Zhao Yayun, Sun Tao, Li Yang, Yang Zhibo, Chen Jun, Wang Jing, Yu Xinlong, Tang Xuexi, Xiao Hui
College of Marine Life Sciences, Ocean University of China, Qingdao, China.
Laboratory for Marine Ecology and Environmental Science, Qingdao Marine Science and Technology Center, Qingdao, China.
Front Microbiol. 2024 Mar 15;15:1334918. doi: 10.3389/fmicb.2024.1334918. eCollection 2024.
Endophytic bacteria have a complex coevolutionary relationship with their host macroalgae. Dioecious macroalgae are important producers in marine ecosystems, but there is still a lack of research on how sex influences their endophytic bacteria. In this study, the endophytic bacterial communities in male and female and their reproductive tissues (receptacles) were compared using culture methods and high-throughput sequencing. The endophytic bacterial communities detected by the two methods were different. Among the 78 isolated strains, the dominant phylum, genus, and species were , , and , respectively, in the algal bodies, while in the receptacles, they were , , and . However, 24 phyla and 349 genera of endophytic bacteria were identified by high-throughput sequencing, and the dominant phylum and genus were and , respectively, in both the algal body and the receptacles. The two methods showed similar compositions of endophytic bacterial communities between the samples of different sexes, but the relative abundances of dominant and specific taxa were different. The high-throughput sequencing results showed more clearly that the sex of the host alga had an effect on its endophyte community assembly and a greater effect on the endophytic bacterial community in the receptacles. Moreover, most specific bacteria and predicted functional genes that differed between the samples from the males and females were related to metabolism, suggesting that metabolic differences are the main causes of sex differences in the endophytic bacterial community. Our research is the first to show that host sex contributes to the composition of endophytic bacterial communities in dioecious marine macroalgae. The results enrich the database of endophytic bacteria of dioecious marine macroalgae and pave the way for better understanding the assembly mechanism of the endophytic bacterial community of algae.
内生细菌与其宿主大型藻类有着复杂的协同进化关系。雌雄异株的大型藻类是海洋生态系统中的重要生产者,但关于性别如何影响其内生细菌的研究仍然缺乏。在本研究中,使用培养方法和高通量测序对雄性和雌性及其生殖组织(生殖托)中的内生细菌群落进行了比较。两种方法检测到的内生细菌群落不同。在分离出的78株菌株中,藻体中优势菌门、属和种分别为 、 和 ,而在生殖托中分别为 、 和 。然而,通过高通量测序鉴定出24个内生细菌菌门和349个属,藻体和生殖托中的优势菌门和属分别为 和 。两种方法显示不同性别样本之间内生细菌群落组成相似,但优势和特定分类群的相对丰度不同。高通量测序结果更清楚地表明,宿主藻类的性别对其内生菌群落组装有影响,对生殖托中的内生细菌群落影响更大。此外,雄性和雌性样本之间不同的大多数特定细菌和预测功能基因与代谢有关,这表明代谢差异是内生细菌群落性别差异的主要原因。我们的研究首次表明宿主性别对雌雄异株海洋大型藻类内生细菌群落的组成有贡献。研究结果丰富了雌雄异株海洋大型藻类内生细菌的数据库,并为更好地理解藻类内生细菌群落的组装机制铺平了道路。