Plant Physiology and Biochemistry2022,Vol.1797.DOI:10.1016/j.plaphy.2022.03.009

Evidence for reduced plasmodesmata callose accumulation in Nicotiana benthamiana leaves with increased symplastic cell-to-cell communication caused by RNA processing defects of chloroplasts

Robles-Luna, Gabriel Nedo, Alexander Wang, Xu Attorresi, Alejandra Carlotto, Nicolas Caplan, Jeffrey Lee, Jung Y. Kobayashi, Ken
Plant Physiology and Biochemistry2022,Vol.1797.DOI:10.1016/j.plaphy.2022.03.009

Evidence for reduced plasmodesmata callose accumulation in Nicotiana benthamiana leaves with increased symplastic cell-to-cell communication caused by RNA processing defects of chloroplasts

Robles-Luna, Gabriel 1Nedo, Alexander 1Wang, Xu 1Attorresi, Alejandra 2Carlotto, Nicolas 3Caplan, Jeffrey 1Lee, Jung Y. 1Kobayashi, Ken3
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作者信息

  • 1. Univ Delaware
  • 2. Consejo Nacl Invest Cient & Tecn
  • 3. FCEN UBA CONICET
  • 折叠

Abstract

RNA processing defects in chloroplasts were previously associated with increased plasmodesmata (PD) permeability. However, the underlying mechanisms for such association are still unknown. To provide insight into this, we silenced the expression of chloroplast-located INCREASED SIZE EXCLUSION LIMIT 2 (ISE2) RNA helicase in Nicotiana benthamiana leaves and determined an increase in PD permeability which is caused by a reduction of PD callose deposition. Moreover, the silencing of two other nuclear genes encoding chloroplastic enzymes involved in RNA processing, RH3, and CLPR2, also increased PD permeability accompanied by reduced callose accumulation at PD. In addition, we quantified the plastidic hydrogen peroxide levels using the chloroplasttargeted fluorescent sensor, HyPer, in ISE2, RH3, and CLPR2 silenced N. benthamiana leaves. The levels of chloroplastic hydrogen peroxide were not correlated with the increased cell-to-cell movement of the marker protein GFP2X. We, therefore, propose that defects in chloroplast RNA metabolism mediate PD gating by suppressing PD callose deposition, and hydrogen peroxide levels in the organelles are not directly linked to this process.

Key words

N. benthamiana/Callose/Chloroplast/ISE2/Plasmodesmata/ROS/VIRUS/RESPONSES/REDOX/ISE2

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出版年

2022
Plant Physiology and Biochemistry

Plant Physiology and Biochemistry

SCI
ISSN:0981-9428
被引量1
参考文献量34
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