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花椒的D类MADS盒转录因子ZbAGL11参与孢子体无融合生殖。

ZbAGL11, a class D MADS-box transcription factor of Zanthoxylum bungeanum, is involved in sporophytic apomixis.

作者信息

Fei Xitong, Shi Qianqian, Qi Yichen, Wang Shujie, Lei Yu, Hu Haichao, Liu Yulin, Yang Tuxi, Wei Anzhi

机构信息

College of Forestry, Northwest Agriculture and Forestry University, Yangling, Shaanxi, China.

Research Centre for Engineering and Technology of Zanthoxylum State Forestry Administration, Yangling, Xianyang, 712100, China.

出版信息

Hortic Res. 2021 Feb 1;8(1):23. doi: 10.1038/s41438-020-00459-x.

Abstract

Apomixis is a reproductive model that bypasses sexual reproduction, so it does not require the combination of paternal and maternal gametes but instead results in the production of offspring directly from maternal tissues. This reproductive mode results in the same genetic material in the mother and the offspring and has significant applications in agricultural breeding. Molecular and cytological methods were used to identify the reproductive type of Zanthoxylum bungeanum (ZB). Fluorescence detection of the amplified products of 12 pairs of polymorphic SSR primers showed consistent fluorescence signals for mother and offspring, indicating that no trait separation occurred during reproduction. In addition, the cytological observation results showed differentiation of ZB embryos (2n) from nucellar cells (2n) to form indefinite embryonic primordia and then form adventitious embryos (2n), indicating that the apomictic type of ZB is sporophytic apomixis. The MADS-box transcription factor ZbAGL11 was highly expressed during the critical period of nucellar embryo development in ZB. Unpollinated ZbAGL11-OE Arabidopsis produced fertile offspring and exhibited an apomictic phenotype. The overexpression of ZbAGL11 increased the callus induction rate of ZB tissue. In addition, the results of the yeast two-hybrid experiment showed that ZbAGL11 could interact with the ZbCYP450 and ZbCAD11 proteins. Our results demonstrate that ZbAGL11 can cause developmental disorders of Arabidopsis flower organs and result in apomixis-like phenotypes.

摘要

无融合生殖是一种绕过有性生殖的生殖模式,因此它不需要父本和母本配子的结合,而是直接从母本组织产生后代。这种生殖模式导致母本和后代具有相同的遗传物质,在农业育种中有重要应用。采用分子和细胞学方法鉴定花椒(ZB)的生殖类型。对12对多态性SSR引物的扩增产物进行荧光检测,母本和后代的荧光信号一致,表明繁殖过程中未发生性状分离。此外,细胞学观察结果显示,ZB胚(2n)从珠心细胞(2n)分化形成不定胚原基,进而形成不定胚(2n),表明ZB的无融合生殖类型为孢子体无融合生殖。MADS-box转录因子ZbAGL11在ZB珠心胚发育的关键时期高表达。未授粉的ZbAGL11-OE拟南芥产生可育后代,并表现出无融合生殖表型。ZbAGL11的过表达提高了ZB组织的愈伤组织诱导率。此外,酵母双杂交实验结果表明,ZbAGL11能与ZbCYP450和ZbCAD11蛋白相互作用。我们的结果表明,ZbAGL11可导致拟南芥花器官发育异常,并产生类似无融合生殖的表型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b59/7848008/5177721407f4/41438_2020_459_Fig1_HTML.jpg

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