2018年12月31日月曜日

先週の輪読

先週は 12/25, 26 だけ輪読を実施しました.新年の輪読は 1/7 から開始です.

1427. Murphy, K.M., Ma, L.-T., Ding, Y., Schmelz, E.A., and Zerbe, P. (2018). Functional characterization of two class II diterpene synthases indicates additional specialized diterpenoid pathways in maize (Zea mays). Front. Plant Sci. 9: 1542.

1428. Elias, L.G. et al. (2018). A comparative venomic fingerprinting approach reveals that galling and non-galling fig wasp species have different venom profiles. PLOS ONE 13: e0207051.

2018年12月21日金曜日

今週の輪読

今週の輪読では下記の論文を取り上げました.

1422. Huang, J. et al. (2019). Natural allelic variations provide insights into host adaptation of Phytophthora avirulence effector PsAvr3c. New Phytol. 221: 1010–1022.

1423. Chicca, A. et al. (2018). Uncovering the psychoactivity of a cannabinoid from liverworts associated with a legal high. Sci. Adv. 4: eaat2166.

1424. Castro, S.J. et al. (2018). Phytochemical study of Senecio volckmannii assisted by CASE-3D with residual dipolar couplings and isotropic 1H/13C NMR chemical shifts. J. Nat. Prod. 81: 2329–2337.

1425. Liu, Q. et al. (2018). OsWRKY67 positively regulates blast and bacteria blight resistance by direct activation of PR genes in rice. BMC Plant Biol. 18: 257.

1426. Crall, J.D. et al. (2018). Neonicotinoid exposure disrupts bumblebee nest behavior, social networks, and thermoregulation. Science 362: 683–686.

 

 

2018年12月15日土曜日

研究室セミナー & 今週の輪読

今週の研究室セミナーの文献紹介の担当は 4 年生の岡田君で,下記の論文を紹介しました.

Jeanmard, L., Iawsipo, P., Panprasert, J., Rukachaisirikul, V., and Tadpetch, K. (2018). Total synthesis and cytotoxic activity of dechlorogreensporones A and D. Tetrahedron 74: 4521–4529.

今週の輪読では下記の論文を取り上げました.

1418. Huang, Q. et al. (2018). The Tryptophan decarboxylase 1 gene from Aegilops variabilis No.1 regulate the resistance against cereal cyst nematode by altering the downstream secondary metabolite contents rather than auxin synthesis. Front. Plant Sci. 9: 1297.

1419. Schlawis, C. et al. (2018). Structural elucidation of trace components combining GC/MS, GC/IR, DFT-calculation and synthesis–salinilactones, unprecedented bicyclic lactones from Salinispora bacteria. Angew. Chem. Int. Ed. 57: 14921–14925.

1420. García, T., Veloso, J., and Díaz, J. (2018). Vanillyl nonanoate induces systemic resistance and lignification in pepper plants. J. Plant Physiol. 231: 251–260.

1421. Uematsu, K., Kutsukake, M., and Fukatsu, T. (2018). Water-repellent plant surface structure induced by gall-forming insects for waste management. Biol. Lett. 14: 20180470.

2018年12月9日日曜日

研究室セミナー & 11/27〜12/6 の輪読

11/30 の研究室セミナーの文献紹介の担当は 4 年生の木村君で,下記の論文を紹介しました.

Ullah, C. et al. Salicylic acid activates poplar defense against the biotrophic rust fungus Melampsora larici-populina via increased biosynthesis of catechin and proanthocyanidins. New Phytol. in press.

12/7 の研究室セミナーの文献紹介の担当は化学生態学研究室 4 年生の菅野君で,下記の論文を紹介しました.

Ford, B.A. et al. (2018). Rht18 semidwarfism in wheat is due to increased GA 2-oxidaseA9 expression and reduced GA content. Plant Physiol. 177: 168–180.

11/27 〜 12/6 の輪読では下記の論文を取り上げました.

1411. Fiorin, G.L. et al. (2018). Suppression of plant immunity by fungal chitinase-like effectors. Curr. Biol. 28: 3023–3030.e5.

1412. Toyota, M. et al. (2018). Glutamate triggers long-distance, calcium-based plant defense signaling. Science 361: 1112–1115.

1413. Wang, Y. et al. (2018). A MPK3/6-WRKY33-ALD1-pipecolic acid regulatory loop contributes to systemic acquired resistance. Plant Cell 30: 2480–2494.

1414. Kong, C.-H. et al. (2018). Plant neighbor detection and allelochemical response are driven by root-secreted signaling chemicals. Nat. Commun. 9: 3867.

1415. Cui, S., Wang, J., Gao, F., Sun, G., and Liang, J. (2018). Quantitative proteomic analyses reveal that RBBI3.3, a trypsin inhibitor protein, plays an important role in Magnaporthe oryzae infection in rice. Plant Growth Regul. 86: 365–374.

1416. Liu, Y., Cao, Y., Zhang, Q., Li, X., and Wang, S. (2018). A cytosolic triosephosphate isomerase is a key component in XA3/XA26-mediated resistance. Plant Physiol. 178: 923–935.

1417. Srivastava, A.K. et al. (2018). SUMO suppresses the activity of the jasmonic acid receptor CORONATINE INSENSITIVE1. Plant Cell 30: 2099–2115.