Temperature regulation of auxin-related gene expression and its implications for plant growth

Author:

Bianchimano Luciana1ORCID,De Luca María Belén2,Borniego María Belén2ORCID,Iglesias María José3ORCID,Casal Jorge J12ORCID

Affiliation:

1. Fundación Instituto Leloir and IIBBA-CONICET, Av. Patricias Argentinas 435 , Buenos Aires C1405BWE , Argentina

2. Universidad de Buenos Aires, Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Instituto de Investigaciones Fisiológicas y Ecológicas Vinculadas a la Agricultura (IFEVA), Facultad de Agronomía , Av. San Martín 4453, Buenos Aires C1417DSE , Argentina

3. Instituto de Fisiología, Biología Molecular y Neurociencias (IFIBYNE), CONICET-UBA , Buenos Aires C1428EHA , Argentina

Abstract

Abstract Twenty-five years ago, a seminal paper demonstrated that warm temperatures increase auxin levels to promote hypocotyl growth in Arabidopsis thaliana. Here we highlight recent advances in auxin-mediated thermomorphogenesis and identify unanswered questions. In the warmth, PHYTOCHROME INTERACTING FACTOR 4 (PIF4) and PIF7 bind the YUCCA8 gene promoter and, in concert with histone modifications, enhance its expression to increase auxin synthesis in the cotyledons. Once transported to the hypocotyl, auxin promotes cell elongation. The meta-analysis of expression of auxin-related genes in seedlings exposed to temperatures ranging from cold to hot shows complex patterns of response. Changes in auxin only partially account for these responses. The expression of many SMALL AUXIN UP RNA (SAUR) genes reaches a maximum in the warmth, decreasing towards both temperature extremes in correlation with the rate of hypocotyl growth. Warm temperatures enhance primary root growth, the response requires auxin, and the hormone levels increase in the root tip but the impacts on cell division and cell expansion are not clear. A deeper understanding of auxin-mediated temperature control of plant architecture is necessary to face the challenge of global warming.

Funder

University of Buenos Aires

ANPCYT

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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