Winfield Mark O, Lu Chungui, Wilson Ian D, Coghill Jane A, Edwards Keith J
School of Biological Sciences, University of Bristol, Bristol, BS8 1UG, UK.
BMC Plant Biol. 2009 May 11;9:55. doi: 10.1186/1471-2229-9-55.
For plants to flower at the appropriate time, they must be able to perceive and respond to various internal and external cues. Wheat is generally a long-day plant that will go through phase transition from vegetative to floral growth as days are lengthening in spring and early summer. In addition to this response to day-length, wheat cultivars may be classified as either winter or spring varieties depending on whether they require to be exposed to an extended period of cold in order to become competent to flower. Using a growth regime to mimic the conditions that occur during a typical winter in Britain, and a microarray approach to determine changes in gene expression over time, we have surveyed the genes of the major pathways involved in floral transition. We have paid particular attention to wheat orthologues and functional equivalents of genes involved in the phase transition in Arabidopsis. We also surveyed all the MADS-box genes that could be identified as such on the Affymetrix genechip wheat genome array.
We observed novel responses of several genes thought to be of major importance in vernalisation-induced phase transition, and identified several MADS-box genes that might play an important role in the onset of flowering. In addition, we saw responses in genes of the Gibberellin pathway that would indicate that this pathway also has some role to play in phase transition.
Phase transition in wheat is more complex than previously reported, and there is evidence that day-length has an influence on genes that were once thought to respond exclusively to an extended period of cold.
为了在适宜的时间开花,植物必须能够感知并响应各种内部和外部信号。小麦通常是一种长日照植物,随着春季和初夏白昼变长,它会经历从营养生长到生殖生长的阶段转变。除了对日照长度的这种响应外,小麦品种还可根据是否需要经历一段较长时间的低温才能具备开花能力而分为冬性或春性品种。利用一种生长模式来模拟英国典型冬季出现的条件,并采用微阵列方法来确定基因表达随时间的变化,我们对参与花发育转变的主要途径中的基因进行了研究。我们特别关注了拟南芥中参与阶段转变的基因的小麦直系同源基因和功能等同物。我们还对在Affymetrix基因芯片小麦基因组阵列上能够被识别的所有MADS-box基因进行了研究。
我们观察到几个被认为在春化诱导的阶段转变中起重要作用的基因有新的响应,并鉴定出几个可能在开花起始中起重要作用的MADS-box基因。此外,我们在赤霉素途径的基因中看到了响应,这表明该途径在阶段转变中也有一定作用。
小麦的阶段转变比之前报道的更为复杂,并且有证据表明日照长度对曾经被认为只对一段较长时间的低温作出响应的基因有影响。