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Published on: December 16, 2016
Tomato drought-responsive transcription factor TINY1 suppresses embryonic growth
Matar Azriel1, Hagai Shohat1, Dalia Blinderman1
1Institute of Plant Sciences and Genetics in Agriculture, The Hebrew University of Jerusalem, PO Box 12, Rehovot 76100, Israel.
None:
Dehydration-responsive element-binding (DREB) transcription factors play an important role in plant responses to drought. DREB subfamily A4 contains a subgroup named TINY. Previous studies in Arabidopsis suggest that TINYs suppress plant growth and mediate abscisic acid (ABA)-induced stomatal closure. In this study, we investigated the function of the tomato drought-induced TINY1. Under drought conditions, the tiny1 mutant lost turgor and wilted more rapidly than control M82 plants. However, this sensitivity was attributed to its larger leaf area, rather than intrinsic differences in drought response. Measurements of stomatal conductance, leaf temperature, and osmotic adjustment revealed no significant differences between tiny1 and M82. Furthermore, whole-plant daily transpiration of M82 and tiny1 with a similar leaf area showed no differences. Interestingly, the growth-promoting effect of tiny1 was confined to early developmental stages; enhanced embryo growth and hypocotyl elongation, and accelerated emergence of the first true leaves-a trait that later contributed to increased leaf area. At later stages, the mutation had no observable impact on growth rate. Our results show increased gibberellin (GA) activity in the mature tiny1 embryo and suggest that TINY1 suppresses embryonic growth by repressing GA biosynthesis through down-regulation of GA 20-oxidase 4 (GA20ox4) gene expression.
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