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Plant Cell Reports|April 17, 2020
The ROS-associated programmed cell death causes the decline of pollen viability recovered from cryopreservation in Paeonia lactifloraRuifen Ren, Zedi Li, Xueru Jiang, et al.Cryobiology|July 26, 2023
Cryopreservation of herbaceous Asteraceae seeds: Effects of seed reserves on seed germination and seedling regrowthRuifen Ren, Zhe Ji, Jiayi Guo, et al.Plant Cell Reports|August 30, 2021
Cryopreserved-pollen viability is regulated by NO-induced programmed cell deathRuifen Ren, Hao Zhou, Lingling Zhang, et al.Cryobiology|January 6, 2022
Changes of pollen viability after preservation of Paeonia lactiflora in different provenancesRuifen Ren, Jianzhou Gao, Hao Zhou, et al.Plant Cell Reports|February 22, 2022
Ca<sup>2+</sup> participates in programmed cell death by modulating ROS during pollen cryopreservationRuifen Ren, Hao Zhou, Lingling Zhang, et al.Cryobiology|February 22, 2024
Exploring the relationship between pollen viability and inclusion in Paeonia lactiflora after cryopreservationMengting Zhu, Ying Peng, Jianzhou Gao, et al.Cryobiology|July 6, 2019
Changes of pollen viability of ornamental plants after long-term preservation in a cryopreservation pollen bankRuifen Ren, Zedi Li, Bingling Li, et al.Plant Molecular Biology|October 16, 2024
Transcriptome analysis of the genes and regulators involving in vitamin E biosynthesis in Elaeagnus mollis dielsShuhui Du, Yuanting Guo, Qianqian Li, et al.Pageof 1