Genetic variation in Arabidopsis thaliana reveals the existence of natural heat resilience factors for meiosis

拟南芥 减数分裂 生物 弹性(材料科学) 热应力 拟南芥 变化(天文学) 进化生物学 遗传变异 遗传学 自然(考古学) 基因 突变体 物理 热力学 古生物学 动物科学 天体物理学
作者
Jiayi Zhao,Huiqi Fu,Z.F. Wang,Min Zhang,Yaoqiong Liang,Xueying Cui,Wenjing Pan,Ziming Ren,Zhihua Wu,Yujie Zhang,Xin Gui,Li Huo,X. Lei,Chong Wang,Arp Schnittger,Wojciech P. Pawlowski,Bing Liu
出处
期刊:Plant Physiology [Oxford University Press]
卷期号:197 (1)
标识
DOI:10.1093/plphys/kiae671
摘要

Abstract Heat interferes with multiple meiotic processes, leading to genome instability and sterility in flowering plants, including many crops. Despite its importance for food security, the mechanisms underlying heat tolerance of meiosis are poorly understood. In this study, we analyzed different meiotic processes in the Arabidopsis (Arabidopsis thaliana) accessions Col and Ler, their F1 hybrids, and the F2 offspring under heat stress (37 °C). At 37 °C, Col exhibits significantly reduced formation of double-strand breaks and completely abolished homolog pairing, synapsis, and crossover (CO) formation. Strikingly, Ler and Col/Ler hybrids exhibit normal CO formation and show mildly impacted homolog pairing and synapsis. Interestingly, only 10% to 20% of F2 offspring behave as Ler, revealing that heat tolerance of meiotic recombination in Arabidopsis is genetically controlled by several loci. Moreover, F2 offspring show defects in chromosome morphology and integrity and sister chromatid segregation, the levels of which exceed those in either inbreds or hybrids, thus implying a transgressive effect on heat tolerance of meiosis. Furthermore, correlation and cytogenetic analyses suggest that homolog pairing and synapsis have an impact on heat tolerance of chromosome morphology and stability at postrecombination stages. This study reveals natural heat resilience factors for meiosis in Arabidopsis, which have the great potential to be exploited in breeding programs.

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