Guangxi Key Laboratory of Superior Timber Trees Resource Cultivation, Guangxi Forestry Research Institute, 23 Yongwu Road, Nanning, 530002, Guangxi, China.
BMC Plant Biol. 2022 Jan 3;22(1):1. doi: 10.1186/s12870-021-03391-x.
Eucalyptus is a highly diverse genus of the Myrtaceae family and widely planted in the world for timber and pulp production. Tissue culture induced callus has become a common tool for Eucalyptus breeding, however, our knowledge about the genes related to the callus maturation and shoot regeneration is still poor.
We set up an experiment to monitor the callus induction and callus development of two Eucalyptus species - E. camaldulensis (high embryogenic potential) and E. grandis x urophylla (low embryogenic potential). Then, we performed transcriptome sequencing for primary callus, mature callus, shoot regeneration stage callus and senescence callus. We identified 707 upregulated and 694 downregulated genes during the maturation process of the two Eucalyptus species and most of them were involved in the signaling pathways like plant hormone and MAPK. Next, we identified 135 and 142 genes that might play important roles during the callus development of E. camaldulensis and E. grandis x urophylla, respectively. Further, we found 15 DEGs shared by these two Eucalyptus species during the callus development, including Eucgr.D00640 (stem-specific protein TSJT1), Eucgr.B00171 (BTB/POZ and TAZ domain-containing protein 1), Eucgr.C00948 (zinc finger CCCH domain-containing protein 20), Eucgr.K01667 (stomatal closure-related actinbinding protein 3), Eucgr.C00663 (glutaredoxin-C10) and Eucgr.C00419 (UPF0481 protein At3g47200). Interestingly, the expression patterns of these genes displayed "N" shape in the samples. Further, we found 51 genes that were dysregulated during the callus development of E. camaldulensis but without changes in E. grandis x urophylla, such as Eucgr.B02127 (GRF1-interacting factor 1), Eucgr.C00947 (transcription factor MYB36), Eucgr.B02752 (laccase-7), Eucgr.B03985 (transcription factor MYB108), Eucgr.D00536 (GDSL esterase/lipase At5g45920) and Eucgr.B02347 (scarecrow-like protein 34). These 51 genes might be associated with the high propagation ability of Eucalyptus and 22 might be induced after the dedifferentiation. Last, we performed WGCNA to identify the co-expressed genes during the callus development of Eucalyptus and qRT-PCR experiment to validate the gene expression patterns.
This is the first time to globally study the gene profiles during the callus development of Eucalyptus. The results will improve our understanding of gene regulation and molecular mechanisms in the callus maturation and shoot regeneration.
桉树是桃金娘科的一个高度多样化的属,广泛种植于世界各地,用于木材和纸浆生产。组织培养诱导的愈伤组织已成为桉树育种的常用工具,然而,我们对与愈伤组织成熟和芽再生相关的基因的了解仍然有限。
我们进行了一项实验,以监测两种桉树 - 赤桉(高胚胎发生潜力)和尾巨桉杂种(低胚胎发生潜力)的愈伤组织诱导和愈伤组织发育。然后,我们对初级愈伤组织、成熟愈伤组织、芽再生阶段愈伤组织和衰老愈伤组织进行了转录组测序。我们鉴定了两种桉树在成熟过程中 707 个上调和 694 个下调基因,其中大多数涉及植物激素和 MAPK 等信号通路。接下来,我们鉴定了 135 个和 142 个可能在赤桉和尾巨桉杂种愈伤组织发育中发挥重要作用的基因。此外,我们发现了 15 个在两种桉树的愈伤组织发育过程中共同表达的 DEGs,包括 Eucgr.D00640(茎特异性蛋白 TSJT1)、Eucgr.B00171(BTB/POZ 和 TAZ 结构域蛋白 1)、Eucgr.C00948(锌指 CCCH 结构域蛋白 20)、Eucgr.C00164(与气孔关闭相关的肌动蛋白结合蛋白 3)、Eucgr.C00663(谷胱甘肽还原酶-C10)和 Eucgr.C00419(UPF0481 蛋白 At3g47200)。有趣的是,这些基因在样本中的表达模式呈“N”形。此外,我们发现了 51 个在赤桉愈伤组织发育过程中表达失调但在尾巨桉杂种中没有变化的基因,如 Eucgr.B02127(GRF1 相互作用因子 1)、Eucgr.C00947(转录因子 MYB36)、Eucgr.B02752(漆酶-7)、Eucgr.B03985(转录因子 MYB108)、Eucgr.D00536(GDSL 酯酶/脂肪酶 At5g45920)和 Eucgr.B02347(稻草人样蛋白 34)。这些 51 个基因可能与桉树的高繁殖能力有关,其中 22 个基因可能在去分化后被诱导。最后,我们进行了 WGCNA 来鉴定桉树愈伤组织发育过程中的共表达基因,并通过 qRT-PCR 实验验证基因表达模式。
这是首次对桉树愈伤组织发育过程中的基因谱进行全面研究。研究结果将提高我们对愈伤组织成熟和芽再生过程中基因调控和分子机制的理解。