4.7 Article

Comparative Transcriptomic Analysis of Inarching Invigorating Rootstock onto Incompatible Grafts in Citrus

Journal

Publisher

MDPI
DOI: 10.3390/ijms232314523

Keywords

inarch grafting; Citrus junos Sieb ex Tanaka cv; Pujiang Xiangcheng; graft compatibility; phytohormone; transcriptomic

Funding

  1. Sichuan Provincial Postdoctoral Science Foundation, Sichuan Science and Technology Program
  2. Shuangzhi Project Innovation Team of Sichuan Agricultural University
  3. [2020ZHCG0027]
  4. [P202107]

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This study provides insights into the mechanism of rejuvenation in inarched grafts. The results show that inarching can restore the leaf metabolism balance and highlight the role of hormonal balance and hormone-related genes in promoting compatibility. A model explaining the invigoration of inarched grafts is proposed, shedding light on scion-rootstock interaction in citrus.
Grafting is a technique that is widely used in citrus production. Graft incompatibility often occurs in the orchard. Inarching can effectively improve the vigor of incompatible grafts, but its mechanism remains poorly understood. Our previous studies investigated the scion-rootstock interaction of citrus and highlighted the role of hormonal balance and genes in abscisic acid biosynthesis regulation. To further elucidate the mechanism of inarched grafts rejuvenation, Hm/Pt combination (Citrus maxima (Burm.) Merrill cv. 'Hongmian miyou' grafted onto Poncirus trifoliata) were inarched with 'Pujiang Xiangcheng' (a novel citrus rootstock cultivar recently selected from wild Citrus junos populations), and comprehensive analysis was performed to compare the inarched grafts and controls. Compared with incompatible grafts, the results revealed that inarching could recover the leaf metabolism balance, including reducing starch content, increasing chlorophyll content and restoring the cell structure. Additionally, our results corroborated that hormonal balance and hormone-related genes played a central role in inarching compatibility. Furthermore, the roles of Hsf4, ERF1, NCED3 and PYL were highlighted, and a model for explaining inarched grafts recovery invigoration was proposed. This study shed light on the mechanism of inarching regulation tree vigor and offered deep insights into the scion-rootstock interaction in citrus.

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