4.7 Article

A detailed analysis of the leaf rolling mutant sll2 reveals complex nature in regulation of bulliform cell development in rice (Oryza sativa L.)

期刊

PLANT BIOLOGY
卷 17, 期 2, 页码 437-448

出版社

WILEY-BLACKWELL
DOI: 10.1111/plb.12255

关键词

Bulliform cell; leaf rolling; rice (Oryza sativa L; ); sll2

资金

  1. National Science and Technology support program [2013BAD01B02-16]
  2. NDRC [[2012]1961]
  3. National Transform Science and Technology Program [2011ZX08001-004]
  4. Jiangsu Science and Technology Development Program [BE2012303, BE2013301]
  5. Jiangsu Province Self-innovation Program [CX(12)1003]
  6. Qing Lan Project

向作者/读者索取更多资源

Bulliform cells are large, thin-walled and highly vacuolated cells, and play an important role in controlling leaf rolling in response to drought and high temperature. However, the molecular mechanisms regulating bulliform cell development have not been well documented. Here, we report isolation and characterisation of a rice leaf-rolling mutant, named shallot-like 2 (sll2). The sll2 plants exhibit adaxially rolled leaves, starting from the sixth leaf stage, accompanied by increased photosynthesis and reduced plant height and tiller number. Histological analyses showed shrinkage of bulliform cells, resulting in inward-curved leaves. The mutant is recessive and revertible at a rate of 9%. The leaf rolling is caused by a T-DNA insertion. Cloning of the insertion using TAIL-PCR revealed that the T-DNA was inserted in the promoter region of LOC_Os07g38664. Unexpectedly, the enhanced expression of LOC_Os07g38664 by the 35S enhancer in the T-DNA is not responsible for the leaf rolling phenotype. Further, the enhancer also exerted a long-distance effect, including up-regulation of several bulliform cell-related genes. sll2 suppressed the outward leaf rolling of oul1 in the sll2oul1 double mutant. We conclude that leaf rolling in sll2 could be a result of the combined effect of multi-genes, implying a complex network in regulation of bulliform cell development.

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