Transgenic plant cells lacking mitochondrial alternative oxidase have increased susceptibility to mitochondria-dependent and-independent pathways of programmed …

CA Robson, GC Vanlerberghe - Plant physiology, 2002 - academic.oup.com
The plant mitochondrial electron transport chain is branched such that electrons at ubiquinol
can be diverted to oxygen via the alternative oxidase (AOX). This pathway does not …

Transgenic Plant Cells Lacking Mitochondrial Alternative Oxidase Have Increased Susceptibility to Mitochondria-Dependent and-Independent Pathways of …

CA Robson, GC Vanlerberghe - Plant Physiology, 2002 - cir.nii.ac.jp
抄録< jats: title> Abstract</jats: title>< jats: p> The plant mitochondrial electron transport
chain is branched such that electrons at ubiquinol can be diverted to oxygen via the …

Transgenic Plant Cells Lacking Mitochondrial Alternative Oxidase Have Increased Susceptibility to Mitochondria-Dependent and-Independent Pathways of …

CA Robson, GC Vanlerberghe - Plant Physiology, 2002 - JSTOR
The plant mitochondrial electron transport chain is branched such that electrons at ubiquinol
can be diverted to oxygen via the alternative oxidase (AOX). This pathway does not …

[PDF][PDF] Transgenic Plant Cells Lacking Mitochondrial Alternative Oxidase Have Increased Susceptibility to Mitochondria-Dependent and-Independent Pathways of …

CA Robson, GC Vanlerberghe - researchgate.net
The plant mitochondrial electron transport chain is branched such that electrons at ubiquinol
can be diverted to oxygen via the alternative oxidase (AOX). This pathway does not …

[引用][C] Transgenic plant cells lacking mitochondrial alternative oxidase have increased susceptibility to mitochondria-dependent and-independent pathways of …

CA ROBSON… - Plant physiology …, 2002 - pascal-francis.inist.fr
Transgenic plant cells lacking mitochondrial alternative oxidase have increased susceptibility
to mitochondria-dependent and -independent pathways of programmed cell death CNRS …

Transgenic plant cells lacking mitochondrial alternative oxidase have increased susceptibility to mitochondria-dependent and-independent pathways of programmed …

CA Robson, GC Vanlerberghe - Plant physiology, 2002 - pubmed.ncbi.nlm.nih.gov
The plant mitochondrial electron transport chain is branched such that electrons at ubiquinol
can be diverted to oxygen via the alternative oxidase (AOX). This pathway does not …

Transgenic plant cells lacking mitochondrial alternative oxidase have increased susceptibility to mitochondria-dependent and-independent pathwyas of programmed …

CA Robson, GC Vanlerberghe - Plant Physiology, 2002 - search.proquest.com
The plant mitochondrial electron transport chain is branched such that electrons at ubiquinol
can be diverted to oxygen via the alternative oxidase (AOX). This pathway does not …

[HTML][HTML] Transgenic Plant Cells Lacking Mitochondrial Alternative Oxidase Have Increased Susceptibility to Mitochondria-Dependent and-Independent Pathways of …

CA Robson, GC Vanlerberghe - Plant Physiology, 2002 - ncbi.nlm.nih.gov
The plant mitochondrial electron transport chain is branched such that electrons at ubiquinol
can be diverted to oxygen via the alternative oxidase (AOX). This pathway does not …

Transgenic plant cells lacking mitochondrial alternative oxidase have increased susceptibility to mitochondria-dependent and-independent pathways of programmed …

CA Robson, GC Vanlerberghe - 2002 - cabidigitallibrary.org
The plant mitochondrial electron transport chain is branched such that electrons at ubiquinol
can be diverted to oxygen via the alternative oxidase (AOX). This pathway does not …

Transgenic plant cells lacking mitochondrial alternative oxidase have increased susceptibility to mitochondria-dependent and-independent pathways of programmed …

CA Robson, GC Vanlerberghe - Plant Physiology, 2002 - europepmc.org
The plant mitochondrial electron transport chain is branched such that electrons at ubiquinol
can be diverted to oxygen via the alternative oxidase (AOX). This pathway does not …