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首页> 外文期刊>BMC Plant Biology >Activities of leaf and spike carbohydrate-metabolic and antioxidant enzymes are linked with yield performance in three spring wheat genotypes grown under well-watered and drought conditions
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Activities of leaf and spike carbohydrate-metabolic and antioxidant enzymes are linked with yield performance in three spring wheat genotypes grown under well-watered and drought conditions

机译:叶片和穗碳水化合物 - 代谢和抗氧化剂酶的活性与在浇水和干旱条件下生长的三个春小麦基因型中的产量性能相关联

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To improve our understanding about the physiological mechanism of grain yield reduction at anthesis, three spring wheat genotypes [L1 (advanced line), L2 (Vorobey) and L3 (Punjab-11)] having contrasting yield potential under drought in field were investigated under controlled greenhouse conditions, drought stress was imposed at anthesis stage by withholding irrigation until all plant available water was depleted, while well-watered control plants were kept at 95% pot water holding capacity. Compared to genotype L1 and L2, pronounced decrease in grain number (NGS), grain yield (GY) and harvest index (HI) were found in genotype L3, mainly due to its greater kernel abortion (KA) under drought. A significant positive correlation of leaf monodehydroascorbate reductase (MDHAR) with both NGS and HI was observed. In contrast, significant negative correlations of glutathione S-transferase (GST) and vacuolar invertase (vacInv) both within source and sink were found with NGS and HI. Likewise, a significant negative correlation of leaf abscisic acid (ABA) with NGS was noticed. Moreover, leaf aldolase and cell wall peroxidase (cwPOX) activities were significantly and positively associated with thousand kernel weight (TKW). Distinct physiological markers correlating with yield traits and higher activity of leaf aldolase and cwPOX may be chosen as predictive biomarkers for higher TKW. Also, higher activity of MDHAR within the leaf can be selected as a predictive biomarker for higher NGS in wheat under drought. Whereas, lower activity of vacInv and GST both within leaf and spike can be selected as biomarkers for higher NGS and HI. The results highlighted the role of antioxidant and carbohydrate-metabolic enzymes in the modulation of source-sink balance in wheat crops, which could be used as bio-signatures for breeding and selection of drought-resilient wheat genotypes for a future drier climate.
机译:为了改善我们对开花的谷物产量降低的生理机制的理解,在控制下研究了三种春小麦基因型[L1(先进的线),L3(旁遮普 - 11),其在田间干旱下具有对比的屈服潜力。温室条件,通过扣留灌溉,在开放性阶段施加干旱胁迫,直到所有植物可用水耗尽,而含水量的对照植物保持在95%的罐持续容量。与基因型L1和L2相比,在基因型L3中发现晶粒数(NGS),籽粒产量(GY)和收获指数(HI)的显着降低,主要是由于其在干旱下的核堕胎(Ka)。观察到与NGS和HI两种NGS和HI的叶麦脱石岩还原酶(MDHAR)的显着正相关。相反,谷胱甘肽S-转移酶(GST)和真空转化酶(VAVINV)的显着负相关性在源极和水槽内被发现用NGS和HI。同样地,注意到叶脱离酸(ABA)与NGS的显着负相关。此外,叶醛糖酶和细胞壁过氧化物酶(CWPOX)活性显着且正相关,与千粒重量(TKW)有关。可以选择与产率性状和叶片醛糖酶和CWPOX的更高活性相关的不同的生理标志物作为预测生物标志物,用于更高的TKW。此外,叶片内的MDHAR的更高活性可以选择作为在干旱下小麦中的较高NGS的预测生物标志物。然而,可以选择叶子和穗内的疫苗和GST的降低活性作为较高的NGS和HI的生物标志物。结果强调了抗氧化剂和碳水化合物 - 代谢酶在小麦作物中源水槽平衡调节中的作用,其可用作生物签名,用于未来干燥气候的干旱弹性小麦基因型的育种和选择。

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