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桃(Prunus persica)ZAT12蛋白的特性:在果实冷害耐受性中的作用及基因靶点的鉴定

Characterization of ZAT12 protein from Prunus persica: role in fruit chilling injury tolerance and identification of gene targets.

作者信息

Gismondi Mauro, Strologo Laura, Gabilondo Julieta, Budde Claudio, Drincovich María Fabiana, Bustamante Claudia

机构信息

Centro de Estudios Fotosintéticos y Bioquímicos (CEFOBI), Facultad de Ciencias Bioquímicas y Farmacéuticas, Universidad Nacional de Rosario, Suipacha 531 (2000), Rosario, Argentina.

Estación Experimental San Pedro, Instituto Nacional de Tecnología Agropecuaria (INTA), Ruta Nacional No 9 Km 170, San Pedro, Argentina.

出版信息

Planta. 2024 Dec 13;261(1):14. doi: 10.1007/s00425-024-04593-x.

Abstract

PpZAT12, a transcription factor differentially expressed in peach varieties with distinct susceptibility tochilling injury (CI), is a potential candidate gene for CI tolerance by regulating several identified gene targets. ZAT (zinc finger of Arabidopsis thaliana) proteins play roles in multiple abiotic stress tolerance in Arabidopsis and other species; however, there are few reports on these transcription factors (TFs) in fruit crops. This study aimed to evaluate PpZAT12, a C2H2 TF up-regulated in peach fruit by a heat treatment applied before postharvest cold storage for reducing chilling injury (CI) symptoms. Here, the expression of PpZAT12 in different tissues and fruits subjected to either postharvest heat or cold treatments, was evaluated in peach varieties with differential susceptibility to develop CI. PpZAT12 increased by cold storage in CI-resistant cultivars ('Elegant Lady' and 'Rojo 2'), while it was not modified in a cultivar susceptible to develop CI ('Flordaking'). Besides, we expressed PpZAT12 in Arabidopsis (35S::PpZAT12) and found that these plants show impaired plant growth and development, rendering small plants with senescence delay and aborted seeds. We applied a proteomic approach to decipher the peptides responding to PpZAT12 in Arabidopsis and found 348 differential expressed proteins (DEPs) relative to the wild type. Besides, comparing the DEPs between Arabidopsis plants expressing PpZAT12 or AtZAT12 (35S::AtZAT12) we found common and specific responses to these TFs. Based on the proteomic information obtained here and published data about AtZAT12, we searched ZAT12-targets in peach allowing the identification of a putative ZAT12 regulon in this species. The identified peach ZAT12-protein targets could underlie the differential susceptibility to CI among different peach varieties and can be used as future targets to improve adaptation to refrigeration in fleshy fruits.

摘要

PpZAT12是一种在对冷害(CI)敏感性不同的桃品种中差异表达的转录因子,是通过调控多个已确定的基因靶点来实现耐冷性的潜在候选基因。ZAT(拟南芥锌指蛋白)蛋白在拟南芥和其他物种的多种非生物胁迫耐受性中发挥作用;然而,关于这些转录因子(TFs)在果树作物中的报道很少。本研究旨在评估PpZAT12,这是一种在采后冷藏前进行热处理以减轻冷害(CI)症状的桃果实中上调的C2H2 TF。在此,我们在对CI易感性不同的桃品种中,评估了PpZAT12在不同组织以及采后经过热处理或冷处理的果实中的表达情况。在耐CI品种(‘Elegant Lady’和‘Rojo 2’)中,PpZAT12的表达通过冷藏而增加,而在易发生CI的品种(‘Flordaking’)中其表达未发生改变。此外,我们在拟南芥中表达了PpZAT12(35S::PpZAT12),发现这些植株的生长发育受到损害,表现为植株矮小、衰老延迟且种子败育。我们采用蛋白质组学方法来解析拟南芥中对PpZAT12有响应的肽段,发现相对于野生型有348个差异表达蛋白(DEPs)。此外,通过比较表达PpZAT12或AtZAT12(35S::AtZAT12)的拟南芥植株之间的DEPs,我们发现了对这些TFs的共同和特异性响应。基于在此获得的蛋白质组学信息以及已发表的关于AtZAT12的数据,我们在桃中搜索ZAT12靶点,从而鉴定出该物种中一个假定的ZAT12调控子。所鉴定出的桃ZAT12蛋白靶点可能是不同桃品种对CI易感性差异的基础,并且可作为未来改善肉质果实对冷藏适应性的靶点。

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