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用于将数量性状基因座转移到小麦(L.)耐旱优良品系的标记辅助选择。

Marker-assisted selection for transfer of QTLs to a promising line for drought tolerance in wheat ( L.).

作者信息

Sunilkumar V P, Krishna Hari, Devate Narayana Bhat, Manjunath Karthik Kumar, Chauhan Divya, Singh Shweta, Sinha Nivedita, Singh Jang Bahadur, T L Prakasha, Pal Dharam, Sivasamy M, Jain Neelu, Singh Gyanendra Pratap, Singh Pradeep Kumar

机构信息

Indian Agricultural Research Institute, ICAR, New Delhi, India.

National Bureau of Plant Genetic Resources, ICAR, New Delhi, India.

出版信息

Front Plant Sci. 2023 Jul 21;14:1147200. doi: 10.3389/fpls.2023.1147200. eCollection 2023.

Abstract

Wheat crop is subjected to various biotic and abiotic stresses, which affect crop productivity and yield. Among various abiotic stresses, drought stress is a major problem considering the current global climate change scenario. A high-yielding wheat variety, HD3086, has been released for commercial cultivation under timely sown irrigated conditions for the North Western Plain Zone (NWPZ) and North Eastern Plain Zone NEPZ of India. Presently, HD3086 is one of the highest breeder seed indented wheat varieties and has a stable yield over the years. However, under moisture deficit conditions, its potential yield cannot be achieved. The present study was undertaken to transfer drought-tolerant QTLs in the background of the variety HD3086 using marker-assisted backcross breeding. QTLs governing Biomass (BIO), Canopy Temperature (CT), Thousand Kernel Weight (TKW), Normalized Difference Vegetation Index (NDVI), and Yield (YLD) were transferred to improve performance under moisture deficit conditions. In BCF, BCF and BCF generations, the foreground selection was carried out to identify the plants with positive QTLs conferring drought tolerance and linked to traits NDVI, CT, TKW, and yield. The positive homozygous lines for targeted QTLs were advanced from BCF to BCF the pedigree-based phenotypic selection method. Background analysis was carried out in BCF and obtained 78-91% recovery of the recurrent parent genome in the improved lines. Furthermore, the advanced lines were evaluated for 2 years under drought stress to assess improvement in MABB-derived lines. Increased GWPS, TKW, and NDVI and reduced CT was observed in improved lines. Seven improved lines were identified with significantly higher yields in comparison to HD3086 under stress conditions.

摘要

小麦作物面临各种生物和非生物胁迫,这些胁迫会影响作物的生产力和产量。在各种非生物胁迫中,考虑到当前的全球气候变化情况,干旱胁迫是一个主要问题。一个高产小麦品种HD3086已被推荐在印度西北平原区(NWPZ)和东北平原区(NEPZ)适时播种灌溉条件下进行商业化种植。目前,HD3086是最高级的育种种子凹痕小麦品种之一,多年来产量稳定。然而,在水分亏缺条件下,其潜在产量无法实现。本研究采用标记辅助回交育种方法,在HD3086品种背景下导入耐旱QTL。导入控制生物量(BIO)、冠层温度(CT)、千粒重(TKW)、归一化植被指数(NDVI)和产量(YLD)的QTL,以提高在水分亏缺条件下的表现。在BCF1、BCF2和BCF3代中,进行前景选择,以鉴定具有赋予耐旱性且与NDVI、CT、TKW和产量性状相关的正向QTL的植株。通过基于系谱的表型选择方法,将目标QTL的正向纯合系从BCF1推进到BCF3。在BCF2进行背景分析,在改良系中获得了78-91%的轮回亲本基因组回复率。此外,对改良系在干旱胁迫下进行了2年的评估,以评估标记辅助回交育种衍生系的改良情况。在改良系中观察到全球升温潜能值(GWPS)、千粒重和NDVI增加,CT降低。在胁迫条件下,鉴定出7个改良系的产量显著高于HD3086。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f1aa/10401266/d5a5a7cfff2c/fpls-14-1147200-g001.jpg

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