Plant-Growth-Promoting Rhizobacteria Modulate Carbohydrate Metabolism in Connection with Host Plant Defense Mechanism

F Su, B Zhao, S Dhondt-Cordelier… - International Journal of …, 2024 - mdpi.com
Plant-growth-promoting rhizobacteria (PGPR) could potentially enhance photosynthesis and
benefit plant growth by improving soil nutrient uptake and affecting plant hormone balance …

Effect of removing superior spikelets on grain filling of inferior spikelets in rice

C You, H Zhu, B Xu, W Huang, S Wang… - Frontiers in Plant …, 2016 - frontiersin.org
Large-panicle rice cultivars often fail to reach their yield potential due to the poor grain filling
of inferior spikelets (IS). Thus, it is important to determine the causes of poor IS grain filling …

Abscisic acid and the key enzymes and genes in sucrose-to-starch conversion in rice spikelets in response to soil drying during grain filling

Z Wang, Y Xu, T Chen, H Zhang, J Yang, J Zhang - Planta, 2015 - Springer
Main conclusion Abscisic acid mediates the effect of post-anthesis soil drying on grain filling
through regulating the activities of key enzymes and expressions of genes involved in …

Spray with plant growth regulators at full bloom may improve quality for storage of'Superior Seedless' table grapes by modifying the vascular system of the bunch

Y Guzmán, B Pugliese, CV González… - Postharvest Biology And …, 2021 - Elsevier
The quality traits of table grape most appreciated by the consumers are berry size, bunch
architecture, and freshness appearance (especially after post-harvest cold storage). Loss of …

ABA and GA3 increase carbon allocation in different organs of grapevine plants by inducing accumulation of non‐structural carbohydrates in leaves, enhancement of …

G Murcia, M Pontin, H Reinoso, R Baraldi… - Physiologia …, 2016 - Wiley Online Library
Grape quality for winemaking depends on sugar accumulation and metabolism in berries.
Abscisic acid (ABA) and gibberellins (GAs) have been reported to control sugar allocation in …

Efficient nitrogen allocation and reallocation into the ear in relation to the superior vascular system in low-nitrogen tolerant maize hybrid

Z Liu, Y Sha, Y Huang, Z Hao, W Guo, L Ke, F Chen… - Field Crops …, 2022 - Elsevier
Efficient nitrogen (N) utilization is crucial for maintaining grain yield under low N input. Less
is known about the role of within-plant N allocation and reallocation on ear development and …

ABA application to maize hybrids contrasting for drought tolerance: changes in water parameters and in antioxidant enzyme activity

TC de Souza, PC Magalhães, EM de Castro… - Plant Growth …, 2014 - Springer
The objective of this study was to evaluate the effects of abscisic acid (ABA) related to the
increase of water-stress tolerance in two drought contrasting maize hybrids: DKB 390 …

Abscisic acid induced changes in production of primary and secondary metabolites, photosynthetic capacity, antioxidant capability, antioxidant enzymes and …

MH Ibrahim, HZE Jaafar - Molecules, 2013 - mdpi.com
An experiment was conducted to investigate and distinguish the relationships in the
production of total phenolics, total flavonoids, soluble sugars, H2O2, O2−, phenylalanine …

[HTML][HTML] Exogenous abscisic acid coordinating leaf senescence and transport of assimilates into wheat grains under drought stress by regulating hormones …

Y Luo, W Li, C Huang, J Yang, M Jin, J Chen, D Pang… - The Crop Journal, 2021 - Elsevier
Drought at the grain filling stage of wheat will cause premature leaf senescence, thus
leading to considerable loss of wheat yield. Therefore, this paper aims to establish a …

Multivariate analysis and genetic dissection of staygreen and stem reserve mobilisation under combined drought and heat stress in wheat (Triticum aestivum L.)

S Taria, A Arora, H Krishna, KK Manjunath… - Frontiers in …, 2023 - frontiersin.org
Introduction: Abiotic stresses significantly reduce crop yield by adversely affecting many
physio-biochemical processes. Several physiological traits have been targeted and …