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林烟草与绒毛状烟草叶面表皮毛表型分化及分子基础的比较

Phenotypic differentiations of leaf trichome of Nicotiana sylvestris and Nicotiana tomentosiformis and their molecular basis

  • 摘要: 为探究林烟草与绒毛状烟草叶面表皮毛类型构成、分泌物成分及遗传调控机制的差异,采用电子显微镜对叶面表皮毛进行观察与统计,通过气相色谱-质谱联用(GC-MS)技术分析腺毛分泌物成分,并利用实时荧光定量PCR(qRT-PCR)技术检测表皮毛发育及腺毛分泌物合成相关基因的表达水平。结果表明:绒毛状烟草叶面以保护毛和短柄腺毛为主,长柄腺毛稀少;而林烟草叶面则以长柄腺毛为主。林烟草叶面腺毛分泌物中西柏烷类二萜含量显著高于绒毛状烟草,且后者腺毛分泌物中未检出蔗糖酯。西柏烷类二萜、赖百当类二萜和蔗糖酯合成关键基因在林烟草中表达水平较高;表皮毛发育相关基因NtARF3NtCycB2NtAquaporinNtMIXTANtBCR2a在绒毛状烟草中表达水平较高,而NtHD1NtSAP1在林烟草中表达水平较高。总之,林烟草与绒毛状烟草在演化过程中,其表皮毛表型发生了分化并形成了不同的代谢适应策略,该差异由腺毛分泌物合成关键基因的表达模式及表皮毛遗传发育调控网络共同决定。

     

    Abstract: To examine the differences in the type, secretion composition and genetic regulation mechanisms of leaf trichomes between Nicotiana sylvestris and Nicotiana tomentosiformis, the leaf trichomes were observed and counted by electron microscopy, the composition of glandular trichome secretions were analyzed by gas chromatography-mass spectrometry (GC-MS), and trichome development and the expression levels of glandular trichome secretions synthesis related genes were analyzed by real-time fluorescent quantitative PCR (qRT-PCR). The results showed that the leaf surface of N. tomentosiformis was mainly covered by protective trichomes and short stalk glandular trichomes, and long stalk glandular trichomes were rare. The leaf surface of N. sylvestris was mainly covered by long glandular trichomes. The content of cembranoid diterpenoids in the glandular trichome secretions of N. sylvestris was significantly higher than that of N. tomentosiformis, and sucrose esters were not detected in the glandular trichome secretions of the latter. The key genes associated with the synthesis of cembranoid diterpenoids, labdanoid diterpenoids and sucrose esters were highly expressed in N. sylvestris. The trichome development related genes NtARF3, NtCycB2, NtAquaporin, NtMIXTA and NtBCR2a were highly expressed in N. tomentosiformis, while NtHD1 and NtSAP1 were highly expressed in N. sylvestris. In summary, during the evolution of N. sylvestris and N. tomentosiformis, the trichome phenotypes were differentiated and different metabolic adaptative strategies were formed. The differences were determined by the expression patterns of key genes associated with the synthesis of glandular trichome secretion and the regulatory network of trichome genetic development.

     

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