Transcriptome analysis reveals the inhibitory nature of high nitrate during adventitious roots formation in the apple rootstock

X Zhang, MM Tahir, S Li, J Mao, MA Nawaz… - Physiologia …, 2021 - Wiley Online Library
In the process of vegetative propagation of apple rootstocks, the development of
adventitious roots (ARs) has crucial importance. Nitrate is an essential nutrient necessary for …

High nitrate inhibited adventitious roots formation in apple rootstock by altering hormonal contents and miRNAs expression profiles

MM Tahir, S Li, J Mao, Y Liu, K Li, X Zhang, X Lu… - Scientia …, 2021 - Elsevier
The adventitious roots (ARs) formation is a major setback for the mass proliferation of apple
rootstocks. Nitrate is a vital signaling molecule for the regulation of root architecture …

Nitrate application induces adventitious root growth by regulating gene expression patterns in apple rootstocks

MM Tahir, Z Lu, C Wang, K Shah, S Li, X Zhang… - Journal of Plant Growth …, 2021 - Springer
Adventitious root (AR) formation is an essential step in the vegetative propagation of apple
rootstocks. Nitrate serves as an essential signaling molecule for regulating root architecture …

Transcriptome analysis reveals the promotive effect of potassium by hormones and sugar signaling pathways during adventitious roots formation in the apple rootstock

MM Tahir, S Chen, X Ma, S Li, X Zhang, Y Shao… - Plant Physiology and …, 2021 - Elsevier
Apples are economically valuable and widely consumed fruits. The adventitious roots (ARs)
formation is gridlock for apple trees mass propagation. The possible function of multiple …

[HTML][HTML] Nitrate application affects root morphology by altering hormonal status and gene expression patterns in B9 apple rootstock nursery plants

MM Tahir, X Zhang, K Shah, F Hayat, S Li, J Mao… - Fruit …, 2021 - maxapress.com
Lateral roots (LRs) are critical for absorbing water, minerals, and nutrients. Nitrate is a vital
signaling molecule for regulating LR growth. However, understanding how nitrate interacts …

[HTML][HTML] Transcriptome analysis reveals multiple hormones, wounding and sugar signaling pathways mediate adventitious root formation in apple rootstock

K Li, Y Liang, L Xing, J Mao, Z Liu, F Dong… - International journal of …, 2018 - mdpi.com
Adventitious roots (AR) play an important role in the vegetative propagation of apple
rootstocks. The potential role of hormone, wounding, and sugar signalling pathways in …

Identification and characterization of NRT gene family reveals their critical response to nitrate regulation during adventitious root formation and development in apple …

MM Tahir, H Wang, B Ahmad, Y Liu, S Fan, K Li… - Scientia …, 2021 - Elsevier
Adventitious roots (ARs) formation is crucial for the vegetative propagation of horticultural
crops. Nitrate availability is the main factor determining plant growth and development …

[HTML][HTML] Transcriptome analysis reveals multiple genes and complex hormonal-mediated interactions with PEG during adventitious root formation in apple

S Li, MM Tahir, T Wu, L Xie, X Zhang, J Mao… - International Journal of …, 2022 - mdpi.com
Adventitious root (AR) formation is a bottleneck for the mass propagation of apple rootstocks,
and water stress severely restricts it. Different hormones and sugar signaling pathways in …

[HTML][HTML] Comparative physiological, metabolomic, and transcriptomic analyses reveal mechanisms of apple dwarfing rootstock root morphogenesis under nitrogen …

B Xie, Y Chen, Y Zhang, X An, X Li, A Yang… - Frontiers in Plant …, 2023 - frontiersin.org
Nitrogen (N) and phosphorus (P) are essential phytomacronutrients, and deficiencies in
these two elements limit growth and yield in apple (Malus domestica Borkh.). The rootstock …

[HTML][HTML] Systems analysis of transcriptome data provides new hypotheses about Arabidopsis root response to nitrate treatments

J Canales, TC Moyano, E Villarroel… - Frontiers in plant …, 2014 - frontiersin.org
Nitrogen (N) is an essential macronutrient for plant growth and development. Plants adapt to
changes in N availability partly by changes in global gene expression. We integrated …