Wang XueFei, Wang HuaLing, Su XiaoYu, Zhang Jie, Bai JiaWei, Zeng JianYong, Li HuiPing
College of Forestry, Hebei Agricultural University, Hebei, China.
Hebei Urban Forest Health Technology Innovation Center, Hebei, China.
Arch Insect Biochem Physiol. 2023 Jan;112(1):e21978. doi: 10.1002/arch.21978. Epub 2022 Nov 15.
The Asian long-horned beetle, Anoplophora glabripennies (Motschulsky), is a destructive wood-boring pest that is capable of killing healthy trees. Gut bacteria in the larvae of the wood-boring pest is essential for the fitness of hosts. However, little is known about the structure of the intestinal microbiome of A. glabripennies during larval development. Here, we used Illumina MiSeq high-throughput sequencing technology to analyze the larval intestinal bacterial communities of A. glabripennies at the stages of newly hatched larvae, 1st instar larvae and 4th instar larvae. Significant differences were found in larval gut microbial community structure at different larvae developmental stages. Different dominant genus was detected during larval development. Acinetobacter were dominant in the newly hatched larvae, Enterobacter and Raoultella in the 1st instar larvae, and Enterococcus and Gibbsiella in the 4th instar larvae. The microbial richness in the newly hatched larvae was higher than those in the 1st and 4th instar larvae. Many important functions of the intestinal microbiome were predicted, for example, fermentation and chemoheterotrophy functions that may play an important role in insect growth and development was detected in the bacteria at all tested stages. However, some specific functions are found to be associated with different development stages. Our study provides a theoretical basis for investigating the function of the intestinal symbiosis bacteria of A. glabripennies.
亚洲长角天牛(Anoplophora glabripennies (Motschulsky))是一种具有破坏性的蛀木害虫,能够杀死健康树木。这种蛀木害虫幼虫体内的肠道细菌对宿主的健康至关重要。然而,对于亚洲长角天牛幼虫发育过程中肠道微生物组的结构,人们了解甚少。在此,我们利用Illumina MiSeq高通量测序技术,分析了亚洲长角天牛在新孵化幼虫、1龄幼虫和4龄幼虫阶段的幼虫肠道细菌群落。结果发现,在不同幼虫发育阶段,幼虫肠道微生物群落结构存在显著差异。在幼虫发育过程中检测到不同的优势菌属。不动杆菌在新孵化幼虫中占主导地位,肠杆菌和拉乌尔菌在1龄幼虫中占主导地位,而肠球菌和吉氏菌在4龄幼虫中占主导地位。新孵化幼虫中的微生物丰富度高于1龄和4龄幼虫。对肠道微生物组的许多重要功能进行了预测,例如,在所有测试阶段的细菌中都检测到了可能在昆虫生长发育中起重要作用的发酵和化学异养功能。然而,发现一些特定功能与不同发育阶段相关。我们的研究为探究亚洲长角天牛肠道共生细菌的功能提供了理论依据。