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Planta: An international journal of the plant biology

Resumen/Descripción – provisto por la editorial en inglés
Planta publishes timely and substantial articles on all aspects of plant biology. We welcome original research papers on any plant species. Areas of interest include biochemistry, bioenergy, biotechnology, cell biology, development, ecological and environmental physiology, growth, metabolism, morphogenesis, molecular biology, physiology, plant-microbe interactions, structural biology, and systems biology. Review articles summarize recent advances in topical areas of plant biology; while the section on Emerging Technologies describes the development of new methods with the potential to advance one or more areas of plant biology.
Palabras clave – provistas por la editorial

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Disponibilidad
Institución detectada Período Navegá Descargá Solicitá
No detectada desde mar. 1997 / hasta dic. 2023 SpringerLink

Información

Tipo de recurso:

revistas

ISSN impreso

0032-0935

ISSN electrónico

1432-2048

Editor responsable

Springer Nature

País de edición

Alemania

Fecha de publicación

Cobertura temática

Tabla de contenidos

Molecular mechanisms of miR172a and its target gene LbrTOE3 regulating maturation in Lilium

Xiaoshan Wang; Qing Li; Haoran Zhu; Meiqi Song; Kezhong Zhang; Wei Ge

Palabras clave: Plant Science; Genetics.

Pp. No disponible

Characterization of sandalwood (E,E)-α-farnesene synthase whose overexpression enhances cold tolerance through jasmonic acid biosynthesis and signaling in Arabidopsis

Xinhua ZhangORCID; Xiaohong Chen; Jaime A. Teixeira da Silva; Ting Zhang; Yuping Xiong; Yuan Li; Yunfei Yuan; Xiaoping Pan; Guohua Ma

Palabras clave: Plant Science; Genetics.

Pp. No disponible

Correction to: Differential expression of genes during recovery of Nicotiana tabacum from tomato leaf curl Gujarat virus infection

T. NamgialORCID; A. K. SinghORCID; N. P. SinghORCID; A. FrancisORCID; D. ChattopadhyayORCID; A. VoloudakisORCID; S. ChakrabortyORCID

Palabras clave: Plant Science; Genetics.

Pp. No disponible

Spatially activated conserved auxin-transcription factor regulatory module controls de novo root organogenesis in rice

Tushar Garg; Manoj Yadav; Khrang Khrang Khunggur Mushahary; Akshay Kumar; Vivek Pal; Harshita Singh; Mukesh Jain; Shri Ram YadavORCID

Palabras clave: Plant Science; Genetics.

Pp. No disponible

Functional characterization of DcMYB11, an R2R3 MYB associated with the purple pigmentation of carrot petiole

Vincenzo D’AmeliaORCID; Julien Curaba; Muhammad Ali Abid; Salvatore EspositoORCID; Pablo CavagnaroORCID; Domenico Carputo; Massimo IorizzoORCID

Palabras clave: Plant Science; Genetics.

Pp. No disponible

Morphological, phytochemical, and transcriptome analyses provide insights into the biosynthesis of monoterpenes in Monarda citriodora

Priyanka Sharma; Mir Abdul Wajid; Mohd Fayaz; Sheetal Bhat; Abhishek Kumar Nautiyal; Sabha Jeet; Arvind Kumar Yadav; Deepika Singh; Ravi Shankar; Sumeet Gairola; Prashant MisraORCID

Palabras clave: Plant Science; Genetics.

Pp. No disponible

Delaying or promoting? Manipulation of leaf senescence to improve crop yield and quality

Min Zhou; Jiading YangORCID

Palabras clave: Plant Science; Genetics.

Pp. No disponible

Metabolomics targets tissue-specific responses in alleviating the negative effects of salinity in tef (Eragrostis tef) during germination

Bahareh Sadat Haddadi; Rui Fang; Aiswarya Girija; Divya Kattupalli; Emma Widdowson; Manfred Beckmann; Rattan Yadav; Luis A. J. MurORCID

<jats:title>Abstract</jats:title><jats:sec> <jats:title>Main conclusion</jats:title> <jats:p>Salinity induced metabolite responses resulted in differential accumulation of flavonoids and antioxidant metabolites in shoots and roots suggesting improved antioxidant capacity in providing salt-adaptive phenotype of tef seedling.</jats:p> </jats:sec><jats:sec> <jats:title>Abstract</jats:title> <jats:p>Tef [(<jats:italic>Eragrostis tef</jats:italic>) (Zucc.) Trotter] is an important ‘cash crop’ of Ethiopia grown mainly for human food, and development of elite tef cultivars with better performance is vital to Ethiopian farmers and breeders. Soil salinity is one of the key constraints that affects tef yield in the Ethiopian lowlands and Rift valley where cultivation of tef is limited. Being a minor crop, the responses of tef towards salinity is unknown. Salinity involves physiological and metabolite reprogramming that can have major impact on germination and seedling establishment. Here we evaluate the in vitro effect of NaCl on tef germination and associate this with metabolomic approaches to suggest salt tolerance mechanisms. In this study, 19 tef varieties were screened for NaCl tolerance and were investigated using untargeted metabolomics. Screened tef varieties showed differential germination rates with NaCl treatment varying from &lt; 20 to 100%. Viable seedlings exposed to NaCl exhibited purple-red pigment accumulation in the roots except for Beten and Tullu nasy varieties. Metabolite comparisons between shoots and roots showed significant differences and, in particular, roots of salt tolerant tef varieties accumulated flavonoid derivatives as well as sugars and cell wall associated metabolites. These metabolic changes were correlated with patterns of antioxidant capacities and total flavonoid content in shoots and roots and suggested a mitigating response by tef to salinity. Our study highlights the role of flavonoid accumulation following salt stress on tef seedlings and further these findings could be used as targets for selective tef breeding.</jats:p> </jats:sec>

Palabras clave: Plant Science; Genetics.

Pp. No disponible

AUX1, PIN3, and TAA1 collectively maintain fertility in Arabidopsis

Chao TanORCID; Mengxiao Liang; Qiong Luo; Tan Zhang; Wenhui Wang; Suxin Li; Shuzhen Men

Palabras clave: Plant Science; Genetics.

Pp. No disponible

Physiological and transcriptional regulation in Taxodium hybrid ‘Zhongshanshan’ leaves in acclimation to prolonged partial submergence

Yan Lu; Peng Xiang; Shuqing Zhang; Zhiguo Lu; Zhidong Zhou; Yunlong Yin; Jianfeng Hua; Qin Shi; Wanwen Yu; Chaoguang Yu

Palabras clave: Plant Science; Genetics.

Pp. No disponible