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花药角质层和花粉外壁形成与调控方面的缺陷导致棉花光温敏雄性不育系雄性不育。

Deficiencies in the formation and regulation of anther cuticle and tryphine contribute to male sterility in cotton PGMS line.

作者信息

Zhang Meng, Liu Ji, Ma Qiang, Qin Yuan, Wang Hantao, Chen Pengyun, Ma Liang, Fu Xiaokang, Zhu Longfu, Wei Hengling, Yu Shuxun

机构信息

State Key Laboratory of Cotton Biology, Institute of Cotton Research of Chinese Academy of Agricultural Science, Anyang, 455000, China.

National Key Laboratory of Crop Genetic Improvement, Huazhong Agricultural University, Wuhan, 430070, Hubei, China.

出版信息

BMC Genomics. 2020 Nov 23;21(1):825. doi: 10.1186/s12864-020-07250-1.

Abstract

BACKGROUND

Male sterility is a simple and efficient pollination control system that is widely exploited in hybrid breeding. In upland cotton, CCRI9106, a photosensitive genetic male sterile (PGMS) mutant isolated from CCRI040029, was reported of great advantages to cotton heterosis. However, little information concerning the male sterility of CCRI9106 is known. Here, comparative transcriptome analysis of CCRI9106 (the mutant, MT) and CCRI040029 (the wild type, WT) anthers in Anyang (long-day, male sterile condition to CCRI9106) was performed to reveal the potential male sterile mechanism of CCRI9106.

RESULTS

Light and electron microscopy revealed that the male sterility phenotype of MT was mainly attributed to irregularly exine, lacking tryphine and immature anther cuticle. Based on the cytological characteristics of MT anthers, anther RNA libraries (18 in total) of tetrad (TTP), late uninucleate (lUNP) and binucleate (BNP) stages in MT and WT were constructed for transcriptomic analysis, therefore revealing a total of 870,4 differentially expressed genes (DEGs). By performing gene expression pattern analysis and protein-protein interaction (PPI) networks construction, we found down-regulation of DEGs, which enriched by the lipid biosynthetic process and the synthesis pathways of several types of secondary metabolites such as terpenoids, flavonoids and steroids, may crucial to the male sterility phenotype of MT, and resulting in the defects of anther cuticle and tryphine, even the irregularly exine. Furthermore, several lipid-related genes together with ABA-related genes and MYB transcription factors were identified as hub genes via weighted gene co-expression network analysis (WGCNA). Additionally, the ABA content of MT anthers was reduced across all stages when compared with WT anthers. At last, genes related to the formation of anther cuticle and tryphine could activated in MT under short-day condition.

CONCLUSIONS

We propose that the down-regulation of genes related to the assembly of anther cuticle and tryphine may lead to the male sterile phenotype of MT, and MYB transcription factors together with ABA played key regulatory roles in these processes. The conversion of fertility in different photoperiods may closely relate to the functional expression of these genes. These findings contribute to elucidate the mechanism of male sterility in upland cotton.

摘要

背景

雄性不育是一种简单有效的授粉控制系统,在杂交育种中被广泛应用。在陆地棉中,CCRI9106是从CCRI040029中分离出的一个光敏核雄性不育(PGMS)突变体,据报道其对棉花杂种优势具有很大优势。然而,关于CCRI9106雄性不育的信息知之甚少。在此,对CCRI9106(突变体,MT)和CCRI040029(野生型,WT)在安阳(长日照,CCRI9106处于雄性不育条件)的花药进行了比较转录组分析,以揭示CCRI9106潜在的雄性不育机制。

结果

光学显微镜和电子显微镜观察表明,MT的雄性不育表型主要归因于花粉外壁不规则、缺乏绒毡层分泌物以及花药角质层不成熟。基于MT花药的细胞学特征,构建了MT和WT四分体(TTP)、单核晚期(lUNP)和双核期(BNP)的花药RNA文库(共18个)用于转录组分析,共鉴定出8704个差异表达基因(DEGs)。通过进行基因表达模式分析和蛋白质-蛋白质相互作用(PPI)网络构建,我们发现下调的DEGs在脂质生物合成过程以及萜类、黄酮类和甾体类等几种次生代谢物的合成途径中富集,这可能对MT的雄性不育表型至关重要,并导致花药角质层和绒毡层分泌物的缺陷,甚至花粉外壁不规则。此外通过加权基因共表达网络分析(WGCNA)确定了几个与脂质相关的基因以及与脱落酸(ABA)相关的基因和MYB转录因子作为枢纽基因。此外,与WT花药相比,MT花药在所有阶段的ABA含量均降低。最后,在短日照条件下,MT中与花药角质层和绒毡层分泌物形成相关的基因可以被激活。

结论

我们认为与花药角质层和绒毡层分泌物组装相关基因的下调可能导致MT的雄性不育表型,MYB转录因子和ABA在这些过程中起关键调节作用。不同光周期下育性的转换可能与这些基因的功能表达密切相关。这些发现有助于阐明陆地棉雄性不育的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eeb9/7685665/137b6780990d/12864_2020_7250_Fig5_HTML.jpg

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