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淹水条件下,AG1 和 AG2 QTL 导入系和种子预处理对水稻厌氧萌发过程中生长和生理过程的响应。

Responses of AG1 and AG2 QTL introgression lines and seed pre-treatment on growth and physiological processes during anaerobic germination of rice under flooding.

机构信息

International Rice Research Institute, DAPO Box 7777, Metro Manila, Philippines.

Bangladesh Rice Research Institute, Gazipur 1701, Bangladesh.

出版信息

Sci Rep. 2020 Jun 23;10(1):10214. doi: 10.1038/s41598-020-67240-x.

Abstract

Rice seeds germinating in flooded soils encounter hypoxia or even anoxia leading to poor seed germination and crop establishment. Introgression of AG1 and AG2 QTLs associated with tolerance of flooding during germination, together with seed pre-treatment via hydro-priming or presoaking can enhance germination and seedling growth in anaerobic soils. This study assessed the performance of elite lines incorporating AG1, AG2 and their combination when directly seeded in flooded soils using dry seeds. The QTLs were in the background of two popular varieties PSB Rc82 and Ciherang-Sub1, evaluated along with the donors Kho Hlan On (AG1) and Ma-Zhan Red (AG2) and recipient parents PSB Rc82 and Ciherang-Sub1. In one set of experiments conducted in the greenhouse, seedling emergence, growth, and carbohydrate mobilization from seeds were assessed. Metabolites associated with reactive oxygen species (ROS) scavenging including malondialdehyde (MDA) as a measure of lipid peroxidation, ascorbate, total phenolic concentration (TPC), and activities of ROS scavenging enzymes were quantified in seeds germinating under control (saturated) and flooded (10 cm) soils. In another set of experiments conducted in a natural field with 3-5 cm flooding depths, control and pretreated seeds of Ciherang-Sub1 introgression lines and checks were used. Flooding reduced seedling emergence of all genotypes, though emergence of AG1 + AG2 introgression lines was greater than the other AG lines. Soluble sugars increased, while starch concentration decreased gradually under flooding especially in the tolerant checks and in AG1 + AG2 introgression lines. Less lipid peroxidation and higher α-amylase activity, higher ascorbate (RAsA) and TPC were observed in the tolerant checks and in the AG1 + AG2 introgression lines. Lipid peroxidation correlated negatively with ascorbate, TPC, and with ROS scavengers. Seed hydro-priming or pre-soaking increased emergence by 7-10% over that of dry seeds. Introgression of AG2 and AG1 + AG2 QTLs with seed pretreatment showed 101-153% higher emergence over dry seeds of intolerant genotypes in the field. Lines carrying AG1 + AG2 QTLs showed higher α-amylase activity, leading to rapid starch degradation and increase in soluble sugars, ascorbate, and TPC, together leading to higher germination and seedling growth in flooded soils. Seed hydro-priming or pre-soaking for 24 h also improved traits associated with flooding tolerance. Combining tolerance with seed management could therefore, improve crop establishment in flooded soils and encourage large-scale adoption of direct seeded rice system.

摘要

在水淹土壤中发芽的水稻种子会遭遇缺氧甚至无氧环境,导致种子发芽和作物定植不良。将与发芽期耐水淹相关的 AG1 和 AG2 QTL 导入,同时对种子进行水引发或预浸泡等预处理,可以增强在厌氧土壤中种子的发芽和幼苗生长。本研究评估了将 AG1、AG2 及其组合导入两个流行品种 PSB Rc82 和 Ciherang-Sub1 背景后,直接播种在水淹土壤中使用干种子的表现。这些 QTL 位于 Kho Hlan On(AG1)和 Ma-Zhan Red(AG2)供体以及 PSB Rc82 和 Ciherang-Sub1 受体亲本的背景下,与供体一起进行评估。在温室中进行的一组实验中,评估了幼苗的出苗、生长以及从种子中动员的碳水化合物。在对照(饱和)和水淹(10cm)土壤中发芽的种子中,量化了与活性氧(ROS)清除相关的代谢物,包括丙二醛(MDA)作为脂质过氧化的衡量标准、抗坏血酸、总酚浓度(TPC)和 ROS 清除酶的活性。在自然田间 3-5cm 水淹深度的另一组实验中,使用 Ciherang-Sub1 渐渗系和对照的对照和预处理种子。水淹降低了所有基因型的幼苗出苗率,但 AG1+AG2 渐渗系的出苗率高于其他 AG 系。在水淹条件下,可溶性糖逐渐增加,而淀粉浓度逐渐降低,特别是在耐淹对照和 AG1+AG2 渐渗系中。在耐淹对照和 AG1+AG2 渐渗系中,观察到较低的脂质过氧化、较高的α-淀粉酶活性、较高的抗坏血酸(RAsA)和 TPC。脂质过氧化与抗坏血酸、TPC 和 ROS 清除剂呈负相关。与干种子相比,种子水引发或预浸泡可使出苗率提高 7-10%。在田间,不耐受基因型的干种子中,AG2 和 AG1+AG2 QTL 与种子预处理相结合,出苗率提高了 101-153%。携带 AG1+AG2 QTL 的系表现出较高的α-淀粉酶活性,导致淀粉迅速降解并增加可溶性糖、抗坏血酸和 TPC,从而提高了水淹土壤中的发芽和幼苗生长。种子水引发或预浸泡 24 小时也能改善与耐水淹相关的特性。因此,将耐水淹性与种子管理相结合,可以改善水淹土壤中的作物定植,并鼓励大规模采用直接播种水稻系统。

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