Roberts A. W., Haigler C. H.
Botany Department, University of Rhode Island, Kingston, Rhode Island 02881 (A.W.R.).
Plant Physiol. 1994 Jun;105(2):699-706. doi: 10.1104/pp.105.2.699.
The effects of medium pH on cell expansion and tracheary element (TE) differentiation were investigated in differentiating mesophyll suspension cultures of Zinnia elegans L. In unbuffered cultures initially adjusted to pH 5.5, the medium pH fluctuated reproducibly, decreasing about 1 unit prior to the onset of TE differentiation and then increasing when the initiation of new Tes was complete. Elimination of large pH fluctuations by buffering the culture medium with 20 mM 2-(N-morpholino)ethanesulfonic acid altered both cell expansion and TE differentiation, whereas altering the starting pH of unbuffered culture medium had no effect on either process. Cell expansion in buffered cultures was pH dependent with an optimum of 5.5 to 6.0. The direction of cell expansion was also pH dependent in buffered cultures. Cells elongated at pH 5.5 to 6.0, whereas isodiametric cell expansion was predominant at pH 6.5 to 7.0. The onset of TE differentiation was delayed when the pH was buffered higher or lower than 5.0. However, TEs eventually appeared in cultures buffered at pH 6.5 to 7.0, indicating that a decrease in pH to 5.0 is not necessary for differentiation. Very large TEs with secondary cell wall thickenings resembling metaxylem differentiated in cultures buffered at pH 5.5 to 6.0, which also showed the greatest cell expansion. The correlation between cell expansion and delayed differentiation of large, metaxylem-like TEs may indicate a link between the regulatory mechanisms controlling cell expansion and TE differentiation.
在百日草叶肉悬浮细胞分化培养物中,研究了培养基pH值对细胞扩张和管状分子(TE)分化的影响。在最初调节至pH 5.5的无缓冲培养基中,培养基pH值可重复波动,在TE分化开始前下降约1个单位,然后在新TE开始形成完成时上升。用20 mM 2-(N-吗啉代)乙磺酸缓冲培养基消除大的pH波动,改变了细胞扩张和TE分化,而改变无缓冲培养基的起始pH值对这两个过程均无影响。缓冲培养基中的细胞扩张依赖于pH值,最适pH为5.5至6.0。在缓冲培养基中,细胞扩张方向也依赖于pH值。细胞在pH 5.5至6.0时伸长,而在pH 6.5至7.0时等径细胞扩张占主导。当pH值缓冲至高于或低于5.0时,TE分化开始延迟。然而,TE最终出现在pH 6.5至7.0缓冲的培养物中,这表明pH值降至5.0对于分化并非必需。在pH 5.5至6.0缓冲的培养物中分化出了具有类似后生木质部次生细胞壁加厚的非常大的TE,这些培养物也表现出最大程度的细胞扩张。细胞扩张与大的、类似后生木质部的TE延迟分化之间的相关性可能表明控制细胞扩张和TE分化的调控机制之间存在联系。