Suppr超能文献

解析珍珠粟杂交种和自交系在盐胁迫下与性状相关的形态生理反应

Deciphering trait associated morpho-physiological responses in pearlmillet hybrids and inbred lines under salt stress.

作者信息

Kumar Ashwani, Sheoran Parvender, Mann Anita, Yadav Devvart, Kumar Arvind, Devi Sunita, Kumar Naresh, Dhansu Pooja, Sharma Dinesh K

机构信息

Division of Crop Improvement, ICAR-Central Soil Salinity Research Institute, Karnal, India.

Division of Social Sciences Research, ICAR-Central Soil Salinity Research Institute, Karnal, India.

出版信息

Front Plant Sci. 2023 Mar 2;14:1121805. doi: 10.3389/fpls.2023.1121805. eCollection 2023.

Abstract

Pearl millet is a staple food for more than 90 million people residing in highly vulnerable hot arid and semi-arid regions of Africa and Asia. These regions are more prone to detrimental effects of soil salinity on crop performance in terms of reduced biomass and crop yields. We investigated the physiological mechanisms of salt tolerance to irrigation induced salinity stress (EC ~3, 6 & 9 dSm) and their confounding effects on plant growth and yield in pearl millet inbred lines and hybrids. On average, nearly 30% reduction in above ground plant biomass was observed at EC ~6 dSm which stretched to 56% at EC ~9 dSm in comparison to best available water. With increasing salinity stress, the crop performance of test hybrids was better in comparison to inbred lines; exhibiting relatively higher stomatal conductance (gS; 16%), accumulated lower proline (Pro; -12%) and shoot Na/K(-31%), synthesized more protein (SP; 2%) and sugars (TSS; 32%) compensating in lower biomass (AGB; -22%) and grain yield (GY: -14%) reductions at highest salinity stress of EC ~9 dSm. Physiological traits modeling underpinning plant salt tolerance and adaptation mechanism illustrated the key role of 7 traits (AGB, Pro, SS, gS, SPAD, Pn, and SP) in hybrids and 8 traits (AGB, Pro, PH, Na, K, Na/K, SPAD, and gS) in inbred lines towards anticipated grain yield variations in salinity stressed pearl millet. Most importantly, the AGB alone, explained >91% of yield variation among evaluated hybrids and inbreed lines at EC ~9 dSm. Cumulatively, the better morpho-physiological adaptation and lesser yield reduction with increasing salinity stress in pearl millet hybrids (HHB 146, HHB 272, and HHB 234) and inbred lines (H77/833-2-202, ICMA 94555 and ICMA 843-22) substantially complemented in increased plant salt tolerance and yield stability over a broad range of salinity stress. The information generated herein will help address in deciphering the trait associated physiological alterations to irrigation induced salt stress, and developing potential hybrids in pearl millet using these parents with special characteristics.

摘要

珍珠粟是非洲和亚洲9000多万人的主食,这些人居住在极易受影响的炎热干旱和半干旱地区。就生物量和作物产量降低而言,这些地区的作物表现更容易受到土壤盐分的不利影响。我们研究了珍珠粟自交系和杂交种对灌溉引起的盐分胁迫(电导率3、6和9 dS/m)的耐盐生理机制及其对植物生长和产量的混杂影响。与最佳可用水分相比,在电导率6 dS/m时,地上部植物生物量平均减少近30%,在电导率9 dS/m时,这一减少幅度扩大到56%。随着盐分胁迫的增加,测试杂交种的作物表现优于自交系;在电导率9 dS/m的最高盐分胁迫下,杂交种表现出相对较高的气孔导度(gS;16%)、较低的脯氨酸积累量(Pro;-12%)和地上部钠钾比(-31%),合成了更多的蛋白质(SP;2%)和糖类(总可溶性固形物;32%),补偿了较低的生物量(AGB;-22%)和籽粒产量(GY:-14%)的降低。支撑植物耐盐性和适应机制的生理性状建模表明,7个性状(AGB、Pro、SS、gS、SPAD、Pn和SP)在杂交种中起关键作用,8个性状(AGB、Pro、株高、Na、K、Na/K、SPAD和gS)在自交系中对盐分胁迫下珍珠粟预期的籽粒产量变化起关键作用。最重要的是,仅AGB就解释了在电导率~9 dS/m时评估的杂交种和自交系间>91%的产量差异。总体而言,珍珠粟杂交种(HHB 146、HHB 272和HHB 234)和自交系(H77/833-2-202、ICMA 94555和ICMA 843-22)随着盐分胁迫增加表现出更好的形态生理适应性和较小的产量降低,在广泛的盐分胁迫范围内大大增强了植物的耐盐性和产量稳定性。本文所产生的信息将有助于解读与灌溉引起的盐胁迫相关的性状生理变化,并利用具有特殊特性的亲本培育珍珠粟的潜在杂交种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f5cf/10018183/1bc1ca66d7d5/fpls-14-1121805-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验