首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Arabidopsis NAP-related proteins (NRPs) contribute to the coordination of plant growth, developmental rate, and age-related pathogen resistance under short days
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Arabidopsis NAP-related proteins (NRPs) contribute to the coordination of plant growth, developmental rate, and age-related pathogen resistance under short days

机译:拟南芥午睡相关蛋白(NRPS)有助于在短时间内协调植物生长,发育率和年龄相关的病原体抵抗力

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Plant nucleosome assembly protein-related proteins (NRPs) are histone chaperons involved in nucleosome turnover. Despite this basic cellular function, the Arabidopsis nrpl-1 nrp2-1 knock out mutant has been reported to exhibit only mild seedling root phenotypes and to significantly affect the expression of only few hundred genes Zhu et al. (2006). Here we report that NRP loss-of-function as well as the ectopic overexpression of At NRP1 significantly affected the growth, development, and the pathogen response of Arabidopsis plants under short day conditions. The nrpl-1 nrp2-1 mutant grew faster and flowered weeks earlier than the wild type and the overexpressor. The latter developed slower and flowered at a lower number of leaves than the mutant and the wild type. Moreover, the mutant was more sensitive, the overexpressor was more tolerant to pathogen induced necrosis correlating with their more adult and juvenile character, respectively. Transcriptomic comparison of mature non-bolting plants agreed with the phenotypes. The presented and other published data indicate that although NRPs might not be absolutely required for normal plant growth and development, their level needs to be controlled to allow the epigenetic coordination of metabolic, growth, defence and developmental processes during the acclimation to unfavourable growth conditions such as short days.
机译:植物核心组装蛋白质相关蛋白(NRP)是涉及核体变换的组蛋白伴侣。尽管存在这种基本的蜂窝功能,但据报道,拟南芥NRPL-1 NRP2-1敲除突变体表现出轻度幼苗根系表型,并且显着影响Zhu等人的表达。 (2006)。在这里,我们报告说,NRP1的NRP丧失损失以及在NRP1的异位过度表达显着影响了拟南芥植物在短期条件下的生长,发展和病原体反应。 NRPL-1 NRP2-1突变体比野生型和过度印象器更快地增长。后者的叶片比突变体和野生型在较低的叶子中发达较慢。此外,突变体更敏感,过度表达式更容易耐受病原体诱导的坏死,分别与其更成人和少年特征相关。成熟非螺栓植物与表型同意的转录组比较。所提出的和其他公布的数据表明,尽管正常植物生长和发展可能不是绝对必需的,但需要控制他们的水平,以便在适应于不利的生长条件下进行代谢,生长,国防和发育过程的表观遗传协调截至短期。

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