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Items: 1 to 20 of 197

1.

Vacuolar cysteine proteases of wheat (Triticum aestivum L.) are common to leaf senescence induced by different factors.

Martínez DE, Bartoli CG, Grbic V, Guiamet JJ.

J Exp Bot. 2007;58(5):1099-107.

PMID:
17218544
2.
3.

Senescence-induced ectopic expression of the A. tumefaciens ipt gene in wheat delays leaf senescence, increases cytokinin content, nitrate influx, and nitrate reductase activity, but does not affect grain yield.

Sykorová B, Kuresová G, Daskalova S, Trcková M, Hoyerová K, Raimanová I, Motyka V, Trávnícková A, Elliott MC, Kamínek M.

J Exp Bot. 2008;59(2):377-87. doi: 10.1093/jxb/erm319.

PMID:
18267946
4.

Senescence-associated vacuoles with intense proteolytic activity develop in leaves of Arabidopsis and soybean.

Otegui MS, Noh YS, Martínez DE, Vila Petroff MG, Staehelin LA, Amasino RM, Guiamet JJ.

Plant J. 2005 Mar;41(6):831-44.

5.

Drought induces many forms of cysteine proteases not observed during natural senescence.

Khanna-Chopra R, Srivalli B, Ahlawat YS.

Biochem Biophys Res Commun. 1999 Feb 16;255(2):324-7.

PMID:
10049707
6.

Glutathione transferase activity and expression patterns during grain filling in flag leaves of wheat genotypes differing in drought tolerance: Response to water deficit.

Gallé A, Csiszár J, Secenji M, Guóth A, Cseuz L, Tari I, Györgyey J, Erdei L.

J Plant Physiol. 2009 Nov 15;166(17):1878-91. doi: 10.1016/j.jplph.2009.05.016.

PMID:
19615785
7.
8.

Degradation of ribulose-bisphosphate carboxylase by vacuolar enzymes of senescing French bean leaves: immunocytochemical and ultrastructural observations.

Minamikawa T, Toyooka K, Okamoto T, Hara-Nishimura I, Nishimura M.

Protoplasma. 2001;218(3-4):144-53.

PMID:
11770431
9.
10.
11.

Ethylene-sensitivity regulates proteolytic activity and cysteine protease gene expression in petunia corollas.

Jones ML, Chaffin GS, Eason JR, Clark DG.

J Exp Bot. 2005 Oct;56(420):2733-44.

PMID:
16131506
12.

A novel 51-kDa fragment of the large subunit of ribulose-1,5-bisphosphate carboxylase/oxygenase formed in the stroma of chloroplasts in dark-induced senescing wheat leaves.

Zhang LF, Rui Q, Zhang P, Wang XY, Xu LL.

Physiol Plant. 2007 Sep;131(1):64-71. doi: 10.1111/j.1399-3054.2007.00928.x.

PMID:
18251925
13.

Identification of dehydration-responsive cysteine proteases during post-harvest senescence of broccoli florets.

Coupe SA, Sinclair BK, Watson LM, Heyes JA, Eason JR.

J Exp Bot. 2003 Mar;54(384):1045-56.

PMID:
12598574
14.
16.

Isolation and analysis of cDNAs encoding tomato cysteine proteases expressed during leaf senescence.

Drake R, John I, Farrell A, Cooper W, Schuch W, Grierson D.

Plant Mol Biol. 1996 Feb;30(4):755-67.

PMID:
8624407
17.

Proteolytic activity and cysteine protease expression in wheat leaves under severe soil drought and recovery.

Simova-Stoilova L, Vaseva I, Grigorova B, Demirevska K, Feller U.

Plant Physiol Biochem. 2010 Feb-Mar;48(2-3):200-6. doi: 10.1016/j.plaphy.2009.11.003.

PMID:
20004107
18.

Endoproteinase activities in wheat leaves upon water deficit.

Zagdańska B, Wiśniewski K.

Acta Biochim Pol. 1996;43(3):515-9.

19.

Genotype-dependent proteolytic response of spring wheat to water deficiency.

Wiśniewski K, Zagdańska B.

J Exp Bot. 2001 Jul;52(360):1455-63.

PMID:
11457905
20.

Effects of cytokinin production under two SAG promoters on senescence and development of tomato plants.

Swartzberg D, Dai N, Gan S, Amasino R, Granot D.

Plant Biol (Stuttg). 2006 Sep;8(5):579-86.

PMID:
16883480

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