College of Horticulture, Shanxi Agricultural University, Taigu, China.
BMC Plant Biol. 2021 Mar 19;21(1):143. doi: 10.1186/s12870-021-02900-2.
Signal peptides are essential for plant growth and development. In plants, biological processes including cell-cell communication, cellular proliferation and differentiation, cellular determination of self-incompatibility, and defensive responses, all depend heavily on peptide-signaling networks such as CLE (CLAVATA3/Embryo surrounding region-related). The CLEs are indispensable in different periods of plant growth and development, especially in maintaining the balance between proliferation and differentiation of stem cells in various meristematic tissues. The working system of CLE genes in cucumber, an important economical vegetable (Cucumis sativus L.), has not been fully studied yet. The distributional patterns of chromosome-level genome assembly in cucumber provide a fundamental basis for a genome-wide comparative analysis of CLE genes in such plants.
A total of 26 individual CLE genes were identified in Chinese long '9930' cucumber, the majority of which belong to unstable short alkaline and hydrophilic peptides. A comparative analysis showed a close relationship in the development of CLE genes among Arabidopsis thaliana, melon, and cucumber. Half of the exon-intron structures of all CsCLEs genes are single-exon genes, and motif 1, a typical CLE domain near the C-terminal functioning in signal pathways, is found in all cucumber CLE proteins but CsCLE9. The analysis of CREs (Cis-Regulatory Elements) in the upstream region of the 26 cucumber CLE genes indicates a possible relationship between CsCLE genes and certain functions of hormone response elements. Cucumber resulted closely related to Arabidopsis and melon, having seven and 15 orthologous CLE genes in Arabidopsis and melon, respectively. Additionally, the calculative analysis of a pair of orthologous genes in cucumber showed that as a part of the evolutionary process, CLE genes are undergoing a positive selection process which leads to functional differentiation. The specific expression of these genes was vigorous at the growth and development period and tissues. Cucumber gene CLV3 was overexpressed in Arabidopsis, more than half of the transformed plants in T1 generation showed the phenomena of obvious weakness of the development of growing point, no bolting, and a decreased ability of plant growth. Only two bolted strains showed that either the pod did not develop or the pod was short, and its development was significantly inferior to that in the wild type.
In this study, 26 CLE genes were identified in Chinese long '9930' cucumber genome. The CLE genes were mainly composed of alkaline hydrophilic unstable proteins. The genes of the CLE family were divided into seven classes, and shared close relationships with their homologs in Arabidopsis and melon. The specific expression of these genes was evaluated in different periods of growth and tissue development, and CLV3, which the representative gene of the family, was overexpressed in Arabidopsis, suggesting that it has a role in bolting and fruit bearing in cucumber.
信号肽对植物的生长和发育至关重要。在植物中,包括细胞间通讯、细胞增殖和分化、细胞自我不亲和性的决定以及防御反应在内的各种生物学过程都严重依赖于肽信号网络,如 CLE(CLAVATA3/Embryo surrounding region-related)。CLE 在植物生长和发育的不同时期都是必不可少的,尤其是在维持各种分生组织干细胞的增殖和分化平衡方面。黄瓜(Cucumis sativus L.)是一种重要的经济蔬菜,其 CLE 基因的工作系统尚未得到充分研究。黄瓜染色体水平基因组组装的分布模式为这类植物中 CLE 基因的全基因组比较分析提供了基础。
在 9930 型中国长黄瓜中鉴定出 26 个单独的 CLE 基因,其中大多数属于不稳定的短碱性和亲水肽。比较分析表明,拟南芥、甜瓜和黄瓜的 CLE 基因在发育上密切相关。所有 CsCLEs 基因的外显子-内含子结构有一半是单外显子基因,并且在所有黄瓜 CLE 蛋白中都发现了靠近 C 端的典型 CLE 结构域 1,该结构域在信号通路中发挥作用,但 CsCLE9 除外。对 26 个黄瓜 CLE 基因上游区 CREs(顺式调控元件)的分析表明,CsCLE 基因与某些激素反应元件的功能之间可能存在关联。黄瓜与拟南芥和甜瓜关系密切,在拟南芥和甜瓜中分别有 7 个和 15 个同源 CLE 基因。此外,对黄瓜一对同源基因的计算分析表明,作为进化过程的一部分,CLE 基因正在经历正选择过程,导致功能分化。这些基因在生长和发育时期和组织中的特异性表达非常活跃。在拟南芥中过表达黄瓜 CLV3 基因,T1 代中超过一半的转化植株表现出生长点发育明显减弱、不抽薹、生长能力下降的现象。只有两个抽薹株系表现出要么荚果不发育,要么荚果短,其发育明显劣于野生型。
本研究在 9930 型中国长黄瓜基因组中鉴定出 26 个 CLE 基因。CLE 基因主要由碱性亲水不稳定蛋白组成。CLE 家族基因分为 7 类,与拟南芥和甜瓜的同源物密切相关。评估了这些基因在不同生长时期和组织发育过程中的特异性表达,过表达家族代表基因 CLV3 提示其在黄瓜抽薹和果实形成中起作用。