为DPB6,pH8pb为DPB8,并用pH 7 Pb作为DPB7(对照)。 DPB6,6.05中的膳食pH为5.00,DPB8中为6.50。在用不同pH值的饮食上喂养84小时的饮食后,随机收集第四龄毛细胞。测定生长和各种生理性状,使用存活的幼虫的肠道微生物进行16S重组DNA测序。结果表明,DPB6的死亡率为30%,DPB8中的10%,同时对照组无死亡率。局部最小二乘判别分析表明,用不同pH的Pb制备的饮食导致不同的食物摄入量,产生的粪便量,体重增加,消化酶活性和幼虫抗氧化酶活性。有趣的是,在对照幼虫中可以看到最高的体重增加和最低总抗氧化能力。结果还表明,幼虫肠道微生物群落结构受到膳食pH的显着影响。此外,线性判别分析效果规模表明,DPB8的对照,PREVOTALA的家族乙酰杆菌,乳球菌属,家族意大利菌族,家族线粒体和家族线粒体和家庭Burkholderiaceae在DPB6中有助于幼虫肠道微生物群落的多样性。

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