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抽穗前干旱胁迫对绿色超级稻生理特性、产量相关性状及干旱响应基因的影响

Impact of Pre-Anthesis Drought Stress on Physiology, Yield-Related Traits, and Drought-Responsive Genes in Green Super Rice.

作者信息

Ahmad Hassaan, Zafar Syed Adeel, Naeem Muhammad Kashif, Shokat Sajid, Inam Safeena, Rehman Malik Attique Ur, Naveed Shahzad Amir, Xu Jianlong, Li Zhikang, Ali Ghulam Muhammad, Khan Muhammad Ramzan

机构信息

National Institute for Genomics and Advanced Biotechnology (NIGAB), National Agricultural Research Centre, Islamabad, Pakistan.

Nuclear Institute for Agriculture and Biology, Faisalabad, Pakistan.

出版信息

Front Genet. 2022 Mar 24;13:832542. doi: 10.3389/fgene.2022.832542. eCollection 2022.

Abstract

Optimum soil water availability is vital for maximum yield production in rice which is challenged by increasing spells of drought. The reproductive stage drought is among the main limiting factors leading to the drastic reduction in grain yield. The objective of this study was to investigate the molecular and morphophysiological responses of pre-anthesis stage drought stress in green super rice. The study assessed the performance of 26 rice lines under irrigated and drought conditions. Irrigated treatment was allowed to grow normally, while drought stress was imposed for 30 days at the pre-anthesis stage. Three important physiological traits including pollen fertility percentage (PFP), cell membrane stability (CMS), and normalized difference vegetative index (NDVI) were recorded at anthesis stage during the last week of drought stress. Agronomic traits of economic importance including grain yield were recorded at maturity stage. The analysis of variance demonstrated significant variation among the genotypes for most of the studied traits. Correlation and principal component analyses demonstrated highly significant associations of particular agronomic traits with grain yield, and genetic diversity among genotypes, respectively. Our study demonstrated a higher drought tolerance potential of GSR lines compared with local cultivars, mainly by higher pollen viability, plant biomass, CMS, and harvest index under drought. In addition, the molecular basis of drought tolerance in GSR lines was related to upregulation of certain drought-responsive genes including , , , but not the DREB genes. Our study identified novel drought-responsive genes (, , , and ) that could be further characterized using reverse genetics to be utilized in molecular breeding for drought tolerance.

摘要

最佳土壤水分有效性对于水稻实现最高产量至关重要,而水稻正面临着日益频繁的干旱期挑战。生殖阶段干旱是导致谷物产量大幅下降的主要限制因素之一。本研究的目的是调查绿色超级稻花前阶段干旱胁迫的分子和形态生理响应。该研究评估了26个水稻品系在灌溉和干旱条件下的表现。灌溉处理使其正常生长,而在花前阶段施加30天的干旱胁迫。在干旱胁迫最后一周的开花期记录了三个重要的生理性状,包括花粉育性百分比(PFP)、细胞膜稳定性(CMS)和归一化植被指数(NDVI)。在成熟期记录了包括谷物产量在内的具有经济重要性的农艺性状。方差分析表明,大多数研究性状在基因型间存在显著差异。相关性分析和主成分分析分别表明特定农艺性状与谷物产量以及基因型间遗传多样性存在高度显著关联。我们的研究表明,与当地品种相比,绿色超级稻品系具有更高的耐旱潜力,主要体现在干旱条件下更高的花粉活力、植株生物量、CMS和收获指数。此外,绿色超级稻品系耐旱的分子基础与某些干旱响应基因(包括 、 、 )的上调有关,但与DREB基因无关。我们的研究鉴定出了新的干旱响应基因( 、 、 和 ),可利用反向遗传学进一步对其进行表征,以用于耐旱性分子育种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7990/8987348/ca94bcabfe2b/fgene-13-832542-g001.jpg

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