4.7 Article

The cytokinin type-B response regulator PeRR12 is a negative regulator of adventitious rooting and salt tolerance in poplar

期刊

PLANT SCIENCE
卷 325, 期 -, 页码 -

出版社

ELSEVIER IRELAND LTD
DOI: 10.1016/j.plantsci.2022.111456

关键词

Cytokinin type -B response regulator; Transgenic poplar; Adventitious root; Salt tolerance

资金

  1. National Key Research and Development Program of China [2021YFD2200103]
  2. National Natural Science Foundation of China [319716793]
  3. Natural Science Foundation of the Jiangsu Higher Education Institutions of China [19KJB180001]
  4. Priority Academic Program Development of Jiangsu Higher Education Institutions (PAPD)

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Adventitious root development is a crucial biological process that plays a key role in maintaining ecological balance and enhancing plant survival. This study reveals that the PeRR12 gene in poplar is involved in regulating adventitious root formation and salt tolerance.
Adventitious root (AR) development is an ecologically and economically important biological process that maintains ecological balance, improves plant survivability, and allows for massive vegetative propagation, but its genetic mechanisms are not well understood. Here, eight Arabidopsis response regulator (ARR) genes were cloned and identified in poplar, most of which were detected in the AR, phloem, and xylem and showed remarkable induction at different time points during AR development. Subcellular localization indicated that most of these PeRR genes are in the nucleus. Based on qRT-PCR expression analysis of some genes related to AR development, we inferred that overexpression of PeRR12 (OE_PeRR12) may inhibited AR formation by suppressing the transcription of PeWOX11, PeWOX5, PePIN1 and PePIN3 in poplar while promoting type-A RR transcripts. Correspondingly, exogenous auxin partially restored the rooting of OE_PeRR12 poplar by inhibiting PeRR12 expression. Moreover, the activities of the antioxidant systems of OE_PeRR12 poplars were lower than those of wild-type poplars under salt stress conditions, indicating that PeRR12 may acts as a repressor that mediates salt tolerance by suppressing the expression of PeHKT1;1. Altogether, these results suggest that PeRR12 plays essential roles in mediating AR formation and salinity tolerance in poplar.

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