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NTR-1 对两种亲缘关系密切的线虫物种(松材线虫和拟松材线虫)之间不对称交配的重要贡献。

NTR-1's essential contribution to asymmetric mating between two sibling nematode Species: Bursaphelenchus xylophilus and B. Mucronatus.

机构信息

College of Forestry and Biotechnology, Zhejiang A & F University, Hangzhou 311300, China.

College of Forestry and Biotechnology, Zhejiang A & F University, Hangzhou 311300, China; School of BioSciences, The University of Melbourne, Victoria 3010, Australia.

出版信息

Gene. 2024 Feb 15;895:148006. doi: 10.1016/j.gene.2023.148006. Epub 2023 Nov 17.

DOI:10.1016/j.gene.2023.148006
PMID:37979950
Abstract

The pine-wood invasive species nematode Bursaphelenchus xylophilus causes great forestry damage globally, particularly in Eurasia. B. xylophilus can hybridize with its native sibling, Bursaphelenchus mucronatus, with whom it shares an interestingly asymmetric mating behavior. However, the molecular mechanism underlying interspecific asymmetric mating has yet to be clarified. ntr-1, a nematocin receptor gene, is involved in an oxytocin/vasopressin-like signaling system that can regulate reproduction. Structural analysis using bioinformatics revealed that both Bxy- and Bmu-ntr-1 encode 7TM-GPCR, a conserved sequence. In situ hybridization and qPCR showed that both Bxy- and Bmu-ntr-1 were highly expressed in adult nematodes. Specifically, Bxy-ntr-1 was expressed in the vulva of females and caudal gonad of males, whereas Bmu-ntr-1 was expressed in the postal vulva and uterus of females and the whole gonads of males. Furthermore, RNAi of ntr-1 further demonstrated the biological function of interspecific mating: ntr-1 can regulate mating behavior, lead to male-female specificity, and ultimately result in interspecific differences. In B. mucronatus, ntr-1 influenced male mating more than female mating success, while downregulation of ntr-1 in B. xylophilus resulted in a significant decline in the female mating rate. Competitive tests revealed that the mating rate of the cross significantly declined after downregulation of Bxy♀- and Bmu♂-ntr-1, but no obvious change occurred in the reciprocal cross. Thus, we speculate that ntr-1 may be the key factor behind interspecific asymmetric mating. The current study (1) demonstrated the regulatory function of ntr-1 on mating behavior and (2) theoretically revealed the molecular basis of interspecific asymmetric mating.

摘要

松材线虫入侵种松材线虫(Bursaphelenchus xylophilus)在全球范围内造成了巨大的林业破坏,尤其是在欧亚大陆。B. xylophilus 可以与本地种 Bursaphelenchus mucronatus 杂交,两者具有有趣的不对称交配行为。然而,种间不对称交配的分子机制尚不清楚。ntr-1 是一种线虫素受体基因,参与了一种类似于催产素/加压素的信号转导系统,可调节生殖。使用生物信息学进行结构分析表明,Bxy-和 Bmu-ntr-1 均编码 7TM-GPCR,这是一个保守序列。原位杂交和 qPCR 显示,Bxy-和 Bmu-ntr-1 在成年线虫中均高度表达。具体而言,Bxy-ntr-1 在雌性的阴道和雄性的尾性腺中表达,而 Bmu-ntr-1 在雌性的后阴道和子宫以及雄性的整个性腺中表达。此外,ntr-1 的 RNAi 进一步证明了种间交配的生物学功能:ntr-1 可以调节交配行为,导致雌雄特异性,并最终导致种间差异。在 B. mucronatus 中,ntr-1 对雄性交配的影响大于对雌性交配成功率的影响,而 B. xylophilus 中 ntr-1 的下调导致雌性交配率显著下降。竞争测试显示,下调 Bxy♀-和 Bmu♂-ntr-1 后,杂交的交配率显著下降,但在相反的杂交中没有明显变化。因此,我们推测 ntr-1 可能是种间不对称交配的关键因素。本研究(1)证明了 ntr-1 对交配行为的调节功能,(2)从理论上揭示了种间不对称交配的分子基础。

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