The transformation of the ovary into a fruit after successful completion of pollination and fertilization has been associated with many changes at transcriptomic level. These changes are part of a dynamic and complex regulatory network that is controlled by phytohormones, with a major role for auxin. One of the auxin-related genes differentially expressed upon fruit set and early fruit development in tomato is Solanum lycopersicum AUXIN RESPONSE FACTOR 9 (SlARF9). Here, the functional analysis of this ARF is described. SlARF9 expression was found to be auxin-responsive and SlARF9 mRNA levels were high in the ovules, placenta, and pericarp of pollinated ovaries, but also in other plant tissues with high cell division activity, such as the ax...
Contains fulltext : 76542.pdf (publisher's version ) (Open Access)The transformati...
<div><p>Ethylene is the main regulator of climacteric fruit ripening, by contrast the putative role ...
<p>The phytohormone auxin is involved in many aspects of plant growth and developmental processes. T...
The transformation of the ovary into a fruit after successful completion of pollination and fertiliz...
<p>The transformation of the ovary into a fruit after successful completion of pollination and ferti...
The transformation of the ovary into a fruit after successful completion of pollination and fertiliz...
The transformation of the ovary into a fruit after successful completion of pollination and fertiliz...
Contains fulltext : 144523.pdf (Publisher’s version ) (Open Access
<p>The phytohormone auxin is involved in many aspects of plant growth and developmental processes. T...
The phytohormone auxin is involved in many aspects of plant growth and developmental processes. The ...
<p>The phytohormone auxin is involved in many aspects of plant growth and developmental processes. T...
The transformation from an ovary to a rapidly growing fruit includes molecular, biochemical and stru...
Understanding the mechanisms underlying differentiation of inflorescence and flower meristems is ess...
Understanding the mechanisms underlying differentiation of inflorescence and flower meristems is ess...
Ethylene is the main regulator of climacteric fruit ripening, by contrast the putative role of other...
Contains fulltext : 76542.pdf (publisher's version ) (Open Access)The transformati...
<div><p>Ethylene is the main regulator of climacteric fruit ripening, by contrast the putative role ...
<p>The phytohormone auxin is involved in many aspects of plant growth and developmental processes. T...
The transformation of the ovary into a fruit after successful completion of pollination and fertiliz...
<p>The transformation of the ovary into a fruit after successful completion of pollination and ferti...
The transformation of the ovary into a fruit after successful completion of pollination and fertiliz...
The transformation of the ovary into a fruit after successful completion of pollination and fertiliz...
Contains fulltext : 144523.pdf (Publisher’s version ) (Open Access
<p>The phytohormone auxin is involved in many aspects of plant growth and developmental processes. T...
The phytohormone auxin is involved in many aspects of plant growth and developmental processes. The ...
<p>The phytohormone auxin is involved in many aspects of plant growth and developmental processes. T...
The transformation from an ovary to a rapidly growing fruit includes molecular, biochemical and stru...
Understanding the mechanisms underlying differentiation of inflorescence and flower meristems is ess...
Understanding the mechanisms underlying differentiation of inflorescence and flower meristems is ess...
Ethylene is the main regulator of climacteric fruit ripening, by contrast the putative role of other...
Contains fulltext : 76542.pdf (publisher's version ) (Open Access)The transformati...
<div><p>Ethylene is the main regulator of climacteric fruit ripening, by contrast the putative role ...
<p>The phytohormone auxin is involved in many aspects of plant growth and developmental processes. T...