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Autor:
Muhammad Hussnain Siddique, Farrukh Azeem, Afifa Younas, Sami Ul-Allah, Sajid Fiaz, Asima Rasool, Manzer H. Siddiqui, Ijaz Rasul, Muhammad Rashid, Muhammad Ali, Sultana Anwar, Ali Raza, Roshan Zameer
Publikováno v:
Plant physiology and biochemistry : PPB. 170
Potassium (K+) is an important macro-nutrient for plants, which comprises almost 10% of plant's dry mass. It plays a crucial role in the growth of plants as well as other important processes related to metabolism and stress tolerance. Plants have a c
Autor:
Christoph H. Weinert, Bastian L. Franzisky, Björn Egert, Sabine E. Kulling, Christian Zörb, M.L. Romo-Pérez
Publikováno v:
Plant physiology and biochemistry : PPB. 168
Onions (Allium cepa L.) are considered a salt-sensitive crop. However, to date, little evidence supports this claim and information about the physiological and metabolomic effects of Na+ accumulation in onion plants is lacking. The purpose of our res
Autor:
Mingshun Li, Zhiqiang Zhou, Yong Chen, Xinhai Li, Yong Hongjun, Ping Luo, Zhuanfang Hao, Di Zhou, Wen-wei Gao, Jianfeng Weng, Zhennan Xu, Jienan Han, Nan Wang, Bo Pang, Degui Zhang, Kewei Rong, Yuelei Lu
Publikováno v:
Plant physiology and biochemistry : PPB. 170
Abiotic stress is the main factor that severely limits crop growth and yield. NAC (NAM, ATAF1/2 and CUC2) transcription factors play an important role in dealing with various abiotic stresses. Here, we discovered the ZmSNAC13 gene in drought-tolerant
Publikováno v:
Plant physiology and biochemistry : PPB. 169
Sodium nitroprusside (SNP), which produces nitric oxide (NO) has the well-documented potential to alleviate the adverse effects of various abiotic stressors such as salinity. The present study aimed at investigating how the application of SNP can ame
Publikováno v:
Plant physiology and biochemistry : PPB. 168
The conserved microRNA396 (miR396) is involved in growth, development, and abiotic stress responses in a variety of plants by regulating target genes. Here, we obtained transgenic Chrysanthemum indicum (C. indicum) overexpressing the cin-miR396a gene
Publikováno v:
Plant physiology and biochemistry : PPB. 167
Tea trees have a high demand for nitrogen (N) fertilizer to improve the yield and quality of tea. In this research, transcriptome analysis revealed the effect of N starvation and resupply upon N uptake in tea plants. We identified 4098 differentially
Publikováno v:
Plant physiology and biochemistry : PPB. 170
PheWRKY86 is a member of the WRKY transcription factor family in moso bamboo (Phyllostachys edulis). Expression of PheWRKY86 is strongly induced by drought and abscisic acid (ABA) treatments. The PheWRKY86 protein localizes to the cell nucleus and is
Autor:
Chan-Ju Lee, Sang-Soo Kwak, So-Eun Kim, Yun-Hee Kim, Chang Yoon Ji, Ye-Hoon Lim, Sul-U Park, Ho Soo Kim
Publikováno v:
Plant physiology and biochemistry : PPB. 167
Sweetpotato (Ipomoea batatas [L.] Lam) is a prospective food crop that ensures food and nutrition security under the dynamic changes in global climate. Peroxidase (POD) is a multifunctional enzyme involved in diverse plant physiological processes, in
Autor:
Sajjad Ali, Muhammad Hamzah Saleem, Xiukang Wang, Muhammad Adnan, Shafaqat Ali, Shah Fahad, Daniel Ingo Hefft, Mohammed Nasser Alyemeni, Sadia Zafar, Asia Shah, Muhammad Nawaz
Publikováno v:
Plant physiology and biochemistry : PPB. 167
It was aimed to examine the role of gibberellic acid (GA3) and NPK fertilizer in alleviating boron (B) toxicity in coriander (Coriandrum sativum L.) plants. Two weeks old C. sativum seedlings were subjected to different NPK fertilizers [low NPK (30 k
Autor:
So-Eun Kim, Chang Yoon Ji, Chan-Ju Lee, Woo Sung Park, Beg Hab Kim, Yu Yang, Ho Soo Kim, Xiaofeng Bian, Sang-Soo Kwak, Mi-Jeong Ahn, Sul-U Park, Ye-Hoon Lim, Yizhi Xie
Publikováno v:
Plant physiology and biochemistry : PPB. 167
Tocopherols are lipid-soluble compounds regarded as vitamin E compounds and they function as antioxidants in scavenging lipid peroxyl radicals and quenching reactive oxygen species (ROS). In our previous studies, we isolated five tocopherol biosynthe