4.7 Article

Expansins expression is associated with grain size dynamics in wheat (Triticum aestivum L.)

期刊

JOURNAL OF EXPERIMENTAL BOTANY
卷 61, 期 4, 页码 1147-1157

出版社

OXFORD UNIV PRESS
DOI: 10.1093/jxb/erp380

关键词

Expansin; gene family; grain growth; in situ hybridization; semi-quantitative RT-PCR; Triticum aestivum

资金

  1. Chilean Technical and Scientific Research Council (CONICYT) [FONDECYT 1040125]
  2. International Joint Project with Chile [2006/R2]
  3. Royal Society, UK
  4. Biotechnology and Biological Sciences Research Council [BB/C512688/1] Funding Source: researchfish

向作者/读者索取更多资源

Grain weight is one of the most important components of cereal yield and quality. A clearer understanding of the physiological and molecular determinants of this complex trait would provide an insight into the potential benefits for plant breeding. In the present study, the dynamics of dry matter accumulation, water uptake, and grain size in parallel with the expression of expansins during grain growth in wheat were analysed. The stabilized water content of grains showed a strong association with final grain weight (r(2)=0.88, P < 0.01). Grain length was found to be the trait that best correlated with final grain weight (r(2)=0.98, P < 0.01) and volume (r(2)=0.94, P < 0.01). The main events that defined final grain weight occurred during the first third of grain-filling when maternal tissues (the pericarp of grains) undergo considerable expansion. Eight expansin coding sequences were isolated from pericarp RNA and the temporal profiles of accumulation of these transcripts were monitored. Sequences showing high homology with TaExpA6 were notably abundant during early grain expansion and declined as maturity was reached. RNA in situ hybridization studies revealed that the transcript for TaExpA6 was principally found in the pericarp during early growth in grain development and, subsequently, in both the endosperm and pericarp. The signal in these images is likely to be the sum of the transcript levels of all three sequences with high similarity to the TaExpA6 gene. The early part of the expression profile of this putative expansin gene correlates well with the critical periods of early grain expansion, suggesting it as a possible factor in the final determination of grain size.

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