Zhang Zeyu, Wang Xianyu, Zang Jianing, Lee Dongsun, Zhu Qian, Chen Lijuan
Rice Research Institute, Yunnan Agricultural University, Kunming 650201, China.
The Key Laboratory for Crop Production and Smart Agriculture of Yunnan Province, Yunnan Agricultural University, Kunming 650201, China.
Plants (Basel). 2024 Apr 28;13(9):1218. doi: 10.3390/plants13091218.
Weedy rice is the most challenging weed species to remove in rice production. We found a novel phenotype of seedling leaves which rapidly generates necrotic spots in response to imidazolinone herbicides in weedy rice, but its influencing factors and formation basis are still unknown. In this study, we used the leaf necrotic spot-producing type of weedy rice as the material. First, leaf necrotic spots were defined as physiological and vacuole-mediated cell necrosis by microscopic examination. The imazethapyr concentration was positively correlated with the degree of necrotic spots occurring, while the action site was in accordance with necrosis using herbicide stability tests combined with fluorescence parameters. Furthermore, transcriptome analysis revealed significant differences in the gene expression of endoplasmic reticulum stress and the lipid metabolism membrane structure damage pathway during necrosis, as confirmed by transmission electron microscopy. The light-temperature test also showed that high temperature and intense light could promote the appearance of necrotic spots. These experimental results are helpful in clarifying the process and basis of imazethapyr in inducing the rapid generation of necrotic spots in rice leaves and providing new insight into understanding the mechanism of response to imidazolinone herbicides and the control of weedy rice.
杂草稻是水稻生产中最难去除的杂草种类。我们发现了杂草稻幼苗叶片的一种新表型,其对咪唑啉酮类除草剂会迅速产生坏死斑,但其影响因素和形成基础仍不清楚。在本研究中,我们以产生叶片坏死斑的杂草稻类型为材料。首先,通过显微镜检查将叶片坏死斑定义为生理和液泡介导的细胞坏死。使用除草剂稳定性试验结合荧光参数,咪唑乙烟酸浓度与坏死斑发生程度呈正相关,且作用位点与坏死情况相符。此外,转录组分析揭示了坏死过程中内质网应激和脂质代谢膜结构损伤途径的基因表达存在显著差异,透射电子显微镜证实了这一点。光温试验还表明,高温强光可促进坏死斑的出现。这些实验结果有助于阐明咪唑乙烟酸诱导水稻叶片快速产生坏死斑的过程和基础,并为理解对咪唑啉酮类除草剂的响应机制及杂草稻防治提供新的见解。