Research progress on plant stress‐associated protein (SAP) family: Master regulators to deal with environmental stresses.

Opis bibliograficzny

Research progress on plant stress‐associated protein (SAP) family: Master regulators to deal with environmental stresses. [AUT.] BEN SAAD RANIA, BEN ROMDHANE WALID, ČMIKOVÁ NATÁLIA, BAAZAOUI NARJES, BOUTERAA MOHAMED TAIEB, BEN AKACHA BOUTHAINA, CHOUAIBI YOSRA, MAISTO MARIA, BEN HSOUNA ANIS, GARZOLI STEFANIA, WISZNIEWSKA ALINA, KACANIOVA MIROSLAVA. Best Practice and Research in Clinical Anaesthesiology. DOI: 10.1002/bies.202400097
Skopiowane!
Kliknij opis aby skopiować do schowka

Szczegóły publikacji

Rok:2024
Język:angielski
Charakter formalny:Artykuł w czasopismie
Typ MNiSW/MEiN:inne

Streszczenia

Every year, unfavorable environmental factors significantly affect crop productivity and threaten food security. Plants are sessile; they cannot move to escape unfavorable environmental conditions, and therefore, they activate a variety of defense pathways. Among them are processes regulated by stress-associated proteins (SAPs). SAPs have a specific zinc finger domain (A20) at the N-terminus and either AN1 or C2H2 at the C-terminus. SAP proteins are involved in many biological processes and in response to various abiotic or biotic constraints. Most SAPs play a role in conferring transgenic stress resistance and are stress-inducible. The emerging field of SAPs in abiotic or biotic stress response regulation has attracted the attention of researchers. Although SAPs interact with various proteins to perform their functions, the exact mechanisms of these interactions remain incompletely understood. This review aims to provide a comprehensive understanding of SAPs, covering their diversity, structure, expression, and subcellular localization. SAPs play a pivotal role in enabling crosstalk between abiotic and biotic stress signaling pathways, making them essential for developing stress-tolerant crops without yield penalties. Collectively, understanding the complex regulation of SAPs in stress responses can contribute to enhancing tolerance against various environmental stresses through several techniques such as transgenesis, classical breeding, or gene editing.

Identyfikatory

ISSN: 1753-3740
BPP ID: (6, 8554) wydawnictwo ciągłe #8554

Metryki

100,00
Punkty MNiSW/MEiN
0
Impact Factor
0
Index Copernicus
0
Punktacja wewnętrzna

Eksport cytowania

Wsparcie dla menedżerów bibliografii:
Ta strona wspiera automatyczny import do Zotero, Mendeley i EndNote. Użytkownicy z zainstalowanym rozszerzeniem przeglądarki mogą zapisać tę publikację jednym kliknięciem - ikona pojawi się automatycznie w pasku narzędzi przeglądarki.

Skopiowane!

Informacje dodatkowe

Status:przed korektą
Praca recenzowana:nie
Rekord utworzony:18 czerwca 2026 21:36
Ostatnia aktualizacja:18 czerwca 2026 21:36