2014年7月4日金曜日

研究室セミナー & 輪読

また,しばらくブログ更新をさぼってしまいました.

6/11 の研究室セミナーでの文献紹介の担当は化学生態学研究室四年生の新井君で,紹介した論文は Ko, D. et al. Arabidopsis ABCG14 is essential for the root-to-shoot translocation of cytokinin. Proc. Natl. Acad. Sci. USA 111, 7150-7155 (2014) でした.シロイヌナズナでの根からは地上部へのサイトカイニンの輸送に関与する ABC トランスポーターについての論文です.

6/18 は教員の都合でセミナーはお休みでした.

6/25 の研究室セミナーでの文献紹介の担当は四年生の酒井君で,紹介した論文は Fernandez, J. & Wilson, R. A. Characterizing roles for the glutathione reductase, thioredoxin reductase and thioredoxin peroxidase-encoding genes of Magnaporthe oryzae during rice blast disease. PLoS ONE 9, e87300 (2014) でした.イネいもち病菌の感染にグルタチオンとチオレドキシンの還元酵素が寄与していることを報告した論文です.

7/2 の研究室セミナーでの文献紹介の担当は四年生の照山君で,紹介した論文は Yoshida, M., Saito, K., Fujino, Y. & Doi, T. A concise total synthesis of biologically active frutinones via tributylphosphine-catalyzed tandem acyl transfer-cyclization. Tetrahedron 70, 3452-3458 (2014) でした.抗真菌活性を持つフラボノイド化合物フルチノン類の全合成を報告した論文です.

6/9-7/4 の輪読では下記の論文を取り上げました.
548. Spence, C. et al. (2014). Natural rice rhizospheric microbes suppress rice blast infections. BMC Plant Biol. 14: 130. 549. Kim, Y., Komoda, E., Miyashita, M., and Miyagawa, H. (2014). Continuous stimulation of the plant immune system by the peptide elicitor PIP-1 is required for phytoalexin biosynthesis in tobacco cells. J. Agric. Food Chem. 62: 5781–5788.
550. Chujo, T. et al. (2014). Overexpression of phosphomimic mutated OsWRKY53 leads to enhanced blast resistance in rice. PLoS ONE 9: e98737.
551. Liu, W., Liu, J., Triplett, L., Leach, J.E., and Wang, G.-L. Novel insights into rice innate immunity against bacterial and fungal pathogens. Annu. Rev. Phytopathol. in press.
552. Jayaraman, D., Gilroy, S., and Ané, J.-M. (2014). Staying in touch: mechanical signals in plant–microbe interactions. Curr. Opin. Plant Biol. 20: 104–109.
553. Walters, D.R. et al. (2014). Control of foliar pathogens of spring barley using a combination of resistance elicitors. Front. Plant Sci. 5: 241.
554. Xu, E., and Brosche, M. (2014). Salicylic acid signaling inhibits apoplastic reactive oxygen species signaling. BMC Plant Biol. 14: 155.
555. Zernova, O.V. et al. (2014). Regulation of plant immunity through modulation of phytoalexin synthesis. Molecules 19: 7480–7496.
556. Nakasu, E.Y.T. et al. (2014). Novel biopesticide based on a spider venom peptide shows no adverse effects on honeybees. Proc. R. Soc. B 281: 20140619.
557. Taguchi, Y., Elsharkawy, M.M., Hassan, N., and Hyakumachi, M. (2014). A novel method for controlling rice blast disease using fan-forced wind on paddy fields. Crop Prot. 63: 68–75.
558. Tooker, J.F., and Helms, A.M. Phytohormone dynamics associated with gall insects, and their potential role in the evolution of the gall-inducing habit. J. Chem. Ecol. in press.
559. Zhang, N., Lariviere, A., Tonsor, S.J., and Traw, M.B. (2014). Constitutive camalexin production and environmental stress response variation in Arabidopsis populations from the Iberian Peninsula. Plant Sci. 225: 77–85.
560. Floková, K. et al. UHPLC–MS/MS based target profiling of stress-induced phytohormones. Phytochemistry in press.
561. Misra, B.B., Assmann, S.M., and Chen, S. Plant single-cell and single-cell-type metabolomics. Trends Plant Sci. in press.
562. Yang, X., Neta, P., and Stein, S.E. (2014). Quality control for building libraries from electrospray ionization tandem mass spectra. Anal. Chem. 86: 6393–6400.
563. Palmer, A.G., Senechal, A.C., Mukherjee, A., Ané, J.-M., and Blackwell, H.E. Plant responses to bacterial N-acyl l-homoserine lactones are dependent on enzymatic degradation to l-homoserine. ACS Chem. Biol. in press.
564. Giron, D., and Glevarec, G. Cytokinin-induced phenotypes in plant-insect interactions: learning from the bacterial world. J. Chem. Ecol. in press.
565. Wei, J. et al. (2014). Reciprocal crosstalk between jasmonate and salicylate defence-signalling pathways modulates plant volatile emission and herbivore host-selection behaviour. J. Exp. Bot. 65: 3289–3298.
566. Zheng, T., and Nolan, E.M. Enterobactin-mediated delivery of β-lactam antibiotics enhances antibacterial activity against pathogenic Escherichia coli. J. Am. Chem. Soc. in press.
567. Campos, M.L., Kang, J.-H., and Howe, G.A. Jasmonate-triggered plant immunity. J. Chem. Ecol. in press.