Ethylene is a gaseous plant growth hormone that regulates various plant developmental processes, ranging from seed germination to senescence. The mechanisms underlying ethylene biosynthesis and signaling involve multistep mechanisms representing different control levels to regulate its production and response. Ethylene is an established phytohormone that displays various signaling processes under environmental stress in plants. Such environmental stresses trigger ethylene biosynthesis/action, which influences the growth and development of plants and opens new windows for future crop improvement. This review summarizes the current understanding of how environmental stress influences plants’ ethylene biosynthesis, signaling, and response. The...
Ethylene is a gaseous plant hormone that most likely became a functional hormone during the evolutio...
Salinity stress is one of the major threats to agricultural productivity across the globe. Research ...
Contents Summary 895 I. Introduction 895 II. A snapshot view on the ethylene biosynthesis and signal...
Ethylene is a gaseous plant growth hormone that regulates various plant developmental processes, ran...
Ethylene is a simple gaseous phytohormone with multiple roles in regulation of metabolism at cellula...
The plant hormone ethylene is involved in many physiological processes, including plant growth, deve...
Being continuously exposed to variable environmental conditions, plants produce phytohormones to rea...
The plant hormone ethylene is involved in many physiological processes, including plant growth, deve...
Plants phenotypically adjust to environmental challenges, and the gaseous plant hormone ethylene m...
The plant hormone ethylene is one of the central regulators of plant development and stress resistan...
The plant hormone ethylene is one of the central regulators of plant development and stress resistan...
Ethylene is a gaseous plant hormone that most likely became a functional hormone during the evolutio...
The plant phytohormone ethylene regulates numerous physiological processes and contributes to plant–...
The gaseous phytohormone ethylene is a key regulator in plant growth and developmental process as we...
Ethylene is a key hormone in plant development, mediating plant responses to abiotic environmental s...
Ethylene is a gaseous plant hormone that most likely became a functional hormone during the evolutio...
Salinity stress is one of the major threats to agricultural productivity across the globe. Research ...
Contents Summary 895 I. Introduction 895 II. A snapshot view on the ethylene biosynthesis and signal...
Ethylene is a gaseous plant growth hormone that regulates various plant developmental processes, ran...
Ethylene is a simple gaseous phytohormone with multiple roles in regulation of metabolism at cellula...
The plant hormone ethylene is involved in many physiological processes, including plant growth, deve...
Being continuously exposed to variable environmental conditions, plants produce phytohormones to rea...
The plant hormone ethylene is involved in many physiological processes, including plant growth, deve...
Plants phenotypically adjust to environmental challenges, and the gaseous plant hormone ethylene m...
The plant hormone ethylene is one of the central regulators of plant development and stress resistan...
The plant hormone ethylene is one of the central regulators of plant development and stress resistan...
Ethylene is a gaseous plant hormone that most likely became a functional hormone during the evolutio...
The plant phytohormone ethylene regulates numerous physiological processes and contributes to plant–...
The gaseous phytohormone ethylene is a key regulator in plant growth and developmental process as we...
Ethylene is a key hormone in plant development, mediating plant responses to abiotic environmental s...
Ethylene is a gaseous plant hormone that most likely became a functional hormone during the evolutio...
Salinity stress is one of the major threats to agricultural productivity across the globe. Research ...
Contents Summary 895 I. Introduction 895 II. A snapshot view on the ethylene biosynthesis and signal...