Organelle Ca2+/CAM1‐SELTP confers somatic cell embryogenic competence acquisition and transformation in plant regeneration

Author:

Guo Huihui1ORCID,Guo Haixia1ORCID,Zhang Li1ORCID,Tian Xindi1,Wu Jianfei1,Fan Yupeng12,Li Tongtong1,Gou Zhongyuan1,Sun Yuxiao1,Gao Fan1,Wang Jianjun1,Shan Guangyao1,Zeng Fanchang1ORCID

Affiliation:

1. State Key Laboratory of Crop Biology Shandong Agricultural University Tai'an 271018 China

2. College of Life Sciences Huaibei Normal University Huaibei 235000 China

Abstract

Summary Somatic cell totipotency in plant regeneration represents the forefront of the compelling scientific puzzles and one of the most challenging problems in biology. How somatic embryogenic competence is achieved in regeneration remains elusive. Here, we discover uncharacterized organelle‐based embryogenic differentiation processes of intracellular acquisition and intercellular transformation, and demonstrate the underlying regulatory system of somatic embryogenesis‐associated lipid transfer protein (SELTP) and its interactor calmodulin1 (CAM1) in cotton as the pioneer crop for biotechnology application. The synergistic CAM1 and SELTP exhibit consistent dynamical amyloplast–plasmodesmata (PD) localization patterns but show opposite functional effects. CAM1 inhibits the effect of SELTP to regulate embryogenic differentiation for plant regeneration. It is noteworthy that callus grafting assay reflects intercellular trafficking of CAM1 through PD for embryogenic transformation. This work originally provides insight into the mechanisms responsible for embryogenic competence acquisition and transformation mediated by the Ca2+/CAM1‐SELTP regulatory pathway, suggesting a principle for plant regeneration and cell/genetic engineering.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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