Mai Ha Thu, Nomura Mika, Takegawa Kaoru, Asamizu Erika, Sato Syusei, Kato Tomohiko, Tabata Satoshi, Tajima Shigeyuki
Department of Life Science, Faculty of Agriculture, Kagawa University, Miki-cho, Kita-gun, Kagawa, 761-0795 Japan.
Plant Cell Physiol. 2006 Jul;47(7):829-38. doi: 10.1093/pcp/pcj054. Epub 2006 May 13.
We identified a Sed5-like clone LjSYP32-1 which contributes to nodule tissue formation and plant growth in Lotus japonicus. In the L. japonicus expressed sequence tag (EST) clone databases of Kazusa DNA Research Institute, another syntaxin-related clone (LjSYP32-2) was also detected, and the nucleotide and amino acid sequences of these two clone are very similar to each other. Real-time PCR and promoter analysis indicated that expression of LjSYP32-1 was dominant compared with LjSYP32-2 in the various plant organs. Promoter analysis and in situ hybridization revealed that LjSYP32-1 was expressed significantly in the inner cortex cell layer surrounding the infected zone of young nodules and in the meristem area of developing lateral root. To explore the function and physiological role of LjSYP32-1 in nodules and other plant organs, stable transformation lines of L. japonicus expressing either sense or antisense LjSYP32-1 were prepared. The antisense plants showed a significantly retarded plant growth phenotype, suggesting a role for LjSYP32-1 in supporting plant growth. In the same transgenic lines, the plants were capable of forming nodules, but the acetylene reduction activity was reduced by around 50% per plant. The nodules were much smaller and some nodules were fused to each other by sharing the inner cortex. The rate of occurrence of such irregular nodules was twice that observed in wild-type plants. The data suggest that LjSYP32-1 contributes to the support of plant growth and normal nodule tissue differentiation.
我们鉴定出一个类似Sed5的克隆LjSYP32-1,它对百脉根的根瘤组织形成和植株生长有作用。在Kazusa DNA研究所的百脉根表达序列标签(EST)克隆数据库中,还检测到另一个与 syntaxin相关的克隆(LjSYP32-2),这两个克隆的核苷酸和氨基酸序列彼此非常相似。实时PCR和启动子分析表明,在各种植物器官中,LjSYP32-1的表达相对于LjSYP32-2占主导地位。启动子分析和原位杂交显示,LjSYP32-1在围绕幼根瘤感染区的内皮层细胞层以及发育中的侧根分生组织区域中显著表达。为了探究LjSYP32-1在根瘤和其他植物器官中的功能及生理作用,制备了表达正义或反义LjSYP32-1的百脉根稳定转化株系。反义植株表现出明显的植株生长迟缓表型,表明LjSYP32-1在支持植株生长方面发挥作用。在相同的转基因株系中,植株能够形成根瘤,但每株植物的乙炔还原活性降低了约50%。根瘤小得多,一些根瘤通过共享内皮层而相互融合。这种不规则根瘤的发生率是野生型植株中观察到的两倍。这些数据表明LjSYP32-1有助于支持植株生长和正常根瘤组织分化。