Calcium channels and acquired thermotolerance: here comes the sun and it's all right.
نویسنده
چکیده
When the sun comes up on a clear summer morning, it starts to get hot and you know it's going to get hotter. What's remarkable is that plants know it too. However, rather than making plans to hit the swimming pool, plants have to make other arrangements. These arrangements result in tran-scriptional activation of genes encoding heat shock proteins (Hsps); this dramatic mobilization can involve more than 1% of the genome (reviewed in Saidi et al., 2011) and therefore represents a substantial commitment of resources. Many Hsps prevent protein misfolding and aggregation, stabilize membrane structure, and are transcribed after activation of heat shock transcription factors. Upstream of Hsp transcription, the triggering of the heat tolerance response involves the cell membrane in two ways. First, the lipid composition and fluidity of the membrane condition the response to heat, as treatments that increase membrane fluidity cause a stronger response. Second, a transient influx of Ca 2+ activates heat shock transcription factors, through mechanisms involving calmodu-lin, kinase activity, histone modification, and other pathways. The thermotolerance response allows the plant to survive a short exposure to a high temperature that would otherwise be lethal. However, what is the basis for activation of the plant heat tolerance re-sponse? For activation, the plant must accurately measure temperature, to produce a response in sufficient time, but not waste resources by activating an unnecessary response. How does a plant sense temperature? Previous work in moss had established that the primary thermosensor involves a heat-sensitive plasma membrane Ca 2+ channel, but the identity of the key genes remained unknown. To supply this missing link in the chain of events leading to thermotolerance, Finka et al. (pages 3333–3348) examine the role of cyclic nucleotide gated Ca 2+ channels in thermosensing in land plants. The authors characterize the orthologous Physcomi-trella patens and Arabidopsis thaliana loci encoding the cyclic nucleotide gated calcium channel (CNGC), Pp CNGCb and At CNGC2, respectively. They found that both moss and Arabidopsis mutants with a disruption of CNGC grew more slowly and acquired futile thermotolerance by induction of Hsp production at temperatures about five degrees lower than the wild type (see figure). Further examining the moss mutant to determine the basis of this hyperthermosensitive phenotype, they used the Ca 2+ sensing protein aqueorin to show that the mutant had a stronger Ca 2+ flux that was induced at a lower temperature. Patch-clamp analysis showed that there were …
منابع مشابه
Plasma membrane cyclic nucleotide gated calcium channels control land plant thermal sensing and acquired thermotolerance.
Typically at dawn on a hot summer day, land plants need precise molecular thermometers to sense harmless increments in the ambient temperature to induce a timely heat shock response (HSR) and accumulate protective heat shock proteins in anticipation of harmful temperatures at mid-day. Here, we found that the cyclic nucleotide gated calcium channel (CNGC) CNGCb gene from Physcomitrella patens an...
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عنوان ژورنال:
- The Plant cell
دوره 24 8 شماره
صفحات -
تاریخ انتشار 2012